Showing 135 items matching "john bright"
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Bendigo Historical Society Inc.Book - LYDIA CHANCELLOR COLLECTION: THE LIFE OF JOHN BRIGHT
... LYDIA CHANCELLOR COLLECTION: THE LIFE OF JOHN BRIGHT......john bright...A book titled 'The Life of John Bright. The Great Tribune of the English People.' ...BOOKS Biography john bright Lydia Chancellor collection famous people Ward & Lock's Penny Books for the People Ward & Lock's Penny Historical Series history books male person advertisements The Life of John Bright biographies penny books Biographical Series A book titled 'The Life of John Bright. ...A book titled 'The Life of John Bright. The Great Tribune of the English People.' Published London: Ward, Lock & Co., Salisbury Square, E.C. 737 - 752 pgs. This booklet is one of a series of 53 Ward & Lock's Penny Books for the People.' 'Biographical Series.' Price one penny.' There are also advertisements of note.books, biography, john bright, lydia chancellor, collection, famous people, ward & lock's penny books for the people, ward & lock's penny historical series, history, books, male, person, advertisements, the life of john bright, biographies, penny books, biographical series -
Vision AustraliaAdministrative record - Text, 78th Annual report 1973 Association for the Blind of Victoria, 1981
... ...John Bright...Lightfoot Barry Farnsworth Patricia Heath John Bright Edith Lain Edith Currell 1 printed volume with illustrations 78th Annual report 1973 Association for the Blind of Victoria. ...Articles in annual report include: President's report, finance report, auditor's report, balance sheet, nursing homes, social work, rehabilitation, low vision clinic, honorary services, auxiliary income, blind members, sport and recreation, life governors. There are reports on John Wicking taking on the President's role from Pat Lightfoot, increasing costs, opening of the Geelong Regional Day Centre and a training course developed for volunteers who do home visitation.1 printed volume with illustrationsassociation for the blind, annual reports, john wicking, h.m. lightfoot, barry farnsworth, patricia heath, john bright, edith lain, edith currell -
Bendigo Military MuseumPhotograph - Army Survey Regiment – Commanding Officer Handover Parade, Fortuna, Bendigo, 1980
... Cartographic Squadron – Front rank L to R: SPR Rod Skidmore, SPR John Martin, SGT Bob Bright CPL Trevor Bottomley, SPR Gerry Gates, unidentified, CAPT Bob Williams, CAPT Bob Cooper. ...Cartographic Squadron – Front rank L to R: SPR Rod Skidmore, SPR John Martin, SGT Bob Bright CPL Trevor Bottomley, SPR Gerry Gates, unidentified, CAPT Bob Williams, CAPT Bob Cooper. ...This photograph was taken at a Commanding Officer Handover Parade at the Army Survey Regiment, Bendigo in 1980. LTCOL Bob Skitch was the CO from 1976 to 1980 and handed over LTCOL Frank Thorogood SB St J. LTCOL Thorogood’s appointment was from 1980 to 1981.This is a set of 45 photographs taken at a Commanding Officer Handover Parade at the Army Survey Regiment, Bendigo in 1980. The photographs are on 35mm negative film and were scanned at 96 dpi. Photograph .34P is an enlargement printed on photographic paper and scanned at 300 dpi. They are part of the Army Survey Regiment’s Collection. .1) - Photo, black & white, 1980. Led by HQ Squadron, Army Survey Regiment marches onto the parade ground. .2) - Photo, black & white, 1980. Army Survey Regiment marches onto the parade ground. Drummers L to R: SSGT George Austen, CPL Di Chalmer, CPL Tony Lawler. .3) - Photo, black & white, 1980. Air Survey Squadron formed up. SSM WO1 Bob Mason at front. L to R: unidentified (x9), SPR Kristin (Isaac) Skidmore, unidentified, SPR Scheryl Delforce, unidentified (x2), SSGT Russell ‘Rusty’ Williams, SSGT Peter Warwick, SSGT Greg Buckenham, SGT Cliff Webb, SSGT Alan Derby, SSGT John Bennett, SSGT Bruce Gordon. .4) - Photo, black & white, 1980. Officers formed up before taking posts. L to R: CAPT Peter Searle - UK Exchange, unidentified, LT Ozzy Slade, CAPT Peter ‘Blue’ Blaskett, unidentified (x4), CAPT Bob Williams, MAJ David Bowen - US Exchange officer, unidentified (x3), RSM WO1 Aub Harvey. .5) - Photo, black & white, 1980. Officers salute before taking posts. L to R: CAPT Peter Searle - UK Exchange, unidentified, LT Ozzy Slade, CAPT Peter ‘Blue’ Blaskett, unidentified (x4), CAPT Bob Williams, MAJ David Bowen - US Exchange officer, unidentified (x3). .6) - Photo, black & white, 1980. Officers march to their posts. L to R: CAPT Bob Cooper, CAPT Mick Byrne, MAJ Robin Blackburn, unidentified. .7) & .8) - Photo, black & white, 1980. L to R: 2IC MAJ Don Swiney MBE hands over parade to CO LTCOL Bob Skitch. Cartographic Squadron - Centre rank L to R: CPL Paul Richards, SPR Megan (McBurney) Reynolds, SPR Jan (Crighton) Minchin, SPR Ilen Isaac, CPL Lynn Johnson, remainder unidentified. Front rank L to R: CPL Dennis Learmonth, CPL Roger Pearson, SPR Rod Skidmore, SPR John Martin, SGT Bob Bright, CPL Trevor Bottomley, SPR Gerry Gates, remainder unidentified, OC CAPT Bob Williams, Officer in far right: CAPT Bob Cooper. .9) - Photo, black & white, 1980. L to R: CO LTCOL Bob Skitch salutes reviewing officer - Commander 3MD BRIG Geoffrey Cohen AM. Cartographic Squadron in background L to R: CPL Trevor Bottomley, SPR Gerry Gates, SPR Peter Main, CPL John ‘Stormy’ Tempest, unidentified, OC CAPT Bob Williams, SSGT Gary Warnest. .10) - Photo, black & white, 1980. HQ Squadron inspection - L to R: unidentified (x5), CAPT Paddy Strunks, SPR Chris Ebeling, CO LTCOL Bob Skitch, BRIG Geoffrey Cohen AM, unidentified (x7), in foreground MAJ David Bowen - US Exchange officer, unidentified, CPL Phil McGuire, WO2 Ted Burgess. .11) - Photo, black & white, 1980. HQ Squadron in foreground L to R: MAJ David Bowen - US Exchange officer, unidentified, CPL Phil McGuire, WO2 Ted Burgess. Lithographic Squadron inspection L to R: CPL Paul Davis, CPL Le-Anne (Smallshaw) Shirely, CO LTCOL Bob Skitch, unidentified, OC MAJ Robin Blackburn, BRIG Geoffrey Cohen AM, SPR Jim Ash, unidentified, unidentified UK Exchange SNCO, SSGT Greg Francis-Wright, WO1 Doug Malligan, drummers SSGT George Austen, CPL Di Chalmer, CPL Tony Lawler, unidentified (x2). .12) - Photo, black & white, 1980. Air Survey Squadron inspection - L to R: LT Ozzy Slade, CAPT Peter ‘Blue’ Blaskett, unidentified officer, front rank L to R: SGT Cliff Webb, CO LTCOL Bob Skitch, CAPT Peter Searle - UK Exchange, unidentified, centre rank L to R: unidentified, SSGT Greg Buckingham, SSGT John Bennett, rear rank L to R: unidentified (x4), SPR Sharon (Jones) Treble, CPL Marrianne (Van De Zee) De Groot, SPR Ginny (Turner) Rowe, SSGT Kevin Kennedy, unidentified, SSGT Alan Derby. .13) - Photo, black & white, 1980. Air Survey Squadron inspection - Centre rank: SSGT John Bennett, CO LTCOL Bob Skitch, CAPT Peter Searle - UK Exchange, BRIG Geoffrey Cohen AM, rear rank L to R: SPR Ginny (Turner) Rowe, SSGT Kevin Kennedy, unidentified, SSGT Alan Derby, SSGT Bruce Gordon, supernumerary rank L to R: SSM WO1 Bob Mason, WO1 Bob Hayden, WO2 Peter Colwell, WO1 Chris Parkinson. Unidentified. .14) - Photo, black & white, 1980. Air Survey Squadron inspection - Centre rank: SSGT John Bennett, CO LTCOL Bob Skitch, CAPT Peter Searle - UK Exchange, BRIG Geoffrey Cohen AM, rear rank L to R: SPR Ginny (Turner) Rowe, SSGT Kevin Kennedy, unidentified, SSGT Alan Derby, SSGT Bruce Gordon, supernumerary rank L to R: SSM WO1 Bob Mason, WO1 Bob Hayden, WO2 Peter Colwell. .15) - Photo, black & white, 1980. Cartographic Squadron inspection – L to R: OC CAPT Bob Williams, CO LTCOL Bob Skitch, BRIG Geoffrey Cohen AM. Front rank L to R: CPL John ‘Stormy’ Tempest, unidentified (x2), SSGT Allan Adsett, SSGT Gary Warnest. Centre rank L to R: SPR Ilen Isaac, CPL Sue (Fryer) Bottomley, SPR Gina (Coore) Neilson, SPR Carla Dell, CPL Lynn Johnson, SPR Cathy Regan, unidentified, SSGT John ‘JB’ Barrie, SSGT Bob Scaddan. Rear rank L to R: CPL Terry Danger, CPL Brad Peppler. .16) & .17) - Photo, black & white, 1980. Cartographic Squadron inspection – L to R: OC CAPT Bob Williams, CO LTCOL Bob Skitch, BRIG Geoffrey Cohen AM. Front rank L to R: CPL Dennis Learmonth, CPL Roger Pearson, SPR Rod Skidmore, SPR John Martin, SGT Bob Bright, CPL Trevor Bottomley, SPR Gerry Gates, CPL John ‘Stormy’ Tempest, unidentified (x2), SSGT Allan Adsett, SSGT Gary Warnest. CO LTCOL Bob Skitch, CAPT Bob Cooper, BRIG Geoffrey Cohen AM. Centre rank L to R: SPR Ilen Isaac, CPL Sue (Fryer) Bottomley, SPR Gina (Coore) Neilson, SPR Carla Dell, SPR Cathy Regan, SSGT John ‘JB’ Barrie, SSGT Bob Scaddan. Rear rank L to R: CPL Terry Danger, CPL Brad Peppler, SGT Stu Thaxter, SGT Colin Cuskelly, SGT Bill Friswell. Far right: CAPT Peter Searle - UK Exchange, WO1 Jim ‘JJJ’ Jefferies. .18) - Photo, black & white, 1980. Cartographic Squadron inspection – Front rank: SSGT Gary Warnest. L to R: CO LTCOL Bob Skitch, CAPT Bob Cooper, BRIG Geoffrey Cohen AM. Centre rank L to R: SPR Ilen Isaac, CPL Sue (Fryer) Bottomley, SPR Gina (Coore) Neilson, SPR Carla Dell, SPR Cathy Regan, SSGT John ‘JB’ Barrie, SSGT Bob Scaddan. Rear rank L to R: CPL Terry Danger, CPL Brad Peppler, SGT Stu Thaxter, SGT Colin Cuskelly, SGT Bill Friswell. SSM WO1 Gordon Lowery. Far right: WO1 Jim ‘JJJ’ Jefferies, CAPT Peter Searle - UK Exchange, CAPT Peter ‘Blue’ Blaskett, LT Ozzy Slade. .19) - Photo, black & white, 1980. Medal presentation - L to R: CO LTCOL Bob Skitch, CAPT Bob Cooper. Cartographic Squadron – Front rank L to R: CPL Dennis Learmonth, CPL Roger Pearson, SPR Rod Skidmore, SGT Bob Bright, CPL Trevor Bottomley, SPR Gerry Gates, SPR Peter Main, CPL John ‘Stormy’ Tempest. Centre rank L to R: CPL Paul Richards, SPR Jan (Crighton) Minchin, SPR Ilen Isaac, SPR Carla Dell, CPL Lynn Johnson, SPR Cathy Regan. .20) - Photo, black & white, 1980. Medal presentation - L to R: CAPT Bob Cooper, BRIG Geoffrey Cohen AM. Cartographic Squadron – Front rank L to R: CPL Dennis Learmonth, CPL Roger Pearson, SPR Rod Skidmore, SPR John Martin, SGT Bob Bright, SPR Peter Main, CPL John ‘Stormy’ Tempest, SSGT Allan Adsett, SSGT Gary Warnest. Centre rank L to R: CPL Paul Richards, SPR Jan (Crighton) Minchin, SPR Ilen Isaac, CPL Sue (Fryer) Bottomley, SPR Gina (Coore) Neilson. .21) - Photo, black & white, 1980. Medal presentation - L to R: CAPT Bob Cooper, BRIG Geoffrey Cohen AM. Cartographic Squadron – Front rank L to R: CPL Dennis Learmonth, CPL Roger Pearson, SPR Rod Skidmore, SPR John Martin, SGT Bob Bright, SPR Peter Main, CPL John ‘Stormy’ Tempest, SSGT Gary Warnest. Centre rank L to R: CPL Paul Richards, SPR Jan (Crighton) Minchin, SPR Ilen Isaac, CPL Sue (Fryer) Bottomley. .22) - Photo, black & white, 1980. Medal presentation - L to R: CO LTCOL Bob Skitch, CAPT Bob Cooper, BRIG Geoffrey Cohen AM. Cartographic Squadron – Front rank L to R: CPL Dennis Learmonth, CPL Roger Pearson, SPR Rod Skidmore, SPR John Martin, SGT Bob Bright CPL Trevor Bottomley, SPR Gerry Gates, SPR Peter Main, CPL John ‘Stormy’ Tempest, CAPT Bob Williams, SSGT Allan Adsett. Centre rank L to R: CPL Paul Richards, SPR Jan (Crighton) Minchin, SPR Gina (Coore) Neilson, SPR Carla Dell, CPL Lynn Johnson, SPR Cathy Regan, unidentified, SSGT Bob Scaddan. Rear rank: CPL Stu Symonds. .23) - Photo, black & white, 1980. Presentation - L to R: CO LTCOL Bob Skitch, BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. Cartographic Squadron – Front rank L to R: CPL Dennis Learmonth, CPL Roger Pearson, SPR Rod Skidmore, SPR John Martin, SGT Bob Bright CPL Trevor Bottomley, SPR Gerry Gates, unidentified, CAPT Bob Williams, SSGT Allan Adsett, CAPT Bob Cooper. Centre rank L to R: SPR Jan (Crighton) Minchin, CPL Sue (Fryer) Bottomley, SPR Carla Dell, CPL Lynn Johnson, SPR Cathy Regan, unidentified, SSGT Bob Scaddan. .24) - Photo, black & white, 1980. Presentation - L to R: CO LTCOL Bob Skitch, BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. Cartographic Squadron – Front rank L to R: SPR Rod Skidmore, SPR John Martin, SGT Bob Bright CPL Trevor Bottomley, SPR Gerry Gates, unidentified, CAPT Bob Williams, CAPT Bob Cooper. Centre rank L to R: SPR Jan (Crighton) Minchin, CPL Sue (Fryer) Bottomley, SPR Carla Dell, CPL Lynn Johnson, SPR Cathy Regan, unidentified, SSGT Bob Scaddan. .25) - Photo, black & white, 1980. Presentation - L to R: CO LTCOL Bob Skitch, BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. Cartographic Squadron – Front rank L to R: CPL Roger Pearson, SPR Rod Skidmore, SPR John Martin, SGT Bob Bright CPL Trevor Bottomley, unidentified, CAPT Bob Williams, SSGT Allan Adsett, SSGT Gary Warnest. CAPT Bob Cooper, Centre rank L to R: CPL Sue (Fryer) Bottomley, SPR Gina (Coore) Neilson, SPR Carla Dell, CPL Lynn Johnson. .26) to .28) - Photo, black & white, 1980. Presentation - L to R: MAJ Robin Blackburn, BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. .29) to .31) - Photo, black & white, 1980. Presentation - L to R: SPR Penny Knott, CO LTCOL Bob Skitch. .32) - Photo, black & white, 1980. CO Handover - L to R: LTCOL Bob Skitch, LTCOL Frank Thorogood SB St J. Cartographic Squadron – Front rank L to R: CPL Dennis Learmonth, CPL Roger Pearson, SPR Rod Skidmore, SPR John Martin SPR Gerry Gates, SPR Peter Main, CPL John ‘Stormy’ Tempest, unidentified, CAPT Bob Williams, SSGT Allan Adsett, SSGT Gary Warnest. Centre rank L to R: SPR Ilan Isaac, CPL Sue (Fryer) Bottomley, SPR Gina (Coore) Neilson, SSGT Bob Scaddan at end. .33) & .34) - Photo, black & white, 1980. CO Handover - L to R: LTCOL Bob Skitch, LTCOL Frank Thorogood SB St J. Cartographic Squadron – Front rank L to R: CPL Dennis Learmonth, CPL Roger Pearson, SPR Rod Skidmore, SPR John Martin, SGT Bob Bright, SPR Gerry Gates, SPR Peter Main, CPL John ‘Stormy’ Tempest, unidentified, CAPT Bob Williams, SSGT Allan Adsett. Centre rank L to R: SPR Ilen Isaac, CPL Sue (Fryer) Bottomley, SPR Gina (Coore) Neilson, SSGT Bob Scaddan at end. .35) - Photo, black & white, 1980. CO Handover – March past L to R: BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. LTCOL Frank Thorogood SB St J, CO LTCOL Bob Skitch. L to R: RSM WO1 Aub Harvey, 2IC MAJ Don Swiney MBE. .36) - Photo, black & white, 1980. CO Handover March past L to R: BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. LTCOL Frank Thorogood SB St J, CO LTCOL Bob Skitch. HQ Squadron march past L to R: unidentified officer, MAJ MAJ David Bowen - US Exchange officer, CAPT Paddy Strunks. .37) - Photo, black & white, 1980. CO Handover March past L to R: BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. LTCOL Frank Thorogood SB St J, CO LTCOL Bob Skitch. HQ Squadron march past L to R: unidentified, SGT Rick Warren, remainder unidentified. .38) - Photo, black & white, 1980. CO Handover March past L to R: BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. LTCOL Frank Thorogood SB St J, CO LTCOL Bob Skitch. Cartographic Squadron march past L to R: CLP Paul Richards, CPL Dennis Learmonth, CAPT Bob Williams, CAPT Bob Cooper. .39) - Photo, black & white, 1980. CO Handover March past L to R: BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. LTCOL Frank Thorogood SB St J, CO LTCOL Bob Skitch. Cartographic Squadron march past L to R: SPR Greg Else, SPR Jan (Crighton) Minchin, SPR Rod Skidmore, unidentified, SPR Megan (McBurney) Reynolds, CPL Roger Pearson, CPL Stu Symonds, CPL Paul Richards. .40) - Photo, black & white, 1980. CO Handover March past L to R: BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. LTCOL Frank Thorogood SB St J, CO LTCOL Bob Skitch. Cartographic Squadron march past L to R: CPL Terry Danger, CPL Lynn Johnson, SPR Peter Main, unidentified, SPR Carla Dell, SPR Gerry Gates, SPR Bob Sheppard, SPR Gina (Coore) Neilson, CPL Trevor Bottomley, SPR Ian Fitzgerald, CPL Sue (Fryer) Bottomley, unidentified. .41) - Photo, black & white, 1980. CO Handover March past L to R: BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. LTCOL Frank Thorogood SB St J, CO LTCOL Bob Skitch. Lithographic Squadron march past L to R: CAPT Mick Byrne, MAJ Robin Blackburn. .42) - Photo, black & white, 1980. CO Handover March past L to R: BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. LTCOL Frank Thorogood SB St J, CO LTCOL Bob Skitch. Lithographic Squadron march past L to R: CPL Gary Kerr, SPR Brian Paul, SPR Brian Fauth, CPL Roy Hicks, SPR Per Andersen, CAPT Mick Byrne. .43) & .44) - Photo, black & white, 1980. CO Handover March past L to R: BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. LTCOL Frank Thorogood SB St J, CO LTCOL Bob Skitch. Lithographic Squadron march past. .45) - Photo, black & white, 1980. CO Handover March past L to R: BRIG Geoffrey Cohen AM, ADJT CAPT John Harrison. LTCOL Frank Thorogood SB St J, CO LTCOL Bob Skitch. Officer march past L to R: unidentified, CAPT Peter Searle - UK Exchange.No personnel are identified. Photo .34P is annotated on back ‘1981 LTCOL Bob Skitch handed over to LTCOL Thorogood.’ *Date is incorrect.royal australian survey corps, rasvy, army survey regiment, army svy regt, fortuna, asr -
Flagstaff Hill Maritime Museum and VillageAnimal specimen - Whale bone, Undetermined
... bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John...bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John ...Prior to carrying out a detailed condition report of the cetacean skeletons, it is useful to have an understanding of the materials we are likely to encounter, in terms of structure and chemistry. This entry invites you to join in learning about the composition of whale bone and oil. Whale bone (Cetacean) bone is comprised of a composite structure of both an inorganic matrix of mainly hydroxylapatite (a calcium phosphate mineral), providing strength and rigidity, as well as an organic protein ‘scaffolding’ of mainly collagen, facilitating growth and repair (O’Connor 2008, CCI 2010). Collagen is also the structural protein component in cartilage between the whale vertebrae and attached to the fins of both the Killer Whale and the Dolphin. Relative proportions in the bone composition (affecting density), are linked with the feeding habits and mechanical stresses typically endured by bones of particular whale types. A Sperm Whale (Physeter macrocephalus Linnaeus, 1758) skeleton (toothed) thus has a higher mineral value (~67%) than a Fin Whale (Balaenoptera physalus Linnaeus, 1758) (baleen) (~60%) (Turner Walker 2012). The internal structure of bone can be divided into compact and cancellous bone. In whales, load-bearing structures such as mandibles and upper limb bones (e.g. humerus, sternum) are largely composed of compact bone (Turner Walker 2012). This consists of lamella concentrically deposited around the longitudinal axis and is permeated by fluid carrying channels (O’Connor 2008). Cancellous (spongy) bone, with a highly porous angular network of trabeculae, is less stiff and thus found in whale ribs and vertebrae (Turner Walker 2012). Whale oil Whales not only carry a thick layer of fat (blubber) in the soft tissue of their body for heat insulation and as a food store while they are alive, but also hold large oil (lipid) reserves in their porous bones. Following maceration of the whale skeleton after death to remove the soft tissue, the bones retain a high lipid content (Higgs et. al 2010). Particularly bones with a spongy (porous) structure have a high capacity to hold oil-rich marrow. Comparative data of various whale species suggests the skull, particularly the cranium and mandible bones are particularly oil rich. Along the vertebral column, the lipid content is reduced, particularly in the thoracic vertebrae (~10-25%), yet greatly increases from the lumbar to the caudal vertebrae (~40-55%). The chest area (scapula, sternum and ribs) show a mid-range lipid content (~15-30%), with vertically orientated ribs being more heavily soaked lower down (Turner Walker 2012, Higgs et. al 2010). Whale oil is largely composed of triglycerides (molecules of fatty acids attached to a glycerol molecule). In Arctic whales a higher proportion of unsaturated, versus saturated fatty acids make up the lipid. Unsaturated fatty acids (with double or triple carbon bonds causing chain kinks, preventing close packing (solidifying) of molecules), are more likely to be liquid (oil), versus solid (fat) at room temperature (Smith and March 2007). Objects Made From the Whaling Industry We all know that men set forth in sailing ships and risked their lives to harpoon whales on the open seas throughout the 1800s. And while Moby Dick and other tales have made whaling stories immortal, people today generally don't appreciate that the whalers were part of a well-organized industry. The ships that set out from ports in New England roamed as far as the Pacific in hunt of specific species of whales. Adventure may have been the draw for some whalers, but for the captains who owned whaling ships, and the investors which financed voyages, there was a considerable monetary payoff. The gigantic carcasses of whales were chopped and boiled down and turned into products such as the fine oil needed to lubricate increasing advanced machine tools. And beyond the oil derived from whales, even their bones, in an era before the invention of plastic, was used to make a wide variety of consumer goods. In short, whales were a valuable natural resource the same as wood, minerals, or petroleum we now pump from the ground. Oil From Whale’s Blubber Oil was the main product sought from whales, and it was used to lubricate machinery and to provide illumination by burning it in lamps. When a whale was killed, it was towed to the ship and its blubber, the thick insulating fat under its skin, would be peeled and cut from its carcass in a process known as “flensing.” The blubber was minced into chunks and boiled in large vats on board the whaling ship, producing oil. The oil taken from whale blubber was packaged in casks and transported back to the whaling ship’s home port (such as New Bedford, Massachusetts, the busiest American whaling port in the mid-1800s). From the ports it would be sold and transported across the country and would find its way into a huge variety of products. Whale oil, in addition to be used for lubrication and illumination, was also used to manufacture soaps, paint, and varnish. Whale oil was also utilized in some processes used to manufacture textiles and rope. Spermaceti, a Highly Regarded Oil A peculiar oil found in the head of the sperm whale, spermaceti, was highly prized. The oil was waxy, and was commonly used in making candles. In fact, candles made of spermaceti were considered the best in the world, producing a bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John Adams was the ambassador to Great Britain before serving as president he recorded in his diary a conversation about spermaceti he had with the British Prime Minister William Pitt. Adams, keen to promote the New England whaling industry, was trying to convince the British to import spermaceti sold by American whalers, which the British could use to fuel street lamps. The British were not interested. In his diary, Adams wrote that he told Pitt, “the fat of the spermaceti whale gives the clearest and most beautiful flame of any substance that is known in nature, and we are surprised you prefer darkness, and consequent robberies, burglaries, and murders in your streets to receiving as a remittance our spermaceti oil.” Despite the failed sales pitch John Adams made in the late 1700s, the American whaling industry boomed in the early to mid-1800s. And spermaceti was a major component of that success. Spermaceti could be refined into a lubricant that was ideal for precision machinery. The machine tools that made the growth of industry possible in the United States were lubricated, and essentially made possible, by oil derived from spermaceti. Baleen, or "Whalebone" The bones and teeth of various species of whales were used in a number of products, many of them common implements in a 19th century household. Whales are said to have produced “the plastic of the 1800s.” The "bone" of the whale which was most commonly used wasn’t technically a bone, it was baleen, a hard material arrayed in large plates, like gigantic combs, in the mouths of some species of whales. The purpose of the baleen is to act as a sieve, catching tiny organisms in sea water, which the whale consumes as food. As baleen was tough yet flexible, it could be used in a number of practical applications. And it became commonly known as "whalebone." Perhaps the most common use of whalebone was in the manufacture of corsets, which fashionable ladies in the 1800s wore to compress their waistlines. One typical corset advertisement from the 1800s proudly proclaims, “Real Whalebone Only Used.” Whalebone was also used for collar stays, buggy whips, and toys. Its remarkable flexibility even caused it to be used as the springs in early typewriters. The comparison to plastic is apt. Think of common items which today might be made of plastic, and it's likely that similar items in the 1800s would have been made of whalebone. Baleen whales do not have teeth. But the teeth of other whales, such as the sperm whale, would be used as ivory in such products as chess pieces, piano keys, or the handles of walking sticks. Pieces of scrimshaw, or carved whale's teeth, would probably be the best remembered use of whale's teeth. However, the carved teeth were created to pass the time on whaling voyages and were never a mass production item. Their relative rarity, of course, is why genuine pieces of 19th century scrimshaw are considered to be valuable collectibles today. Reference: McNamara, Robert. "Objects Made From the Whaling Industry." ThoughtCo, Jul. 31, 2021, thoughtco.com/products-produced-from-whales-1774070.Whale bone was an important commodity, used in corsets, collar stays, buggy whips, and toys.Whale bone vertebrae. Advanced stage of calcification as indicated by deep pitting. Off white to grey.Noneflagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, whales, whale bone, corsets, toys, whips, whalebone -
Flagstaff Hill Maritime Museum and VillageAnimal specimen - Whale bone, Undetermined
... bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John...bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John ...Prior to carrying out a detailed condition report of the cetacean skeletons, it is useful to have an understanding of the materials we are likely to encounter, in terms of structure and chemistry. This entry invites you to join in learning about the composition of whale bone and oil. Whale bone (Cetacean) bone is comprised of a composite structure of both an inorganic matrix of mainly hydroxylapatite (a calcium phosphate mineral), providing strength and rigidity, as well as an organic protein ‘scaffolding’ of mainly collagen, facilitating growth and repair (O’Connor 2008, CCI 2010). Collagen is also the structural protein component in cartilage between the whale vertebrae and attached to the fins of both the Killer Whale and the Dolphin. Relative proportions in the bone composition (affecting density), are linked with the feeding habits and mechanical stresses typically endured by bones of particular whale types. A Sperm Whale (Physeter macrocephalus Linnaeus, 1758) skeleton (toothed) thus has a higher mineral value (~67%) than a Fin Whale (Balaenoptera physalus Linnaeus, 1758) (baleen) (~60%) (Turner Walker 2012). The internal structure of bone can be divided into compact and cancellous bone. In whales, load-bearing structures such as mandibles and upper limb bones (e.g. humerus, sternum) are largely composed of compact bone (Turner Walker 2012). This consists of lamella concentrically deposited around the longitudinal axis and is permeated by fluid carrying channels (O’Connor 2008). Cancellous (spongy) bone, with a highly porous angular network of trabeculae, is less stiff and thus found in whale ribs and vertebrae (Turner Walker 2012). Whale oil Whales not only carry a thick layer of fat (blubber) in the soft tissue of their body for heat insulation and as a food store while they are alive, but also hold large oil (lipid) reserves in their porous bones. Following maceration of the whale skeleton after death to remove the soft tissue, the bones retain a high lipid content (Higgs et. al 2010). Particularly bones with a spongy (porous) structure have a high capacity to hold oil-rich marrow. Comparative data of various whale species suggests the skull, particularly the cranium and mandible bones are particularly oil rich. Along the vertebral column, the lipid content is reduced, particularly in the thoracic vertebrae (~10-25%), yet greatly increases from the lumbar to the caudal vertebrae (~40-55%). The chest area (scapula, sternum and ribs) show a mid-range lipid content (~15-30%), with vertically orientated ribs being more heavily soaked lower down (Turner Walker 2012, Higgs et. al 2010). Whale oil is largely composed of triglycerides (molecules of fatty acids attached to a glycerol molecule). In Arctic whales a higher proportion of unsaturated, versus saturated fatty acids make up the lipid. Unsaturated fatty acids (with double or triple carbon bonds causing chain kinks, preventing close packing (solidifying) of molecules), are more likely to be liquid (oil), versus solid (fat) at room temperature (Smith and March 2007). Objects Made From the Whaling Industry We all know that men set forth in sailing ships and risked their lives to harpoon whales on the open seas throughout the 1800s. And while Moby Dick and other tales have made whaling stories immortal, people today generally don't appreciate that the whalers were part of a well-organized industry. The ships that set out from ports in New England roamed as far as the Pacific in hunt of specific species of whales. Adventure may have been the draw for some whalers, but for the captains who owned whaling ships, and the investors which financed voyages, there was a considerable monetary payoff. The gigantic carcasses of whales were chopped and boiled down and turned into products such as the fine oil needed to lubricate increasing advanced machine tools. And beyond the oil derived from whales, even their bones, in an era before the invention of plastic, was used to make a wide variety of consumer goods. In short, whales were a valuable natural resource the same as wood, minerals, or petroleum we now pump from the ground. Oil From Whale’s Blubber Oil was the main product sought from whales, and it was used to lubricate machinery and to provide illumination by burning it in lamps. When a whale was killed, it was towed to the ship and its blubber, the thick insulating fat under its skin, would be peeled and cut from its carcass in a process known as “flensing.” The blubber was minced into chunks and boiled in large vats on board the whaling ship, producing oil. The oil taken from whale blubber was packaged in casks and transported back to the whaling ship’s home port (such as New Bedford, Massachusetts, the busiest American whaling port in the mid-1800s). From the ports it would be sold and transported across the country and would find its way into a huge variety of products. Whale oil, in addition to be used for lubrication and illumination, was also used to manufacture soaps, paint, and varnish. Whale oil was also utilized in some processes used to manufacture textiles and rope. Spermaceti, a Highly Regarded Oil A peculiar oil found in the head of the sperm whale, spermaceti, was highly prized. The oil was waxy, and was commonly used in making candles. In fact, candles made of spermaceti were considered the best in the world, producing a bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John Adams was the ambassador to Great Britain before serving as president he recorded in his diary a conversation about spermaceti he had with the British Prime Minister William Pitt. Adams, keen to promote the New England whaling industry, was trying to convince the British to import spermaceti sold by American whalers, which the British could use to fuel street lamps. The British were not interested. In his diary, Adams wrote that he told Pitt, “the fat of the spermaceti whale gives the clearest and most beautiful flame of any substance that is known in nature, and we are surprised you prefer darkness, and consequent robberies, burglaries, and murders in your streets to receiving as a remittance our spermaceti oil.” Despite the failed sales pitch John Adams made in the late 1700s, the American whaling industry boomed in the early to mid-1800s. And spermaceti was a major component of that success. Spermaceti could be refined into a lubricant that was ideal for precision machinery. The machine tools that made the growth of industry possible in the United States were lubricated, and essentially made possible, by oil derived from spermaceti. Baleen, or "Whalebone" The bones and teeth of various species of whales were used in a number of products, many of them common implements in a 19th century household. Whales are said to have produced “the plastic of the 1800s.” The "bone" of the whale which was most commonly used wasn’t technically a bone, it was baleen, a hard material arrayed in large plates, like gigantic combs, in the mouths of some species of whales. The purpose of the baleen is to act as a sieve, catching tiny organisms in sea water, which the whale consumes as food. As baleen was tough yet flexible, it could be used in a number of practical applications. And it became commonly known as "whalebone." Perhaps the most common use of whalebone was in the manufacture of corsets, which fashionable ladies in the 1800s wore to compress their waistlines. One typical corset advertisement from the 1800s proudly proclaims, “Real Whalebone Only Used.” Whalebone was also used for collar stays, buggy whips, and toys. Its remarkable flexibility even caused it to be used as the springs in early typewriters. The comparison to plastic is apt. Think of common items which today might be made of plastic, and it's likely that similar items in the 1800s would have been made of whalebone. Baleen whales do not have teeth. But the teeth of other whales, such as the sperm whale, would be used as ivory in such products as chess pieces, piano keys, or the handles of walking sticks. Pieces of scrimshaw, or carved whale's teeth, would probably be the best remembered use of whale's teeth. However, the carved teeth were created to pass the time on whaling voyages and were never a mass production item. Their relative rarity, of course, is why genuine pieces of 19th century scrimshaw are considered to be valuable collectibles today. Reference: McNamara, Robert. "Objects Made From the Whaling Industry." ThoughtCo, Jul. 31, 2021, thoughtco.com/products-produced-from-whales-1774070.Whale bone was an important commodity, used in corsets, collar stays, buggy whips, and toys.Whale bone in two pieces. Advanced stage of calcification as indicated by deep pitting. Off white to grey.None.flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, whale bones, whale skeleton, whales, whale bone, corsets, toys, whips -
Flagstaff Hill Maritime Museum and VillageEquipment - Dentist Drill, Late 19th century
... John Greenwood). Handmade steel burs or drills were introduced for dental handpieces, taking advantage of the significant increase in the speed of the drill. In 1891 the first machine-made steel burs were in use. The treadle drill reduced the time to prepare a cavity from hours to less than ten minutes. In 1876 the Samuel S. White Catalogue of Dentist Instruments listed a 12 ½ inch wheel diameter dental engine, with 14 bright...John Greenwood). Handmade steel burs or drills were introduced for dental handpieces, taking advantage of the significant increase in the speed of the drill. In 1891 the first machine-made steel burs were in use. The treadle drill reduced the time to prepare a cavity from hours to less than ten minutes. In 1876 the Samuel S. White Catalogue of Dentist Instruments listed a 12 ½ inch wheel diameter dental engine, with 14 bright ...The design of this and other similar treadle powered dental engine (or dentist drill) was in common use by dentists from the 1870’s into the 1920's. When electricity became accessible to most communities the electrically powered dental engines began to take over from the treadle power. Over the ages teeth were extracted using picks and scissors and other gouging instruments. Bow drills, hand drills and even a "bur thimble" drill were later used to prepare cavities for filling. Some drills were made bendable by attaching flexible shanks between the metal bur and the handle, giving access to the teeth at the back of the mouth. Other mechanical devices were introduced along the way, such as clockwork drills, but they were hard to handle and inefficient. Over the centuries “dentistry has been performed by priests, monks and other healers. This was followed by barbers; the barber’s chair may well have been the precursor to the dental chair. “(SA Medical Heritage Society Inc.) In 1871 James Morrison patented the first commercially manufactured 'foot treadle dental engine', the first practica dental engine although others had been introduced as early as 1790 (by John Greenwood). Handmade steel burs or drills were introduced for dental handpieces, taking advantage of the significant increase in the speed of the drill. In 1891 the first machine-made steel burs were in use. The treadle drill reduced the time to prepare a cavity from hours to less than ten minutes. In 1876 the Samuel S. White Catalogue of Dentist Instruments listed a 12 ½ inch wheel diameter dental engine, with 14 bright steel parts, for sale at US $55 In today’s market, this is the equivalent to US $1200 approx. The specifications of that dental engine are very similar to the this one in our Flagstaff Hill Maritime Village’s collection. It is interesting to note that workings of a similar treadle dentist drill were used and modified to power a treadle spinning wheel of one of the volunteer spinners at Flagstaff Hill Maritime Village. The foot treadle dental engine was a milestone in dental history. “Historic importance of treadle powered machines; they made use of human power in an optimal way” (Lowtech Magazine “Short history of early pedal powered machines”) The invention of a machine to speed up the process of excavation of a tooth lead to the invention of new burs and drills for the handpieces, improving speed and the surgical process of dentistry. They were the fore-runner of today’s electrically powered dental engines. This treadle-powered dentist drill, or dentist engine, is made of iron and steel and provides power for a mechanical dental hand-piece that would be fitted with a dental tool. The drill has a three footed cast iron base, one foot being longer than the other two. A vertical C shaped frame is joined into the centre of the base, holding an axle that has a driving-wheel (or flywheel) and connecting to a crank. A slender, shoulder height post, made from telescoping pipes, joins into the top of this frame and is height adjusted by a hand tightened screw with a round knob. On the post just above the frame is a short metal, horizontal bar (to hold the hand-piece when it is not in use). A narrow tubular arm is attached to the top of the stand at a right angle and can move up and down. At the end of the arm is a firmly fixed, flexible rubber hose protected for a short distance by a sheath of thin metal. At the end of the hose there is a fitting where the drill’s hand-piece would be attached; a small, silver coloured alligator clip is also at the end. A treadle, or foot pedal, is hinged to the heel to the long foot of the base, and joined at the toe to the crank that turns the driving-wheel. There is a spring under the toe of the treadle. The metal driving-wheel has a wide rim. Touching the inside of the rim are four tubular rings that bulge towards the outside of the driving-wheel, away from the pole, and all meet at the hub of the axle. The axle is bulbous between the inside of the driving-wheel and the frame then passes through the frame and is attached on the other side. The driving-wheel has a groove around which a belt would sit. The belt would also fit around a pulley on the arm, at the top of the post. The pulley is joined to a rod inside the arm and this spins the drill's hand-piece and dental tool holder. The two shorter feet of the base are made from a long metal bar that has been curved outwards, and its centre is bolted to the base of the pole. Under the ends of the curved legs of the base are wedge shaped feet. The driving-wheel is decorated in light coloured paint on both sides, each side having three sets of floral decals evenly spaced around them, and each about a sixth of the wheel's circumference. Similar decoration is along the sides of the frame. The foot pedal has decorative cutout patterns in the centre of the foot and at the toe. On the long foot of the stand is some lettering with a fine, light coloured border around it. The lettering is hard to read, being a dark colour and flaking off. There are also remnants of fine, light coloured flourishes. The foot pedal has lettering of the maker’s trade mark cast into the metal at the ball of the foot. Lettering on the base is peeling and difficult to read. The foot pedal has a trade mark cast into it that looks like a combination of ‘C’ , ‘S’ , ‘A’, ‘R’. flagstaff hill, warrnambool, shipwrecked coast, flagstaff hill maritime museum, maritime museum, shipwreck coast, flagstaff hill maritime village, great ocean road, dentist, teeth, dental drill, dental engine, treadle drill, foot powered drill, treadle engine, orthodontics, dental surgery, james morrison -
Flagstaff Hill Maritime Museum and VillageEquipment - Dentist Drill, Late 19th century
... John Greenwood). Handmade steel burs or drills were introduced for dental handpieces, taking advantage of the significant increase in the speed of the drill. In 1891 the first machine-made steel burs were in use. The treadle drill reduced the time to prepare a cavity from hours to less than ten minutes. In 1876 the Samuel S. White Catalogue of Dentist Instruments listed a 12 ½ inch wheel diameter dental engine, with 14 bright...John Greenwood). Handmade steel burs or drills were introduced for dental handpieces, taking advantage of the significant increase in the speed of the drill. In 1891 the first machine-made steel burs were in use. The treadle drill reduced the time to prepare a cavity from hours to less than ten minutes. In 1876 the Samuel S. White Catalogue of Dentist Instruments listed a 12 ½ inch wheel diameter dental engine, with 14 bright ...The design of this and other similar treadle powered dental engine (or dentist drill) was in common use by dentists from the 1870’s into the 1920's. When electricity became accessible to most communities the electrically powered dental engines began to take over from the treadle power. Over the ages teeth were extracted using picks and scissors and other gouging instruments. Bow drills, hand drills and even a "bur thimble" drill were later used to prepare cavities for filling. Some drills were made bendable by attaching flexible shanks between the metal bur and the handle, giving access to the teeth at the back of the mouth. Other mechanical devices were introduced along the way, such as clockwork drills, but they were hard to handle and inefficient. Over the centuries “dentistry has been performed by priests, monks and other healers. This was followed by barbers; the barber’s chair may well have been the precursor to the dental chair. “(SA Medical Heritage Society Inc.) In 1871 James Morrison patented the first commercially manufactured 'foot treadle dental engine', the first practica dental engine although others had been introduced as early as 1790 (by John Greenwood). Handmade steel burs or drills were introduced for dental handpieces, taking advantage of the significant increase in the speed of the drill. In 1891 the first machine-made steel burs were in use. The treadle drill reduced the time to prepare a cavity from hours to less than ten minutes. In 1876 the Samuel S. White Catalogue of Dentist Instruments listed a 12 ½ inch wheel diameter dental engine, with 14 bright steel parts, for sale at US $55 In today’s market, this is the equivalent to US $1200 approx. The specifications of that dental engine are very similar to the this one in our Flagstaff Hill Maritime Village’s collection. It is interesting to note that workings of a similar treadle dentist drill were used and modified to power a treadle spinning wheel of one of the volunteer spinners at Flagstaff Hill Maritime Village. The foot treadle dental engine was a milestone in dental history. “Historic importance of treadle powered machines; they made use of human power in an optimal way” (Lowtech Magazine “Short history of early pedal powered machines”) The invention of a machine to speed up the process of excavation of a tooth lead to the invention of new burs and drills for the handpieces, improving speed and the surgical process of dentistry. They were the fore-runner of today’s electrically powered dental engines. This treadle-powered dentist drill, or dentist engine, is made of iron and steel and provides power for a mechanical dental handpiece that would be fitted with a dental tool. On the foot is painted lettering naming it "The Brentfield" and there is a fine line of light coloured paint creating a border around the name. The paint under the lettering is peeling off. The drill has a Y-shaped, three footed cast iron base, one foot being longer than the other two. A vertical frame is joined into the centre of the base, holding an axle that has a driving-wheel (or flywheel) and connecting to a crank. A slender, shoulder height post, made from adjustable telescoping pipes, joins into the top of this frame. On the post just above the frame is a short metal, horizontal bar (to hold the hand-piece when it is not in use). A narrow tubular arm is attached to the top of the stand at a right angle and can move up, down and around. There is a pulley each side of the joint of the arm and a short way along the arm is fitted a short metal pipe. A little further along the arm a frayed-ended cord hangs down from a hole. At the end of the arm is another pulley and a joint from which hangs a long, thin metal pipe with two pulleys and a fitting on the end. A treadle, or foot pedal, is joined to the long foot of the base, and joined at the toe to the crank that turns the driving-wheel. The metal driving-wheel has a wide rim. Touching the inside of the rim are four tubular rings that bulge towards the outside of the driving-wheel, away from the pole, and all meet at the hub of the axle. The axle fits between the inside of the driving-wheel and the frame then passes through the frame and is attached on the other side. The driving-wheel has a groove around which a belt would sit. The belt would also fit around a pulley on the arm, at the top of the post. The pulley is joined to a rod inside the arm and this spins the drill's hand-piece and dental tool holder. The foot pedal has a cross-hatch pattern on the heel and the ball of the foot has tread lines across it. The end of the toe and the instep areas have cut-out pattern in them. "The ____/ Brentfield / __ DE IN L___" (Made in London) painted on the long foot of the base. Marked on the drill connection is “Richter De Trey, Germany”flagstaff hill, warrnambool, shipwrecked coast, flagstaff hill maritime museum, maritime museum, shipwreck coast, flagstaff hill maritime village, great ocean road, dentist, teeth, dental drill, dental engine, treadle drill, foot powered drill, treadle engine, orthodontics, dental surgery, james morrison, the brentfield, richter de trey, german dental fitting, london dental drill -
The Beechworth Burke MuseumPhotograph - Two Photographs, Saunders, 1864-1972
... John Alston “Six Stars” Wallace. He would go on to extend the established hotel, rebuilding much of it with weatherboard and a shingled roof, adding a two storey structure with a verandah and a theatre capable of supporting 400-500 people, which was often used for international performances. Renamed as the Star Hotel, it was the second in a chain franchise, eventually leading to the “Six Stars” moniker Wallace went by, with hotels at Rutherglen, Chiltern, Yackandandah, Bright...John Alston “Six Stars” Wallace. He would go on to extend the established hotel, rebuilding much of it with weatherboard and a shingled roof, adding a two storey structure with a verandah and a theatre capable of supporting 400-500 people, which was often used for international performances. Renamed as the Star Hotel, it was the second in a chain franchise, eventually leading to the “Six Stars” moniker Wallace went by, with hotels at Rutherglen, Chiltern, Yackandandah, Bright ...Taken some time after 1864, these photographs depict the Star Hotel both directly (8674.1) and from the Hotel north west down Ford Street (8674.2). The images depict the building with its modern exterior, having settled for this brick form after several other building designs. The Star Hotel was the first hotel opened in Beechworth, and would go through a series of dramatic changes under its first three owners. The original timber structure was built by W.H. Neuber, though at the time it was only known as ‘The Beechworth Hotel’. The site was later purchased in 1855 by mining entrepreneur, and prolific business owner, John Alston “Six Stars” Wallace. He would go on to extend the established hotel, rebuilding much of it with weatherboard and a shingled roof, adding a two storey structure with a verandah and a theatre capable of supporting 400-500 people, which was often used for international performances. Renamed as the Star Hotel, it was the second in a chain franchise, eventually leading to the “Six Stars” moniker Wallace went by, with hotels at Rutherglen, Chiltern, Yackandandah, Bright, Snake Valley, and of course, Beechworth. Under his ownership, it developed into a popular location for merchants, wayfarers, and locals alike, with the help of his brother Peter as manager. Situated on a road once synonymous with Melbourne to Sydney roadtrips, and the allure of the gold mines, the popularity of the Star drew all manner of clientele from across the country. As such a central hub, the ‘Star Assembly Rooms’ were used as a meeting place for debates, discussions, festivities, and problem solving among the various working sects of the area. These meetings included shareholder discussions for prospecting companies, railway planning, council meetings, and discussions surrounding the interactions between European and Chinese miners, both good and bad. By late 1856, John had the Beechworth at auction through J.H. Grey & Co. It was most likely due to the high profile murder of the manager, Robert Murdoch, during an altercation in relation to a dine and dash event by a Swedish miner, Charles Jansen, who had been ‘excited by drink’ on November 17th. He had refused to pay for his meal and waiter James Mitchell failed to persuade him otherwise. Mitchell, or possibly Murdoch himself, forced him out as tempers and threats escalated. As the photos tell, there are a number of doors which may be entered through, and Jansen used an alternate entrance to access the building. Murdoch was investigating the noise when he encountered the furious man. He was subsequently stabbed with no warning by a small clasp knife, as he tried to stop the intrusion. His exclamations, "I’m stabbed, I’m stabbed!” alerting other occupants, and Jansen was restrained and arrested. Murdoch died the next day from his injuries, with the inquest carried out on the theatre stage. Some 3000 members of the town attended the funeral, and the Star hung black cloth in memory of Robert and his death. Afterwards, an auction caw the property pass to Messrs Robertson and Quirk, though would return shortly thereafter to Six Stars’ portfolio. Six Stars would later sell off his properties from 1862, with the Beechworth Star purchased by 1864 by John Sitch Clark. This allowed Clark to redevelop a significant portion of the Hotel, stripping a central section and constructing the brick structure that survives today, reopening the Star in July that year. It was after this time that our photographs were taken. Clark would later sell the property to Frank Mitchell, shortly before his own death. The next owner, Frederick Allen, lived on the property before the deed was sold to him in the 1880s. He would later sell the property to William Carroll in 1890, with proprietorship eventually moving to Mr. W.H. Porter, and transferring to a Mr. Marendaz by 1913 and Mr. Holly in 1915. Licensing disputes would arise 1917 between Margaret Carroll and a Mrs. McDonald, before it became delicenced some years prior to 1935. It was around this year that the property was bought by Mr. W.J. Pemberton at the meagre price of £500, down from the £13,000 Six Stars originally auctioned it for. It served as a Youth Hostel for a period of time around 1972, and currently the building serves as a private accommodation on the second floor, with shops taking up the ground floor level.These photographs of the Beechworth Star Hotel as they depict a form of Beechworth's first hotel, and also the site of a high profile murder. Two black and white rectangular photographs printed on matte photographic paper.8674.1 (reverse) Beechworth/ 734/ Tanswell’s Hotel [crossed out]/? Old Star/ Hotel,/[small pencil scratching]/ Saunders/ BMM 8674.1 8674.2 (reverse) Beechworth/ 60%[circled]/ Old Star Hotel/Building etc.,/ 12 ½ cm/ 3"[circled, arrows extending horizontally to edges]/[arrows extending top to bottom mid-right of reverse]/ Saunders/ 734[circled]/ BMM 867.2,/ [thin scribbled bordering around top, right, and bottom edges]star hotel, beechworth hotel, john alston wallace, ja wallace, john sitch clark, frederick allen, robert murdoch, meeting place, tragedy, theatre, mining town -
Flagstaff Hill Maritime Museum and VillageAnimal specimen - Whale bone, Undetermined
... bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John...bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John ...Prior to carrying out a detailed condition report of the cetacean skeletons, it is useful to have an understanding of the materials we are likely to encounter, in terms of structure and chemistry. This entry invites you to join in learning about the composition of whale bone and oil. Whale bone (Cetacean) bone is comprised of a composite structure of both an inorganic matrix of mainly hydroxylapatite (a calcium phosphate mineral), providing strength and rigidity, as well as an organic protein ‘scaffolding’ of mainly collagen, facilitating growth and repair (O’Connor 2008, CCI 2010). Collagen is also the structural protein component in cartilage between the whale vertebrae and attached to the fins of both the Killer Whale and the Dolphin. Relative proportions in the bone composition (affecting density), are linked with the feeding habits and mechanical stresses typically endured by bones of particular whale types. A Sperm Whale (Physeter macrocephalus Linnaeus, 1758) skeleton (toothed) thus has a higher mineral value (~67%) than a Fin Whale (Balaenoptera physalus Linnaeus, 1758) (baleen) (~60%) (Turner Walker 2012). The internal structure of bone can be divided into compact and cancellous bone. In whales, load-bearing structures such as mandibles and upper limb bones (e.g. humerus, sternum) are largely composed of compact bone (Turner Walker 2012). This consists of lamella concentrically deposited around the longitudinal axis and is permeated by fluid carrying channels (O’Connor 2008). Cancellous (spongy) bone, with a highly porous angular network of trabeculae, is less stiff and thus found in whale ribs and vertebrae (Turner Walker 2012). Whale oil Whales not only carry a thick layer of fat (blubber) in the soft tissue of their body for heat insulation and as a food store while they are alive, but also hold large oil (lipid) reserves in their porous bones. Following maceration of the whale skeleton after death to remove the soft tissue, the bones retain a high lipid content (Higgs et. al 2010). Particularly bones with a spongy (porous) structure have a high capacity to hold oil-rich marrow. Comparative data of various whale species suggests the skull, particularly the cranium and mandible bones are particularly oil rich. Along the vertebral column, the lipid content is reduced, particularly in the thoracic vertebrae (~10-25%), yet greatly increases from the lumbar to the caudal vertebrae (~40-55%). The chest area (scapula, sternum and ribs) show a mid-range lipid content (~15-30%), with vertically orientated ribs being more heavily soaked lower down (Turner Walker 2012, Higgs et. al 2010). Whale oil is largely composed of triglycerides (molecules of fatty acids attached to a glycerol molecule). In Arctic whales a higher proportion of unsaturated, versus saturated fatty acids make up the lipid. Unsaturated fatty acids (with double or triple carbon bonds causing chain kinks, preventing close packing (solidifying) of molecules), are more likely to be liquid (oil), versus solid (fat) at room temperature (Smith and March 2007). Objects Made From the Whaling Industry We all know that men set forth in sailing ships and risked their lives to harpoon whales on the open seas throughout the 1800s. And while Moby Dick and other tales have made whaling stories immortal, people today generally don't appreciate that the whalers were part of a well-organized industry. The ships that set out from ports in New England roamed as far as the Pacific in hunt of specific species of whales. Adventure may have been the draw for some whalers, but for the captains who owned whaling ships, and the investors which financed voyages, there was a considerable monetary payoff. The gigantic carcasses of whales were chopped and boiled down and turned into products such as the fine oil needed to lubricate increasing advanced machine tools. And beyond the oil derived from whales, even their bones, in an era before the invention of plastic, was used to make a wide variety of consumer goods. In short, whales were a valuable natural resource the same as wood, minerals, or petroleum we now pump from the ground. Oil From Whale’s Blubber Oil was the main product sought from whales, and it was used to lubricate machinery and to provide illumination by burning it in lamps. When a whale was killed, it was towed to the ship and its blubber, the thick insulating fat under its skin, would be peeled and cut from its carcass in a process known as “flensing.” The blubber was minced into chunks and boiled in large vats on board the whaling ship, producing oil. The oil taken from whale blubber was packaged in casks and transported back to the whaling ship’s home port (such as New Bedford, Massachusetts, the busiest American whaling port in the mid-1800s). From the ports it would be sold and transported across the country and would find its way into a huge variety of products. Whale oil, in addition to be used for lubrication and illumination, was also used to manufacture soaps, paint, and varnish. Whale oil was also utilized in some processes used to manufacture textiles and rope. Spermaceti, a Highly Regarded Oil A peculiar oil found in the head of the sperm whale, spermaceti, was highly prized. The oil was waxy, and was commonly used in making candles. In fact, candles made of spermaceti were considered the best in the world, producing a bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John Adams was the ambassador to Great Britain before serving as president he recorded in his diary a conversation about spermaceti he had with the British Prime Minister William Pitt. Adams, keen to promote the New England whaling industry, was trying to convince the British to import spermaceti sold by American whalers, which the British could use to fuel street lamps. The British were not interested. In his diary, Adams wrote that he told Pitt, “the fat of the spermaceti whale gives the clearest and most beautiful flame of any substance that is known in nature, and we are surprised you prefer darkness, and consequent robberies, burglaries, and murders in your streets to receiving as a remittance our spermaceti oil.” Despite the failed sales pitch John Adams made in the late 1700s, the American whaling industry boomed in the early to mid-1800s. And spermaceti was a major component of that success. Spermaceti could be refined into a lubricant that was ideal for precision machinery. The machine tools that made the growth of industry possible in the United States were lubricated, and essentially made possible, by oil derived from spermaceti. Baleen, or "Whalebone" The bones and teeth of various species of whales were used in a number of products, many of them common implements in a 19th century household. Whales are said to have produced “the plastic of the 1800s.” The "bone" of the whale which was most commonly used wasn’t technically a bone, it was baleen, a hard material arrayed in large plates, like gigantic combs, in the mouths of some species of whales. The purpose of the baleen is to act as a sieve, catching tiny organisms in sea water, which the whale consumes as food. As baleen was tough yet flexible, it could be used in a number of practical applications. And it became commonly known as "whalebone." Perhaps the most common use of whalebone was in the manufacture of corsets, which fashionable ladies in the 1800s wore to compress their waistlines. One typical corset advertisement from the 1800s proudly proclaims, “Real Whalebone Only Used.” Whalebone was also used for collar stays, buggy whips, and toys. Its remarkable flexibility even caused it to be used as the springs in early typewriters. The comparison to plastic is apt. Think of common items which today might be made of plastic, and it's likely that similar items in the 1800s would have been made of whalebone. Baleen whales do not have teeth. But the teeth of other whales, such as the sperm whale, would be used as ivory in such products as chess pieces, piano keys, or the handles of walking sticks. Pieces of scrimshaw, or carved whale's teeth, would probably be the best remembered use of whale's teeth. However, the carved teeth were created to pass the time on whaling voyages and were never a mass production item. Their relative rarity, of course, is why genuine pieces of 19th century scrimshaw are considered to be valuable collectibles today. Reference: McNamara, Robert. "Objects Made From the Whaling Industry." ThoughtCo, Jul. 31, 2021, thoughtco.com/products-produced-from-whales-1774070.Whale bone was an important commodity, used in corsets, collar stays, buggy whips, and toys.Whale bone piece. Advanced stage of calcification as indicated by deep pitting. Off white to grey.None.flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, whales, whale bone, corsets, toys, whips -
Flagstaff Hill Maritime Museum and VillageAnimal specimen - Whale bone, Undetermined
... bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John...bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John ...Prior to carrying out a detailed condition report of the cetacean skeletons, it is useful to have an understanding of the materials we are likely to encounter, in terms of structure and chemistry. This entry invites you to join in learning about the composition of whale bone and oil. Whale bone (Cetacean) bone is comprised of a composite structure of both an inorganic matrix of mainly hydroxylapatite (a calcium phosphate mineral), providing strength and rigidity, as well as an organic protein ‘scaffolding’ of mainly collagen, facilitating growth and repair (O’Connor 2008, CCI 2010). Collagen is also the structural protein component in cartilage between the whale vertebrae and attached to the fins of both the Killer Whale and the Dolphin. Relative proportions in the bone composition (affecting density), are linked with the feeding habits and mechanical stresses typically endured by bones of particular whale types. A Sperm Whale (Physeter macrocephalus Linnaeus, 1758) skeleton (toothed) thus has a higher mineral value (~67%) than a Fin Whale (Balaenoptera physalus Linnaeus, 1758) (baleen) (~60%) (Turner Walker 2012). The internal structure of bone can be divided into compact and cancellous bone. In whales, load-bearing structures such as mandibles and upper limb bones (e.g. humerus, sternum) are largely composed of compact bone (Turner Walker 2012). This consists of lamella concentrically deposited around the longitudinal axis and is permeated by fluid carrying channels (O’Connor 2008). Cancellous (spongy) bone, with a highly porous angular network of trabeculae, is less stiff and thus found in whale ribs and vertebrae (Turner Walker 2012). Whale oil Whales not only carry a thick layer of fat (blubber) in the soft tissue of their body for heat insulation and as a food store while they are alive, but also hold large oil (lipid) reserves in their porous bones. Following maceration of the whale skeleton after death to remove the soft tissue, the bones retain a high lipid content (Higgs et. al 2010). Particularly bones with a spongy (porous) structure have a high capacity to hold oil-rich marrow. Comparative data of various whale species suggests the skull, particularly the cranium and mandible bones are particularly oil rich. Along the vertebral column, the lipid content is reduced, particularly in the thoracic vertebrae (~10-25%), yet greatly increases from the lumbar to the caudal vertebrae (~40-55%). The chest area (scapula, sternum and ribs) show a mid-range lipid content (~15-30%), with vertically orientated ribs being more heavily soaked lower down (Turner Walker 2012, Higgs et. al 2010). Whale oil is largely composed of triglycerides (molecules of fatty acids attached to a glycerol molecule). In Arctic whales a higher proportion of unsaturated, versus saturated fatty acids make up the lipid. Unsaturated fatty acids (with double or triple carbon bonds causing chain kinks, preventing close packing (solidifying) of molecules), are more likely to be liquid (oil), versus solid (fat) at room temperature (Smith and March 2007). Objects Made From the Whaling Industry We all know that men set forth in sailing ships and risked their lives to harpoon whales on the open seas throughout the 1800s. And while Moby Dick and other tales have made whaling stories immortal, people today generally don't appreciate that the whalers were part of a well-organized industry. The ships that set out from ports in New England roamed as far as the Pacific in hunt of specific species of whales. Adventure may have been the draw for some whalers, but for the captains who owned whaling ships, and the investors which financed voyages, there was a considerable monetary payoff. The gigantic carcasses of whales were chopped and boiled down and turned into products such as the fine oil needed to lubricate increasing advanced machine tools. And beyond the oil derived from whales, even their bones, in an era before the invention of plastic, was used to make a wide variety of consumer goods. In short, whales were a valuable natural resource the same as wood, minerals, or petroleum we now pump from the ground. Oil From Whale’s Blubber Oil was the main product sought from whales, and it was used to lubricate machinery and to provide illumination by burning it in lamps. When a whale was killed, it was towed to the ship and its blubber, the thick insulating fat under its skin, would be peeled and cut from its carcass in a process known as “flensing.” The blubber was minced into chunks and boiled in large vats on board the whaling ship, producing oil. The oil taken from whale blubber was packaged in casks and transported back to the whaling ship’s home port (such as New Bedford, Massachusetts, the busiest American whaling port in the mid-1800s). From the ports it would be sold and transported across the country and would find its way into a huge variety of products. Whale oil, in addition to be used for lubrication and illumination, was also used to manufacture soaps, paint, and varnish. Whale oil was also utilized in some processes used to manufacture textiles and rope. Spermaceti, a Highly Regarded Oil A peculiar oil found in the head of the sperm whale, spermaceti, was highly prized. The oil was waxy, and was commonly used in making candles. In fact, candles made of spermaceti were considered the best in the world, producing a bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John Adams was the ambassador to Great Britain before serving as president he recorded in his diary a conversation about spermaceti he had with the British Prime Minister William Pitt. Adams, keen to promote the New England whaling industry, was trying to convince the British to import spermaceti sold by American whalers, which the British could use to fuel street lamps. The British were not interested. In his diary, Adams wrote that he told Pitt, “the fat of the spermaceti whale gives the clearest and most beautiful flame of any substance that is known in nature, and we are surprised you prefer darkness, and consequent robberies, burglaries, and murders in your streets to receiving as a remittance our spermaceti oil.” Despite the failed sales pitch John Adams made in the late 1700s, the American whaling industry boomed in the early to mid-1800s. And spermaceti was a major component of that success. Spermaceti could be refined into a lubricant that was ideal for precision machinery. The machine tools that made the growth of industry possible in the United States were lubricated, and essentially made possible, by oil derived from spermaceti. Baleen, or "Whalebone" The bones and teeth of various species of whales were used in a number of products, many of them common implements in a 19th century household. Whales are said to have produced “the plastic of the 1800s.” The "bone" of the whale which was most commonly used wasn’t technically a bone, it was baleen, a hard material arrayed in large plates, like gigantic combs, in the mouths of some species of whales. The purpose of the baleen is to act as a sieve, catching tiny organisms in sea water, which the whale consumes as food. As baleen was tough yet flexible, it could be used in a number of practical applications. And it became commonly known as "whalebone." Perhaps the most common use of whalebone was in the manufacture of corsets, which fashionable ladies in the 1800s wore to compress their waistlines. One typical corset advertisement from the 1800s proudly proclaims, “Real Whalebone Only Used.” Whalebone was also used for collar stays, buggy whips, and toys. Its remarkable flexibility even caused it to be used as the springs in early typewriters. The comparison to plastic is apt. Think of common items which today might be made of plastic, and it's likely that similar items in the 1800s would have been made of whalebone. Baleen whales do not have teeth. But the teeth of other whales, such as the sperm whale, would be used as ivory in such products as chess pieces, piano keys, or the handles of walking sticks. Pieces of scrimshaw, or carved whale's teeth, would probably be the best remembered use of whale's teeth. However, the carved teeth were created to pass the time on whaling voyages and were never a mass production item. Their relative rarity, of course, is why genuine pieces of 19th century scrimshaw are considered to be valuable collectibles today. Reference: McNamara, Robert. "Objects Made From the Whaling Industry." ThoughtCo, Jul. 31, 2021, thoughtco.com/products-produced-from-whales-1774070. Whale bone was an important commodity, used in corsets, collar stays, buggy whips, and toys.Whale bone vertebrae. Advanced stage of calcification as indicated by deep pitting. Off white to grey.None.flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, whales, whale bone, corsets, toys, whips -
Bright & District Historical Society operating the Bright Museummedals attached to a hand written card, not known
... Walter John Howell was born in the Buckland Valley 30.11.1871 he died in Bright 13.05.1930. ...Walter John Howell was born in the Buckland Valley 30.11.1871 he died in Bright 13.05.1930. ...Walter John Howell was born in the Buckland Valley 30.11.1871 he died in Bright 13.05.1930. Walter "Watty" ran his Blacksmith shop opposite the Alpine Hotel (corner of Anderson and Wood sts) from 1893 until his death in 1930. He was also proprietor of the Ovens Valley Coach Factory in Ireland Street, near the site of the present library, for a numberof years before World War 1. From 1893 he resided in Cobden Street (no.37) The medals were for attaching to a watch chain and were presented by his grandsons, Keith Edwards and Ron Howell (both born in Bright) in November 1994 The Medals were presented by the Bright Fire Brigade which has been a local volunteer organisation scince the C1870s The Howell family were one of the first families to settle in the Buckland Valley and many descendants live in the local area Reference to the Ovens Valley Coach WorksQuarto size ridgid card with information regarding the medal hand written in black ink. Two silver medals with inscriptions, one shield shape and the other round with a star in the center, sash and small horse shoe on the top, medals are stitched to the cardboad and taped on the reverse side.Two medals, both silver, one is shield shaped with a fire reel cart inscribed on the front and inscription "B.F.B. ANNIVERSARY 11-5-94 four men won by W. Howell" and number 65. The second one in round with with a star in the center, with a small horse shoe and sash on the top, inscribed on the front, "B.F.B. Anniversary best of eight men W. Howell 11-5-94", the reverse is blank except for a small 69. -
Federation University Historical CollectionBook, Victoria Education Gazette and Teachers' Aid, 1921-1930, 1921-1930
... Tantham-Fryer, Cookery Class, John Edward Thomas. .3) War Savings Stampsm Swimming and Life-saving, Teh Rural School System of Victoria, Imaginative Composition, ANZAC Day, Retardation, Teh Bright Child Hudson Hard Obituary, Leeches, Relief for Distress in Europe, Dental, Teachers' Library, History of Portarlington, J.E. ...Tantham-Fryer, Cookery Class, John Edward Thomas. .3) War Savings Stampsm Swimming and Life-saving, Teh Rural School System of Victoria, Imaginative Composition, ANZAC Day, Retardation, Teh Bright Child Hudson Hard Obituary, Leeches, Relief for Distress in Europe, Dental, Teachers' Library, History of Portarlington, J.E. ...The Victoria Education Gazette and Teachers' Aid was published for Victoria's teachers and was sent to all school on the state. In 1920 The Ballarat School of Mines had donated 136 pounds 14 shillings and 10 pence to the Victorian Education Department's War Relief Account, and the Ballarat Junior Technical School had donated 10 pounds 6 shillings and 10 pence.Ten black hard covered volumes with red tape spine, covering 1921 to 1930. The gazettes include Education Department appointments, transfers, resignations and retirements, vacancies, notices, queries, notices of books, examination papers, original articles, lesson plans, suggestions for lessons, drawing, obituaries, notes on nature study, mathematics, music, sloyd woodwork, English grammar, Victorian State School Swimming Clubs, Geography, penmanship, science, History, Latin, Geography, The School Garden, horticulture, singing, World War One; ANZAC Day, lifesaving, Astronomy, Empire Day, ANZAC Buffet London, Victorian Education Department's War Relief Fund .1) 1928. Articles include: New Caledonia, Swimming and Lifesaving, School forestry, a visit to the pyramids, Exploration of Gippsland, paul de Strezelecki, Angus McMillan, Villers Bretonneux Memorial School, American Black Walnut, Red Gum, Messmate Stringybark, The Great Barrier Reef, retirement of Frank Tate, Stawell High School, Report on Some Aspects of Education in the United States, Jubilee Education Exhibition , New School Readers; measured Drawing Images include: Macarthur Street School's Plantation, Maryborough School Plantation, Pinus Insignis (Radiata) ready for Milling, Creswick State Forest, Metalwork, Daylesford Pine Plantation four years old, Henry Harvey (art Inspector); Omeo School Endowment Plantation; Frank Tate; Stawell High School Drawings From Casts; Lake Tyers School Endowment Plantation, measured drawing, Thomas H. Stuart, GEorge Swinburne. J.R. Tantham-Fryer, Cookery Class, John Edward Thomas. .3) War Savings Stampsm Swimming and Life-saving, Teh Rural School System of Victoria, Imaginative Composition, ANZAC Day, Retardation, Teh Bright Child Hudson Hard Obituary, Leeches, Relief for Distress in Europe, Dental, Teachers' Library, History of Portarlington, J.E. Stevens Obituary, Victorian Teachers in England Images: Swimming and Life-Saving Medallion .3) Swimming and Lifesaving, Bronze medallion, Victoria Leage of Victori, War Savings Stamps, Rural School Sytem of Victoria, .4) War Relief, Talbot Colony for Epileptics Masonmeadows, Discipline New and Old (Percy Samson), Soldier teachers, Preservation of Australian Birds, Arbor Day, Jubilee of Free Education, Teaching Geography, Poery in Schools, School Committees, Shelter Pavilion, Mysia Memorial School, Clovers, Jubilee Exhibition, Domestic Arts, Louis Pasteur, .5) Victoria League of Victoria, An Endowment Scheme (Pine Plantations), School Endowment Plantations, Protecting our trees by Owen Jones,. Victorian State Schools Horticultural Society, Sloyd Woodwork, School Forestry, Thomas Brodribb Obituary and portrait, Imperial Education Conference London, school Management and Method, School plantations, Eucalypt plantations in the Bendix and Heathcote District, Junior Red Cross, Jubilee Education Exhibition, Gould League Competitions, handwriting, The School Magazine, Frank Tate in London, Victorian beetles, Council of Public Education, Villers Bretonneux and its new School, Death of Samuel Summons, Woodwork Summer School, Swimming, Japanese Relief Fund, Retirement of John Cross, reminiscences of the Late Mr Albert Mattingley .6) Thomas H. Trengrove and the Villers Bretonneux School hall and pilaster carvings, forestry, visit of Maryborough teachers to Ballarat Water Reserves, noxious weeds, relief for Distressed Europe, The Dalton Plan, Empire Day, Retirement of Mr Fussell, Centenary of Hume and Hovell Expedition, League of Kindness, Effective Nature Study in a Rural School, Some Facts About Paper and their Bearing Upon School Plantations, Council of the Working Men's College Melbourne, Maria Montessori, University Vacation School, Horticulture in State Schools, An Informal Chat About French Schools (C.R. McRae), The Vacation School, Johann Heinrich Pestalozzi, Inspector's Report on a 5th-class School, Can Children Write Verse, John Adams, Victoria League of Victoria, R.F. Toutcher, Sir James Barbie's Address to High-School Girls, Impressions of a High School Teacher Abroad (R.D. Collman), The Spirit of the School Plantation Scheme, Monument of the Late Mr and Mrs A.T. Sharp at Box Hill Cemetery, The Teaching of Geography, The Treatment of Poetry in Class, Two Difficult Arithmetic Lessons, Location of Principal Australian Timbers, Dr John Smyth, Stammering and its Influence on Education, Wireless Broadcasting as an Educational Medium, Boys School at Villers Brettonneux, The New School at Villers Brettonneux, Bird Day, Messmate or Stringybark, What Every Woman Knows, Director's Report on Denmark .7)1925 . Includes: School Forestry, horticulture, J.H. Betheras retirement, Ivanhoe School, Coburg School, Moorabool Junior Technical School, Villers Bretonneux School hall and pilaster carvings, Francis Ormond, William Charles Kernot, Corsican Pnes at Creswick, Ballarat High School Plantation, Workin Men's College, RMIT, Naorrow LEafed Peppermint, Education and World Peace, Eucalypts of Victoria, John C. Eccles, Blue Gum. Manners, Giving the Poorly Nourished Boy A Chance, Native Ferns, Marybourough Technical School, Memorial School at Villers-Brettonneux .8) Experimental Plots in Country Schools (W.W. Gay), Villers Bretonneaux and its Memorial School. nominated classes for Art Teachers, The Teachers Act 1925, Horsham High School, Richmond Technical School, Farewell to Messrs C.R. Long and Ponsonby Carew-Smyth, Frank Tate, Phyiscal Training, Arbor Day, ANZAC Day, Shakespeare Day,Bendigo Junior Techncial School, Musical Appreciation, Motor Dental Unit, School Camps, Education Act of 1872: Mr Angus McKay's Part (George Mackay), A Bush Fire Experience (Irene Stable), Black Sunday, Californian Red Pine, Women's Education in America, Farewell to Lord and Lady Stradbroke, Grevilia Robusta, Silky Oak, Redwood, John E. Grant, The Need for Research (Donald Clark), Junior Drama, Ida D. Marshall, John Pounds, Australian Books, Fish Creek School, State Boundaries, History in the Curriculum, Ceramic Art in Australia (Percy E. Everett), Choice of School Songs, Tasmanian Beech, Should History be Taught on a National or an International Basis, Hydatid Disease, James Holland Obituary, Florrie Hodges, Queensland Maple, Post Bushfire Ruins at Fumina, Arbor Day at Fumina, Queensland Rosewood, Omeo Endowment Plantation, Bird Day, Junior Red Cross, Pioneers' Day, Edward Henty, Junior Technical Schools, Yellow Pine, History and Progress of Needlework, A.B.C. of Astronomy, Northumberland Mental tests, Queensland Red Cedar, Teh Globe Theatre, .9) 1927 includes The ABC of Astronomy, Atr Theatre, English Beech, Angus McMillan Art Pottery, School Singing, State Schools' Nursery, School endowment plantations, Making a Man, experimental proof of Charles's Law, John Smyth obituary and portrait, Linton Pine Planation, motivation of arithmetic, Women's Classes at Dookie, Swimming and Lifesaving, Pioneers Day, Drawing, Ballarat High School planation, biting fly, Tir-Na-N'og, John Byatt retirement and portrait, Technical Schools Conference at Daylesford, Ethel Osborne and portrait, library. Francis Thompson portrait, Adam Lindsay Gordon, Solar movement, motor transport, Liverpool Cathedral, Teh Story of the Cathedral, Bendigo School of Mines, Omeo School pine plantation, Egypt and the Nile, Self-Criticism Images include Ballarat High School Pine Plantation, Vale Park, Francis Ormond, Woking Men's College (RMIT), W.N. Kernot, A Stand of Corsican Pines at Creswick, Victoria .10) Some Remarks on the Relationship of the technical Schools to the University (Donald Clark) , Present Day Education in England , Memorial to Joseph Cornwall, Spelling, motivation, Singing, State Scholarships, Agriculture, T.W. Bothroyd, The Swimmer - A Summer School Sketch (H.H. Croll), Swimming woodwork, Farewell to Dr Sutton. ,Drowning, War Savings Movement, White Beech. George S. Browne , Example of School Honor Book, Blackwood, Optimistic teacher, Soldier settlement around Shapparton, Oral Hygiene, Cinema Machines, Basketball, Wakter M. Camble obituary, ANZAC day Pilgrimage in England, Froebel's System, Montessori Method, War Relief Fund, New Zealand Kauri Tree, Bat Tenis at a Bush School., Advice to Australian Girls, Chrysanthemums, Royal Visit, National Parks of Victoria, Maurice Copland Obituary, total eclipse of the Moon, School libraries, The teacher and the COmmunity (A.M. Barry), The Reading Lesson, Swimming and Life-saving, MElbourne Teachers' College War Memorial Windows Old Trainees War Memorial, Cultivating a Natinoal Art education gazette, school, education, teaching, teacher, world war one, school plantations, macarthur street pine plantation, school forestry, creswick state forest, anzac day, armistance celebrations, frank tate, frank tate retirement, drawing from cast, education department school readers, lake tyers pine plantation, w.n. kernot, rmit, working men's college, francis ormond, pine plantations, calenbeem park, creswick, villers-brettonneux school hall and carvings, thomas trengrove, corsican pines, creswick, pine endowment plantations, mccarthur st primary school pine plantation, ballarat high school pine plantation, vale park, mount pleasant primary school pine plantation, golden point pine plantation, angus macmillan, paul de strzelecki, gippsland, villers-bretonneaux memorial school, francis thompson, english ash, pestalozzi centenary, shakespeare day, swimming classes, clear pine, cinema in education, american black walnut, red gum, thomas wolliam bothroyd obituary, and portrait, physical training displays, teaching of spelling, ohm's law, blue gum -
Upper Yarra MuseumLamp, Tilley Lamp Company
... John Tilley’s invention of the hydro-pneumatic blowpipe in 1813 in England. http://en.wikipedia.org/wiki/Kerosene_lamp#Pressure_lamp Pressure lamps are far more sophisticated than wick lamps and produce a much brighter light, although they can be quite complicated and fiddly to use. ...John Tilley’s invention of the hydro-pneumatic blowpipe in 1813 in England. http://en.wikipedia.org/wiki/Kerosene_lamp#Pressure_lamp Pressure lamps are far more sophisticated than wick lamps and produce a much brighter light, although they can be quite complicated and fiddly to use. ...http://en.wikipedia.org/wiki/File:Tilley-storm-lantern-X246-May- Tilley storm lantern, this model has been in production since 1964 The Tilley Lamp derives from John Tilley’s invention of the hydro-pneumatic blowpipe in 1813 in England. http://en.wikipedia.org/wiki/Kerosene_lamp#Pressure_lamp Pressure lamps are far more sophisticated than wick lamps and produce a much brighter light, although they can be quite complicated and fiddly to use. This type of lamp is commonly known in the UK as a "Tilley lamp", after a manufacturer of the same name, and in North America as a "Coleman lantern" for similar reasons. A kerosene blowtorch displaying the various aspects of the kerosene burnerA pressure lamp has a fuel tank at the bottom with a small pump to pressurise the kerosene. There is a narrow gap up to the top of the lamp, called a flue, and at the top of the lamp there is a burner (gas outlet). Directly underneath the burner is the mantle, a fabric bag coated with chemicals that incandesce when heated by the gas flame. The burner lamp is known for its brightness. It is so bright because of the amount of pressure that is placed onto the wick. This pressure allows a steady flow of the gasoline and a constant light Tilley Storm Pressure Lantern, model no x246 has a stainless steel base which is filled with kerosene, with a pump used to pressurize the kerosene vapor. Under the base is a sticker.On top is a black hood with vents which sits on the glass heat resistant shade. The glass shade has an etched label. It has a white and pink mantle on the central rod with a long shaped stainless steel handle, this folds down when not in use.Base - Sticker Tilley Lamp Model X246 Etched on glass shade Tilley, Durosil, ITI, Heat Resistant. Made in Englandlantern tilley pump pressure mantle kerosene methylated spirits stainless steel lamp kerosene lamp round glass cylinder -
The Beechworth Burke MuseumAnimal specimen - Scarlet Tanager (male), Trustees of the Australian Museum, 1860-1880
... This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century. taxidermy mount taxidermy animalia burke museum beechworth australian museum skin reynell eveleigh johns bird australian birds american american birds scarlet tanager tanager medium bird small bird Swing tag: 114a / unnamed / catalogue, page 59 Cotton tag: A.4440 / The Scarlet Tanager specimen stands perched on a wooden platform looking towards the ground. It has bright ...The Scarlet Tanager is an American songbird of medium size with bright coloured plumage. They are commonly located in eastern North America and in northwestern South America. They can often be found within woodlands that have oaks. On occasion, the Tanager can be seen in suburban areas including parks and gardens. These birds are sociable and often join with other foraging flocks. They are carnivores (insectivores) and feed on insects including wasps, ants, moths, beetles, butterflies and grasshoppers. The numbers of these birds in America are declining due to exposure and starvation during the colder months. These birds can also die from collisions with man made objects which includes the TV and radio towers, buildings and cars. They also have high rates of predation and brood parasitism. However, at current the IUCN classifies this species as Least Concern and note that their numbers are stable. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. These skins were then mounted by members of the Burke Museum Committee and put-on display in the formal space of the Museum’s original exhibition hall where they continue to be on display. This display of taxidermy mounts initially served to instruct visitors to the Burke Museum of the natural world around them, today it serves as an insight into the collecting habits of the 19th century.This specimen is part of a significant and rare taxidermy mount collection in the Burke Museum. This collection is scientifically and culturally important for reminding us of how science continues to shape our understanding of the modern world. They demonstrate a capacity to hold evidence of how Australia’s fauna history existed in the past and are potentially important for future environmental research. This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century.The Scarlet Tanager specimen stands perched on a wooden platform looking towards the ground. It has bright red/orange feathers on the main body and head with dark black feathers on the tail and wings. Overall, whilst retaining a bright appearance the bird has faded in contrast to it's original colouring This particular specimen has disheveled feathers and is missing one leg. The bill is short and pale and the specimen has been provided with glass eyes made in a dark colour. The specimen has two paper identification tags attached to the damaged leg.Swing tag: 114a / unnamed / catalogue, page 59 Cotton tag: A.4440 /taxidermy mount, taxidermy, animalia, burke museum, beechworth, australian museum, skin, reynell eveleigh johns, bird, australian birds, american, american birds, scarlet tanager, tanager, medium bird, small bird -
The Beechworth Burke MuseumAnimal specimen - Satin Bowerbird (male), 1860-1880
... bright blue to decorate the bower including straws, clothes peg, parrot feathers, pens, marble, string, glass and bottle tops. This decoration is done by a male Bowerbird in the effort to attract females. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. ...bright blue to decorate the bower including straws, clothes peg, parrot feathers, pens, marble, string, glass and bottle tops. This decoration is done by a male Bowerbird in the effort to attract females. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. ...The Satin Bowerbird is commonly located around the eastern and south-eastern coast of Australia. They reside in wetter forests and woodlands, and nearby open areas. They feed mostly on fruits throughout the year but in summer will supplement their food supply with insects and in winter with leaves. The Satin Bowerbird is most commonly known for it's practice of building and decorating it's bower. They will often collect objects of bright blue to decorate the bower including straws, clothes peg, parrot feathers, pens, marble, string, glass and bottle tops. This decoration is done by a male Bowerbird in the effort to attract females. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. These skins were then mounted by members of the Burke Museum Committee and put-on display in the formal space of the Museum’s original exhibition hall where they continue to be on display. This display of taxidermy mounts initially served to instruct visitors to the Burke Museum of the natural world around them, today it serves as an insight into the collecting habits of the 19th century.This specimen is part of a significant and rare taxidermy mount collection in the Burke Museum. This collection is scientifically and culturally important for reminding us of how science continues to shape our understanding of the modern world. They demonstrate a capacity to hold evidence of how Australia’s fauna history existed in the past and are potentially important for future environmental research. This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century.This taxidermy Satin Bowerbird specimen has dark black/blue glossy plumage and a pale coloured bill of small size. The bird is of a medium size compared to other species of birds and has pale legs with short talons. The eyes are made of strikingly blue coloured glass which represents the violet-blue iris of this bird while living. The bird has a short tale and has been stylized in a leaning/crouched position with it's back arched upwards and head out long. This specimen stands on a small platform and there is some deterioration to the tail feathers which protrude beyond the platform which may have otherwise provided some protection. Donor - Mr. E.T. / BH. RO. /taxidermy mount, taxidermy, animalia, burke museum, beechworth, australian museum, skin, reynell eveleigh johns, bird, australian birds, bower, bowerbird, satin bowerbird -
The Beechworth Burke MuseumAnimal specimen - Scarlet Tanager (male), Trustees of the Australian Museum, 1860-1880
... This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century. taxidermy mount taxidermy animalia burke museum beechworth australian museum skin reynell eveleigh johns bird australian birds american american birds scarlet tanager tanager medium bird small bird Swing tag: 143a / unnamed / catalogue page 59 Metal tag: A4439 / The Scarlet Tanager specimen stands perched on a wooden platform looking forwards in a raised position. It has bright ...The Scarlet Tanager is an American songbird of medium size with bright coloured plumage. They are commonly located in eastern North America and in northwestern South America. They can often be found within woodlands that have oaks. On occasion, the Tanager can be seen in suburban areas including parks and gardens. These birds are sociable and often join with other foraging flocks. They are carnivores (insectivores) and feed on insects including wasps, ants, moths, beetles, butterflies and grasshoppers. The numbers of these birds in America are declining due to exposure and starvation during the colder months. These birds can also die from collisions with man made objects which includes the TV and radio towers, buildings and cars. They also have high rates of predation and brood parasitism. However, at current the IUCN classifies this species as Least Concern and note that their numbers are stable. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. These skins were then mounted by members of the Burke Museum Committee and put-on display in the formal space of the Museum’s original exhibition hall where they continue to be on display. This display of taxidermy mounts initially served to instruct visitors to the Burke Museum of the natural world around them, today it serves as an insight into the collecting habits of the 19th century.This specimen is part of a significant and rare taxidermy mount collection in the Burke Museum. This collection is scientifically and culturally important for reminding us of how science continues to shape our understanding of the modern world. They demonstrate a capacity to hold evidence of how Australia’s fauna history existed in the past and are potentially important for future environmental research. This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century.The Scarlet Tanager specimen stands perched on a wooden platform looking forwards in a raised position. It has bright red/orange feathers on the main body and head with dark black feathers on the tail and wings. Overall, whilst retaining a bright appearance the bird has faded in contrast to it's original colouring. The bill is short and pale and the specimen has been provided with glass eyes made in a dark colour. The specimen has two paper identification tags attached to the right leg.Swing tag: 143a / unnamed / catalogue page 59 Metal tag: A4439 /taxidermy mount, taxidermy, animalia, burke museum, beechworth, australian museum, skin, reynell eveleigh johns, bird, australian birds, american, american birds, scarlet tanager, tanager, medium bird, small bird -
The Beechworth Burke MuseumAnimal specimen - Dollarbird, Trustees of the Australian Museum, 1860-1880
... This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century. taxidermy mount taxidermy animalia burke museum beechworth australian museum skin reynell eveleigh johns bird dollarbird australian birds broad-billed roller Swing-tag: 96a / Australian Roller / Catalogue, page, 25. This adult Dollarbird has a brown body and head, blue-green back and wings. It has a distinctive bright ...The Dollarbird is so-named because of the coin-shaped patches on the tips of their wings, which is clear when in flight. They have distinctive blue-green colouring on their backs and wings, and a bright blue throat. This species migrates to northern and eastern Australia for breeding, between the months of September and April. These birds migrate to New Guinea and nearby islands in the Winter, but can be found in Japan and India also. This species resides in open wooded areas, preferring hollow-bearing trees for nesting. They can be found spending most of their time perched on high branches in search of insects, and will often 'hawk' at dusk above the tree-tops, hovering on the wing for lengthy periods. This specimen is a good example of this species, however the distinctive coin-patches on the tips of the wings are partially hidden by the tuck of the wing. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. These skins were then mounted by members of the Burke Museum Committee and put-on display in the formal space of the Museum’s original exhibition hall where they continue to be on display. This display of taxidermy mounts initially served to instruct visitors to the Burke Museum of the natural world around them, today it serves as an insight into the collecting habits of the 19th century.This specimen is part of a significant and rare taxidermy mount collection in the Burke Museum. This collection is scientifically and culturally important for reminding us of how science continues to shape our understanding of the modern world. They demonstrate a capacity to hold evidence of how Australia’s fauna history existed in the past and are potentially important for future environmental research. This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century.This adult Dollarbird has a brown body and head, blue-green back and wings. It has a distinctive bright blue or purple plumage around its throat. The tips of the wings are brown. The pale-blue coin shaped patches on the tips of the wings are just visible. This specimen stands upon a wooden platform and has an identification tag tied around its leg.Swing-tag: 96a / Australian Roller / Catalogue, page, 25. taxidermy mount, taxidermy, animalia, burke museum, beechworth, australian museum, skin, reynell eveleigh johns, bird, dollarbird, australian birds, broad-billed roller -
The Beechworth Burke MuseumAnimal specimen - Common Starling, Trustees of the Australian Museum, 1860-1880
... bright plumage. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. ...bright plumage. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. ...The Common Starling is an introduced species to Australia (as well as widely throughout the world), and is considered a pest due to its attacks on fruits and seedlings, as well as competing with the native bird population. It was introduced to Victoria in 1861, and has since become abundant, whose sheer numbers cause many problems. These birds are a social species, which can mass in very large flocks (murmations), and show spectacular synchronised aerobatic displays. This species has a distinctive plumage, with glossy black bodies, white spots on their backs and wings, and a purple and green tinge to their underparts and wings. This species, when moving across the ground, has a distinctive 'walk' or 'run' rather than the traditional hopping of many other bird species. This bird is a noisy species, often becoming a nuisance to people. Starlings prefer to nest in holes in trees or buildings, yet there are at least two recorded cases of this species nesting on the backs of living sheep. This specimen is a good and intact example of this species. As the white spots are large and visible, as well as the purple and green shine, this specimen likely died close to Autumn and the breeding season, when these birds get their new bright plumage. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. These skins were then mounted by members of the Burke Museum Committee and put-on display in the formal space of the Museum’s original exhibition hall where they continue to be on display. This display of taxidermy mounts initially served to instruct visitors to the Burke Museum of the natural world around them, today it serves as an insight into the collecting habits of the 19th century. This specimen is part of a significant and rare taxidermy mount collection in the Burke Museum. This collection is scientifically and culturally important for reminding us of how science continues to shape our understanding of the modern world. They demonstrate a capacity to hold evidence of how Australia’s fauna history existed in the past and are potentially important for future environmental research. This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century.This adult Common Starling has glossy-black plumage with a metallic sheen, and white speckles throughout. The plumage has a purple and green shine. The irises are white. Its beak is black and pointed. This specimen appears to be male, with less white spots on its underparts. This specimen stands upon a wooden platform and has an identification tag tied around its leg, and a metal tag tied around its foot.Swing-tag: 139a. / Starling / Catalogue Page, 59 / Metal-tag: 1250 (?)taxidermy mount, taxidermy, animalia, burke museum, beechworth, australian museum, skin, reynell eveleigh johns, bird, sheep, common starling, starling, murmations, pest, australian bird -
The Beechworth Burke MuseumAnimal specimen - Regent Honeyeater, Trustees of the Australian Museum, 1860-1880
... bright yellow typical of most Regent Honeyeaters. The specimen is also stretched taller than most Regent Honeyeaters, resulting in a thinner neck and chest compared to the plumpness typically expected. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. ...bright yellow typical of most Regent Honeyeaters. The specimen is also stretched taller than most Regent Honeyeaters, resulting in a thinner neck and chest compared to the plumpness typically expected. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. ...Regent Honeyeaters get their name from their striking yellow-and-black plumage . Previously found across the south east of Australia far as Adelaide and Rockhampton in central Queensland, over the last thirty years their population has dwindled. Regent Honeyeaters are now only found between north-eastern Victoria and south-eastern Queensland, with only three known breeding grounds. Regent Honeyeaters typically live in eucalypt forests and woodlands. The yellow edging on the specimen's wings is duller than the bright yellow typical of most Regent Honeyeaters. The specimen is also stretched taller than most Regent Honeyeaters, resulting in a thinner neck and chest compared to the plumpness typically expected. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. These skins were then mounted by members of the Burke Museum Committee and put-on display in the formal space of the Museum’s original exhibition hall where they continue to be on display. This display of taxidermy mounts initially served to instruct visitors to the Burke Museum of the natural world around them, today it serves as an insight into the collecting habits of the 19th century.The Regent Honeyeater is a critically endangered Australian bird due to the clearing of their natural habitat, particularly around the Yellow Box-White Box-Blakely's Red Gum Woodlands in New South Wales. This specimen is part of a significant and rare taxidermy mount collection in the Burke Museum. This collection is scientifically and culturally important for reminding us of how science continues to shape our understanding of the modern world. They demonstrate a capacity to hold evidence of how Australia’s fauna history existed in the past and are potentially important for future environmental research. This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century.This Regent Honeyeater has a dark brown/black crown with a distinct orange patch under each red-coloured eye. Its back and upper chest are also a dark brown but with a white scalloped pattern. At the lower are of its belly, the white colour dominates the brown. Its wings and tail are brown edged with yellow. Its beak is a short, dark brown curl and its legs are brown. The bird stands on a brown, wooden perch with a circular bar, curved stand, and circular base. It has an identification tag tied around its right leg.57a. / Warty-faced Honey-eater ./ See Catalogue, Page 18 ./taxidermy mount, taxidermy, animalia, burke museum, beechworth, australian museum, skin, reynell eveleigh johns, bird, regent honeyeater, honeyeater, warty-faced honeyeater, australian birds, endangered birds, endangered animals -
The Beechworth Burke MuseumAnimal specimen - Grey-headed Woodpecker, Trustees of the Australian Museum, 1860-1880
... This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century. taxidermy mount taxidermy animalia burke museum beechworth australian museum skin reynell eveleigh johns bird woodpecker grey-headed woodpecker gray-headed woodpecker 149a. / Unnamed / Catalogue page 60 / This male Grey-headed Woodpecker has a bright red head patch and distinctive black mustache-like stripes on both sides of the face, with additional black stripes running from the pale yellowish beak to the inner corner of the eye. ...The Grey-headed Woodpecker is a medium-sized woodpecker of the Picidae family, that is sometimes mistaken for the similar-looking Green Woodpecker. The species is known to have a grey face, neck, and underparts, with green wings and back, and underwing feathers that are a dark brown to dark grey-black with white dots. Although this can vary depending on location, with European and Northeast Asian birds having overall paler colours, to mainland Asian birds being darker overall. The species has a distinctive black mustache-like stripe on both sides of the face and the mature males have a red patch on the top of the head. These tree-clinging woodpeckers usually feast on ants, insects, and berries. This specimen differs in appearance from the common Grey-headed Woodpecker as its back feathers appear a dark grey, where in the wild these birds have sometimes quite vibrant green feathers. The eyes of the grey-headed woodpecker are also usually red with black iris, not white with black iris as in this specimen. The beak is also a pale yellowish colour on this bird, whereas commonly the species has a grey upper beak and pale yellow lower beak. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. These skins were then mounted by members of the Burke Museum Committee and put-on display in the formal space of the Museum’s original exhibition hall where they continue to be on display. This display of taxidermy mounts initially served to instruct visitors to the Burke Museum of the natural world around them, today it serves as an insight into the collecting habits of the 19th century.This specimen is part of a significant and rare taxidermy mount collection in the Burke Museum. This collection is scientifically and culturally important for reminding us of how science continues to shape our understanding of the modern world. They demonstrate a capacity to hold evidence of how Australia’s fauna history existed in the past and are potentially important for future environmental research. This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century.This male Grey-headed Woodpecker has a bright red head patch and distinctive black mustache-like stripes on both sides of the face, with additional black stripes running from the pale yellowish beak to the inner corner of the eye. The underbelly is a light grey and the back is a slightly darker grey. The underwing feathers are a light rufous-brown with white dots. The specimen is mounted on a sloping vertical wooden cylindrical stick attached to a mount. There are also two paper swing tags, one of which is torn in half.149a. / Unnamed / Catalogue page 60 /taxidermy mount, taxidermy, animalia, burke museum, beechworth, australian museum, skin, reynell eveleigh johns, bird, woodpecker, grey-headed woodpecker, gray-headed woodpecker -
The Beechworth Burke MuseumAnimal specimen - Blue-faced Honeyeater, Trustees of the Australian Museum, 1860-1880
... This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century. taxidermy mount taxidermy animalia burke museum beechworth australian museum skin reynell eveleigh johns honeyeater blue-faced honeyeater The blue-faced Honeyeater is large in size with bright white and black colouring. ...The Blue-faced Honeyeater is commonly located in northern and eastern mainland Australia. It is also found in Papua New Guinea. This species prefer to reside in tropical locations or those which are sub-tropical and wetter temperate or semi-arid zones. It can be located in open forests and woodlands close to water. Due to these locations along with it's propensity for feeding on the fruit and flowers of the banana in northern Queensland, this species is colloquially known as the "Bananabird". These birds commonly reside in pairs, family groups or small flocks. They can often be found socialising with other species including the yellow-throated miner and the Little Friarbird. The Blue-faced Honeyeater feed on insects and invertebrates, but also may eat nectar and fruit from native and exotic plants. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. These skins were then mounted by members of the Burke Museum Committee and put-on display in the formal space of the Museum’s original exhibition hall where they continue to be on display. This display of taxidermy mounts initially served to instruct visitors to the Burke Museum of the natural world around them, today it serves as an insight into the collecting habits of the 19th century.This specimen is part of a significant and rare taxidermy mount collection in the Burke Museum. This collection is scientifically and culturally important for reminding us of how science continues to shape our understanding of the modern world. They demonstrate a capacity to hold evidence of how Australia’s fauna history existed in the past and are potentially important for future environmental research. This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century.The blue-faced Honeyeater is large in size with bright white and black colouring. The bird also has golden olive-green colouring on it's rear, tail and wings. Around the eyes is strikingly blue coloured skin which has faded significantly on this particular specimen. It also has a pair of glass eyes to replace the original which do not survive the taxidermy process. There is a patch of dark colouring on the plumage of the stomach and neck of the bird. This dark batch is surrounded by white plumage which also forms a white band across the back of the neck. This specimen is stylized placed on a wooden mount. The bird's feet are attached to a thin stick and the stick attached to the mount.taxidermy mount, taxidermy, animalia, burke museum, beechworth, australian museum, skin, reynell eveleigh johns, honeyeater, blue-faced honeyeater -
The Beechworth Burke MuseumAnimal specimen - Dollarbird, Trustees of the Australian Museum, 1860-1880
... This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century. taxidermy mount taxidermy animalia burke museum beechworth australian museum skin reynell eveleigh johns bird dollar bird This juvenile Dollar bird's feet are a faded brown and the bill is a light yellow. The colour of this specimen's head and neck are a cool grey which fades to a patch of bright purple on its upper chest. ...The DollarBird is the only member of the Roller family found in Australia and can be found in forests and woodland areas. The name of this bird comes from the large white spot on the underside of each wing which resemble silver dollars. They travel to Australia each year to breed from New Guinea and the surrounding area. Their main source of food is insects which they hunt during flight. They capture these foods while displaying skillful aerial pursuits. They then return to the same perch they were upon when they left to catch their food. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. These skins were then mounted by members of the Burke Museum Committee and put-on display in the formal space of the Museum’s original exhibition hall where they continue to be on display. This display of taxidermy mounts initially served to instruct visitors to the Burke Museum of the natural world around them, today it serves as an insight into the collecting habits of the 19th century.This specimen is part of a significant and rare taxidermy mount collection in the Burke Museum. This collection is scientifically and culturally important for reminding us of how science continues to shape our understanding of the modern world. They demonstrate a capacity to hold evidence of how Australia’s fauna history existed in the past and are potentially important for future environmental research. This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century.This juvenile Dollar bird's feet are a faded brown and the bill is a light yellow. The colour of this specimen's head and neck are a cool grey which fades to a patch of bright purple on its upper chest. The back is grey while the underbelly and wings are a light blue-grey. The tail feathers are tipped in black. The specimen is standing on a wooden mount.taxidermy mount, taxidermy, animalia, burke museum, beechworth, australian museum, skin, reynell eveleigh johns, bird, dollar bird -
The Beechworth Burke MuseumAnimal specimen - Crimson Rosella
... brighter colours than the specimen collected. This specimen has also been documented as having a light blue or black beak. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. ...brighter colours than the specimen collected. This specimen has also been documented as having a light blue or black beak. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. ...The Crimson Rosella is native to Australia and located in Queensland and South Australia. Australia has a diverse range of rosellas, but the crimson rosella is easily recognised by the red body and blue cheeks. These birds are friendly to humans and consume seeds, insects and some blossoms. They nest in high trees, preferably eucalyptus. Typically, a crimson rosella should have far brighter colours than the specimen collected. This specimen has also been documented as having a light blue or black beak. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. These skins were then mounted by members of the Burke Museum Committee and put-on display in the formal space of the Museum’s original exhibition hall where they continue to be on display. This display of taxidermy mounts initially served to instruct visitors to the Burke Museum of the natural world around them, today it serves as an insight into the collecting habits of the 19th century.This specimen is part of a significant and rare taxidermy mount collection in the Burke Museum. This collection is scientifically and culturally important for reminding us of how science continues to shape our understanding of the modern world. They demonstrate a capacity to hold evidence of how Australia’s fauna history existed in the past and are potentially important for future environmental research. This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century.This Crimson Rosella has a red feathered chest and cape across the head and blue cheeks besides the bill. The tail and wing feathers are mostly black with blue around the edges. The head is angled slightly to the specimen's left. This specimen stands upon a wooden platform and has an identification tag tied around its leg.78a. / Rennauts Parakeet / See Catalogue, page 22 /taxidermy mount, taxidermy, animalia, burke museum, beechworth, australian museum, skin, bird, california, australian native bird, crimson rosella, rosella, reynell eveleigh johns, platycercus elegans -
The Beechworth Burke MuseumAnimal specimen - Powerful Owl, Trustees of the Australian Museum, 1860- 1880
... brighter yellow in colour in real life. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. ...brighter yellow in colour in real life. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. ...The Powerful owl is native to south-eastern and eastern Australia and is the largest owl on the continent. It is found in coastal areas and in the Great Dividing Range rarely more than 200 km (120 mi) inland. An apex predator in its narrow distribution, the Powerful owl is often an opportunist like most predators, but generally hunts arboreal mammals, in particular small to medium-sized marsupials. It is a typically territorial raptorial bird that maintains a large home range and has long intervals between egg-laying and hatching of clutches. Unlike most raptorial birds, male Powerful owls are larger and stronger than females and so the male takes the dominant position in the mating pair, which extends to food distribution. This example of a Powerful Owl show lighter brown coloured feathers and slight discolouration. The Powerful Owl has darker colourings and whiter feathers in real life. This example also show discolouration in the feet and they are brighter yellow in colour in real life. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. These skins were then mounted by members of the Burke Museum Committee and put-on display in the formal space of the Museum’s original exhibition hall where they continue to be on display. This display of taxidermy mounts initially served to instruct visitors to the Burke Museum of the natural world around them, today it serves as an insight into the collecting habits of the 19th century.This specimen is part of a significant and rare taxidermy mount collection in the Burke Museum. This collection is scientifically and culturally important for reminding us of how science continues to shape our understanding of the modern world. They demonstrate a capacity to hold evidence of how Australia’s fauna history existed in the past and are potentially important for future environmental research. This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th centuryThis Powerful Owl has medium brown to dark grey-brown above, with white barring, and off-white front. The glass eyes are yellow, set in a dark grey/brown facial mask. The legs are feathered with yellow feet and talons. The specimen stands upon a wooden platform and has no identification tags attached. Swing-tag: n/a Metal tag: n/a Mount: no markings taxidermy mount, taxidermy, animalia, burke museum, beechworth, australian museum, skin, reynell eveleigh johns, bird, owl, powerful owl -
The Beechworth Burke MuseumAnimal specimen - Powerful Owl, Trustees of the Australian Museum, 1086- 1880
... brighter yellow in colour in real life. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. ...brighter yellow in colour in real life. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. ...The Powerful owl is native to south-eastern and eastern Australia and is the largest owl on the continent. It is found in coastal areas and in the Great Dividing Range rarely more than 200 km (120 mi) inland. An apex predator in its narrow distribution, the Powerful owl is often an opportunist like most predators, but generally hunts arboreal mammals, in particular small to medium-sized marsupials. It is a typically territorial raptorial bird that maintains a large home range and has long intervals between egg-laying and hatching of clutches. Unlike most raptorial birds, male Powerful owls are larger and stronger than females and so the male takes the dominant position in the mating pair, which extends to food distribution. This example of a Powerful Owl show lighter brown coloured feathers and slight discolouration. The Powerful Owl has darker colourings and whiter feathers in real life. This example also show discolouration in the feet and they are brighter yellow in colour in real life. This specimen is part of a collection of almost 200 animal specimens that were originally acquired as skins from various institutions across Australia, including the Australian Museum in Sydney and the National Museum of Victoria (known as Museums Victoria since 1983), as well as individuals such as amateur anthropologist Reynell Eveleigh Johns between 1860-1880. These skins were then mounted by members of the Burke Museum Committee and put-on display in the formal space of the Museum’s original exhibition hall where they continue to be on display. This display of taxidermy mounts initially served to instruct visitors to the Burke Museum of the natural world around them, today it serves as an insight into the collecting habits of the 19th century.This specimen is part of a significant and rare taxidermy mount collection in the Burke Museum. This collection is scientifically and culturally important for reminding us of how science continues to shape our understanding of the modern world. They demonstrate a capacity to hold evidence of how Australia’s fauna history existed in the past and are potentially important for future environmental research. This collection continues to be on display in the Museum and has become a key part to interpreting the collecting habits of the 19th century.This Powerful Owl has medium brown to dark grey-brown on its wings and back, lighter patterning on its chest lightening with white barring, and off-white front. The eyes are yellow, set in a dark grey/brown facial mask. The legs are feathered with yellow/browning feet and talons. The specimen stands upon a wooden platform and has no identification tags attached. Swing-tag: n/a Metal tag: n/a Mount: wooden with no markings.taxidermy mount, taxidermy, animalia, burke museum, beechworth, australian museum, skin, reynell eveleigh johns, bird, owl, powerful owl -
Federation University Historical CollectionDocument - Details of applicants for OHM course, VIOSH: Ballarat College of Advanced Education Occupational Hazard Management Applicants, Intake 12A, 1988
... Intake 12A merged with 12B due to this. viosh victorian institute of occupational safety and health occupational hazard management ballarat college of advanced education ballarat university college university of ballarat federation university robert absolon sean bath mark bright geoffrey byers kevin campbell george card sandra clarke kevin currie marian day malcolm dorricott jennifer gallagher robert goodbourne neil gude jill gutteridge joseph holecka glenn hughes ray jackson eleven johns maria mchugh geoffrey moore carey murphy philip myers andrew nykoluk kathleen peeters jean prosper alan riley michael rose sarah ross patricia seide antony thatcher william wood Name, town, state, occupation, company, beside each photograph Eight pages with small portrait photographs of applicants - 4 per page. ...Victorian Institute of Occupational Safety and Health (VIOSH) Australia is the Asia-Pacific centre for teaching and research in occupational health and safety (OHS) and is known as one of Australia's leaders on the field. VIOSH has a global reputation for its innovative approach within the field of OHS management. VIOSH had its first intake of students in 1979. At that time the Institution was known as the Ballarat College of Advanced Education. In 1990 it became known as Ballarat University College, then in 1994 as University of Ballarat. It was 2014 that it became Federation University. VIOSH Australia students are safety managers, senior advisors and experienced OHS professionals. They come from all over Australia and industry. Students are taught active research and enquiry; rather than textbook learning and a one-size fits all approach. VIOSH accepts people into the Graduate Diploma of Occupational Hazard Management who have no undergraduate degree - on the basis of extensive work experience and knowledge. Each application required details of their work occupation and the company work department they were employed in. Not all of those who applied began the OHM course. Some withdrew - no indication of reason. Intake 12A merged with 12B due to this.Eight pages with small portrait photographs of applicants - 4 per page. Photographs are various sizes.Name, town, state, occupation, company, beside each photographviosh, victorian institute of occupational safety and health, occupational hazard management, ballarat college of advanced education, ballarat university college, university of ballarat, federation university, robert absolon, sean bath, mark bright, geoffrey byers, kevin campbell, george card, sandra clarke, kevin currie, marian day, malcolm dorricott, jennifer gallagher, robert goodbourne, neil gude, jill gutteridge, joseph holecka, glenn hughes, ray jackson, eleven johns, maria mchugh, geoffrey moore, carey murphy, philip myers, andrew nykoluk, kathleen peeters, jean prosper, alan riley, michael rose, sarah ross, patricia seide, antony thatcher, william wood -
Federation University Historical CollectionDocument - Document - Personal Details Form, VIOSH: BCAE: Graduate Diploma in Occupational Hazard Management, Personal Details Form, 1988
... bright...geoffrey byers...sandra clarke...robert goodbourn...neil gude...elvyn johns...andrew nykoluk...kathleen peeters...peter phair...patricia seide...william wood...melinda mcgrath...john...Students were to indicate their place of employment, duties of employment and qualifications they have obtained viosh victorian institute of occupational safety and health ballarat college of advanced education graduate diploma in occupational hazard management personal details form kevin bassett sean bath mark bright geoffrey byers sandra clarke robert goodbourn neil gude elvyn johns andrew nykoluk kathleen peeters peter phair patricia seide william wood melinda mcgrath john prosper Fifteen A4 sheets, hand or type written by individual participant VIOSH: BCAE: Graduate Diploma in Occupational Hazard Management, Personal Details Form, 1988 Document Document - Personal Details Form ...Victorian Institute of Occupational Safety and Health (VIOSH) Australia is the Asia-Pacific centre for teaching and research in occupational health and safety (OHS) and is known as one of Australia's leaders on the field. VIOSH has a global reputation for its innovative approach within the field of OHS management. VIOSH had its first intake of students in 1979. At that time the Institution was known as the Ballarat College of Advanced Education. In 1990 it became known as Ballarat University College, then in 1994 as University of Ballarat. It was 2014 that it became Federation University. VIOSH Australia students are safety managers, senior advisors and experienced OHS professionals. They come from all over Australia and industry. Students are taught active research and enquiry; rather than textbook learning and a one-size fits all approach. VIOSH accepts people into the Graduate Diploma of Occupational Hazard Management who have no undergraduate degree - on the basis of extensive work experience and knowledge. Personal details forms for participants in the VIOSH Graduate Diploma in Occupational Hazard Management, 1988. Course was at Ballarat College of Advanced Education. Students were to indicate their place of employment, duties of employment and qualifications they have obtainedFifteen A4 sheets, hand or type written by individual participantviosh, victorian institute of occupational safety and health, ballarat college of advanced education, graduate diploma in occupational hazard management, personal details form, kevin bassett, sean bath, mark bright, geoffrey byers, sandra clarke, robert goodbourn, neil gude, elvyn johns, andrew nykoluk, kathleen peeters, peter phair, patricia seide, william wood, melinda mcgrath, john prosper -
Federation University Historical CollectionLetter - Document, Early History of H. A. Phillips, 1960 a
... john gottlobb phillips...dowling forest estate...jim mcrae...sir alexander james peacock...nuriootpa farm...mount cavern...education act (1850s) certificatae...australian natives association...bright...h a phillips mt blowhard railway station ascot coghill's creek "the rose" the rose hotel rose of australia hotel coghill's creek state school mrs cantwell john gottlobb phillips dowling forest estate jim mcrae sir alexander james peacock nuriootpa farm mount cavern education act (1850s) certificatae australian natives association bright and hitchcocks geelong Iris Woodhouse Duncan Phillips James McRae John Lester Elizabeth ROberts Alice May Telford Leongatha John Phillips George Phillips Douglas West Dorothy bagnall Hand written document of 15 pages - photocopied Early History of H. ...Hand written document of 15 pages - photocopiedh a phillips, mt blowhard railway station, ascot, coghill's creek, "the rose", the rose hotel, rose of australia hotel, coghill's creek state school, mrs cantwell, john gottlobb phillips, dowling forest estate, jim mcrae, sir alexander james peacock, nuriootpa farm, mount cavern, education act (1850s) certificatae, australian natives association, bright and hitchcocks geelong, iris woodhouse, duncan phillips, james mcrae, john lester, elizabeth roberts, alice may telford, leongatha, john phillips, george phillips, douglas west, dorothy bagnall -
Federation University Historical CollectionBook - Scrap Book, Ballarat School of Mines Scrap Book, 1954-1957, 1954-1957
... John Rowell 1956 - Geoffrey Mainwarring painting Lieutenant F.A. Reiter 1956 - Pittong Mine 1956 - Atom Bombs and rain 1956 - Ballarat Gaol and the Ballarat School of MInes 1956 - William Paterson and A.W. Steane of the Ballarat Junior Technical School 1957 - Ballarat "Junior Tech" Has a Bright...John Rowell 1956 - Geoffrey Mainwarring painting Lieutenant F.A. Reiter 1956 - Pittong Mine 1956 - Atom Bombs and rain 1956 - Ballarat Gaol and the Ballarat School of MInes 1956 - William Paterson and A.W. Steane of the Ballarat Junior Technical School 1957 - Ballarat "Junior Tech" Has a Bright ...The Ballarat School of Mines was the first school of mines in AustraliaA scrapbook of news clippings relating to the Ballarat School of MInes, including: 1954 - Barry Singleton 1954 - Neville Bunning 1954 - Victor Greenhalgh and his sculpture of King George V 1954 - Road Deviation in Hickman Street near White Flat 1954 - John Skuka naturalisation 1954 - Fire Danger in Vale Park 1954 - retirement of William J. Paterson from the staff of the Ballarat Junior Technical School 1954 - First pottery exhibition, featuring local clays. 1954 - New Technical school start in Ballarat North 1955 - Removal of caretaker's Cottage 1955 - Air Training Corps Cadets 1955 - Fluoridation 1955 - I.G. Witcher 1955 - Graham Willey, football 1955 - Image of L. Wilson, head teacher of the Ballarat North Technical School 1955 - Ballarat Girls' Technical School takes shape at White Flat. 1955 - Ballarat Junior Technical School Pine Plantation at Nerrina 1955 - Lake water test by W.G. Cornell 1955 - John Rowell 1956 - Geoffrey Mainwarring painting Lieutenant F.A. Reiter 1956 - Pittong Mine 1956 - Atom Bombs and rain 1956 - Ballarat Gaol and the Ballarat School of MInes 1956 - William Paterson and A.W. Steane of the Ballarat Junior Technical School 1957 - Ballarat "Junior Tech" Has a Bright History 1957 - Brelaz Scholarship for School of Mines (scrap book, ballarat school of mines, ballarat gaol, nerrina, caretaker's cottage, geoffrey mainwarring, gymnasium, noel flood, neville bunning, art lending library -
Flagstaff Hill Maritime Museum and VillageAnimal specimen - Whale Vertebrae, Undetermined
... bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John...bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John ...Prior to carrying out a detailed condition report of the cetacean skeletons, it is useful to have an understanding of the materials we are likely to encounter, in terms of structure and chemistry. This entry invites you to join in learning about the composition of whale bone and oil. Whale bone (Cetacean) bone is comprised of a composite structure of both an inorganic matrix of mainly hydroxylapatite (a calcium phosphate mineral), providing strength and rigidity, as well as an organic protein ‘scaffolding’ of mainly collagen, facilitating growth and repair (O’Connor 2008, CCI 2010). Collagen is also the structural protein component in cartilage between the whale vertebrae and attached to the fins of both the Killer Whale and the Dolphin. Relative proportions in the bone composition (affecting density), are linked with the feeding habits and mechanical stresses typically endured by bones of particular whale types. A Sperm Whale (Physeter macrocephalus Linnaeus, 1758) skeleton (toothed) thus has a higher mineral value (~67%) than a Fin Whale (Balaenoptera physalus Linnaeus, 1758) (baleen) (~60%) (Turner Walker 2012). The internal structure of bone can be divided into compact and cancellous bone. In whales, load-bearing structures such as mandibles and upper limb bones (e.g. humerus, sternum) are largely composed of compact bone (Turner Walker 2012). This consists of lamella concentrically deposited around the longitudinal axis and is permeated by fluid carrying channels (O’Connor 2008). Cancellous (spongy) bone, with a highly porous angular network of trabeculae, is less stiff and thus found in whale ribs and vertebrae (Turner Walker 2012). Whale oil Whales not only carry a thick layer of fat (blubber) in the soft tissue of their body for heat insulation and as a food store while they are alive, but also hold large oil (lipid) reserves in their porous bones. Following maceration of the whale skeleton after death to remove the soft tissue, the bones retain a high lipid content (Higgs et. al 2010). Particularly bones with a spongy (porous) structure have a high capacity to hold oil-rich marrow. Comparative data of various whale species suggests the skull, particularly the cranium and mandible bones are particularly oil rich. Along the vertebral column, the lipid content is reduced, particularly in the thoracic vertebrae (~10-25%), yet greatly increases from the lumbar to the caudal vertebrae (~40-55%). The chest area (scapula, sternum and ribs) show a mid-range lipid content (~15-30%), with vertically orientated ribs being more heavily soaked lower down (Turner Walker 2012, Higgs et. al 2010). Whale oil is largely composed of triglycerides (molecules of fatty acids attached to a glycerol molecule). In Arctic whales a higher proportion of unsaturated, versus saturated fatty acids make up the lipid. Unsaturated fatty acids (with double or triple carbon bonds causing chain kinks, preventing close packing (solidifying) of molecules), are more likely to be liquid (oil), versus solid (fat) at room temperature (Smith and March 2007). Objects Made From the Whaling Industry We all know that men set forth in sailing ships and risked their lives to harpoon whales on the open seas throughout the 1800s. And while Moby Dick and other tales have made whaling stories immortal, people today generally don't appreciate that the whalers were part of a well-organized industry. The ships that set out from ports in New England roamed as far as the Pacific in hunt of specific species of whales. Adventure may have been the draw for some whalers, but for the captains who owned whaling ships, and the investors which financed voyages, there was a considerable monetary payoff. The gigantic carcasses of whales were chopped and boiled down and turned into products such as the fine oil needed to lubricate increasing advanced machine tools. And beyond the oil derived from whales, even their bones, in an era before the invention of plastic, was used to make a wide variety of consumer goods. In short, whales were a valuable natural resource the same as wood, minerals, or petroleum we now pump from the ground. Oil From Whale’s Blubber Oil was the main product sought from whales, and it was used to lubricate machinery and to provide illumination by burning it in lamps. When a whale was killed, it was towed to the ship and its blubber, the thick insulating fat under its skin, would be peeled and cut from its carcass in a process known as “flensing.” The blubber was minced into chunks and boiled in large vats on board the whaling ship, producing oil. The oil taken from whale blubber was packaged in casks and transported back to the whaling ship’s home port (such as New Bedford, Massachusetts, the busiest American whaling port in the mid-1800s). From the ports it would be sold and transported across the country and would find its way into a huge variety of products. Whale oil, in addition to be used for lubrication and illumination, was also used to manufacture soaps, paint, and varnish. Whale oil was also utilized in some processes used to manufacture textiles and rope. Spermaceti, a Highly Regarded Oil A peculiar oil found in the head of the sperm whale, spermaceti, was highly prized. The oil was waxy, and was commonly used in making candles. In fact, candles made of spermaceti were considered the best in the world, producing a bright clear flame without an excess of smoke. Spermaceti was also used, distilled in liquid form, as an oil to fuel lamps. The main American whaling port, New Bedford, Massachusetts, was thus known as "The City That Lit the World." When John Adams was the ambassador to Great Britain before serving as president he recorded in his diary a conversation about spermaceti he had with the British Prime Minister William Pitt. Adams, keen to promote the New England whaling industry, was trying to convince the British to import spermaceti sold by American whalers, which the British could use to fuel street lamps. The British were not interested. In his diary, Adams wrote that he told Pitt, “the fat of the spermaceti whale gives the clearest and most beautiful flame of any substance that is known in nature, and we are surprised you prefer darkness, and consequent robberies, burglaries, and murders in your streets to receiving as a remittance our spermaceti oil.” Despite the failed sales pitch John Adams made in the late 1700s, the American whaling industry boomed in the early to mid-1800s. And spermaceti was a major component of that success. Spermaceti could be refined into a lubricant that was ideal for precision machinery. The machine tools that made the growth of industry possible in the United States were lubricated, and essentially made possible, by oil derived from spermaceti. Whalebone The bones and teeth of various species of whales were used in a number of products, many of them common implements in a 19th century household. Whales are said to have produced “the plastic of the 1800s.” The bone of the whale which was most commonly used wasn’t technically a bone, it was baleen, a hard material arrayed in large plates, like gigantic combs, in the mouths of some species of whales. The purpose of the baleen is to act as a sieve, catching tiny organisms in sea water, which the whale consumes as food. As baleen was tough yet flexible, it could be used in a number of practical applications. And it became commonly known as whalebone. Perhaps the most common use of whalebone was in the manufacture of corsets, which fashionable ladies in the 1800s wore to compress their waistlines. One typical corset advertisement from the 1800s proudly proclaims, “Real Whalebone Only Used.” Whalebone was also used for collar stays, buggy whips, and toys. Its remarkable flexibility even caused it to be used as the springs in early typewriters. The comparison to plastic is apt. Think of common items which today might be made of plastic, and it's likely that similar items in the 1800s would have been made of whalebone. Baleen whales do not have teeth. But the teeth of other whales, such as the sperm whale, would be used as ivory in such products as chess pieces, piano keys, or the handles of walking sticks. Pieces of scrimshaw, or carved whale's teeth, would probably be the best remembered use of whale's teeth. However, the carved teeth were created to pass the time on whaling voyages and were never a mass production item. Their relative rarity, of course, is why genuine pieces of 19th century scrimshaw are considered to be valuable collectibles today. Reference: McNamara, Robert. "Objects Made From the Whaling Industry." ThoughtCo, Jul. 31, 2021, thoughtco.com/products-produced-from-whales-1774070.Whale bone during the 17th, 18th, 19th and early 20th centuries was an important industry providing an important commodity. Whales from these times provided everything from lighting & machine oils to using the animal's bones for use in corsets, collar stays, buggy whips, and many other everyday items then in use.Whale bone Vertebrae with advanced stage of calcification as indicated by deep pitting. Off white to grey.None.warrnambool, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, whale bones, whale skeleton, whales, whale bone, corsets, toys, whips, whaleling industry, maritime fishing, whalebone
