Showing 81 items
matching dick smith
-
Ballarat Tramway Museum
Document - List, Wayne Kell, "Ballarat Tramways Employees (60's - 71)", 2020
Yields information the employees of the SEC from about the 1960's through to closure. Not known if completely accurate.List - typed A4 sheet titled "Ballarat Tramways Employees (60's - 71)", prepared by Wayne Kell. Lists employees in alphabetical order images: .1 - jpg scan of the sheet .2 - pdf of the list in a single vertical column .3 - word document in the image files Noel Aghan Noel Allen Max Anderson Brian Anwyl Adam Balloch Ray Barrow Ian Bentley James Billman Les Bird Mick Blackman Kevin Blake Dave Blaw Brett Boddington Kevin Brookman Gary Butler Kevin Butler Marty Cahill Bob Carter Daryl Chambers R oy Courtney Steve Crosby Ray Curnow Ron Davidson Bill Davies S. Davies W. Davies T Ed Davis L. Denmead Max Devlin Austin Domaschenz Des Domaschenz T. Dunstan Ted Edmunds Allen Edwards George Etheridge D. Everett John Everett Ted Fish Vic Gill Ian Grant George Gray Max Green Ray Hall Norm Hamilton Rory Herauville Bernie Hill Colin Hill Norm Hunt Danny Irvine Allan Jeffreys Bruce Jenkins David Jones Ron Jordan Wayne Kell Alan Kellett Alf Kellett Dave Kellett Noel Klein Hec Knight Ron Knight Mick Laidlaw Ed Lake Stan Lakey Herb Lee George Long Norm Lorensini Geoff McErvale Doug McGregor Leo McMahon Alec McWilliam Bill Maes George Magee Jim Maher Mick Mahoney Andre Malins B. Mannion Les Mark Jack Marone Jackie Mason Arthur Maxwell Harold May Allan Meaney Brian Melville Jim Menzies Alf Mercer Barry Morris Robert Morris Bruce Munn Tom Nancarrow Bill Newell Les North John O’Keefe Dan O’Leary Dick Oliver Joel Owen Eric Patterson Bert Peart Ivan Pellas D. Powell Lindsay Quick Arthur Reed Bill Retallick Rex Rewell Howard Reynolds Neil Robe Ned Romeo Vin Ryan Rick Rykers Bill Segrave John Schmidt Charles Scicluna David Skewes Harry Smerdon Brian Smith Roy Smith Bill Spicer Tony Stephens Max Stephens Tom Stevenson Neil Sutherland Doug Thompson Ian Tierney Ian Trenfield John Truscott Bill Trusler Bill Tuddenham A. Turnbull Dave van Oorschot E. van Rooy Harry van Oorschot Henk van Oorschot Bill van Oorschot Gerry van Rooy Harry van Rooy Ian Wallis Lou Walker Bill Ward Geoff Ward Vin Webb Bill Wellard L. Wellard R. Williams Terry Williams Doug Wiseman Edward Wrightlists, employees, personnel, ballarat, crews -
Bendigo Historical Society Inc.
Photograph - BENDIGO SCHOOLS COLLECTION: STRATHFIELDSAYE STATE SCHOOL 1922 PHOTO OF PUPILS, 1922
BENDIGO SCHOOLS COLLECTION: Strathfieldsaye State School 1922 Photo of pupils Framed (Card Board) phot of the pupils in 1922 Photo by G and V Bolton Artist. On Rear of Photo written in ink: N Griffen 1922 Written in pencil: Back Row: Ada Horbury, Joyce Arthur, Eula Horbury,Una Cooper, Mary Smith, Nancy Arthur, Nora Smith, Phyllis Somerville, Nelly McGee. Middle Row: Lily Horbury, Rita? Jones, Rita Horbury, ? Jones, Lily Munro, Natalie Somerville, Gwen Crossley, Arthur McGee, Alf Ryall. Second Row: Tommy Jones, George McGee, Lindsey Munro, Jack Munro, Arthur Ryall, Gladys Ryall (Somerville future husband), Dick McGee, Keith Somerville. First Row: Orman Tong (sang in Melbourne under Orman Douglas), Joe Smith, Ernie Tong, Franks Ryall, Robert Redwood, Norman Horburg, Norman Griffen.school, history, strathfieldsaye -
Kew Historical Society Inc
Photograph - VJCU Premiers, Interstate Carnival, Sydney, 1924
Arthur Henry Miers, pictured in the photograph played for cricket, football and baseball teams in Kew for a number of decades in the first half of the twentieth century. He was born on 22 November 1901, the son of Rodolph Theophilus Miers (1874-1951) and Margaret Frances (Margaretta) Fry (1875-1958). He had two brothers, Rodolph Cecil Miers (1904-80) and Charles Wilfred Miers (1906-88), and a sister Marjorie Elizabeth Miers (1911-84). Arthur Miers died in Kew on 25 January 1966, and after his body was cremated, his body was interred in the Mausoleum of Boroondara General (Kew) Cemetery.Rare early photograph of a VJCU Premiership cricket club team of 1924.Victorian Junior Cricket Union team photograph, mounted on card. Inscription Top: V.J.C.U. PREMIERS / INTERSTATE CARNIVAL, SYDNEY, 1924" Inscription Below: BACK ROW - R ROFF; A RUSH; J CLINNICK; TJ BROWNE (MANAGER); ***RNE; J CULLETON; JJ CANTWELL / MIDDLE ROW - E MULENS; R LAWSON; H WAIXELL (CAPT.; D DICK (VICE CAPT.); N TROMPF / IN FRONT - R MCCONCHIE (?); A MIERS; A SMITH / MELBA STUDIOS, 65 MARKET ST. SYDNEYarthur miers, cricket, cricket teams, victorian junior cricket union - team 1924 -
Expression Australia
Newsletter, The Victorian Deaf News July-August-September 1937
Published by the Deaf Committee of the Adult Deaf and Dumb Society of Victoria'The Victorian Deaf News' Newsletter is a significant publication as an historical record giving and insight into the people, activities and events of the Deaf Community in Victoria.Vol. 2 No. 6 1937; Size24.5cmHx19cmW; 16 pagesjohn montgomery mclean, may clarke, mrs e. bryan, rev w. h. johnson, a. aird, alice cove, t. a. nelson, ellen whitlow, rose dow, rowe, james, edgar h. peacock, international congress of the deaf and dumb, basketball, lorrie ellis,george mcguinness, bernice cardwell, clarence r. jose, j. m. johnston, w. a. ross, alice c. graham, blackburn home, sllen adcock, hobson, white, ian anderson, rivers, norman may, muriel smith, james, jack reid, ray kemble, ambrose moloney, norma rawlins, j. boortz, taylor, ernest reynolds, e. sturcke, w. duncan, ian hinton, betty doyle, dick white, claude lyfield, alex collins, jack stewart, willie chapmanw. crush, harry puddy, d. scott, alice guest, cove, thomas alexander nelson, ellen whitlow, -
Stawell Historical Society Inc
Photograph, Elder-Smith Sheep Sales at Stawell with Dick Monaghan as the Manager of Stawell Branch 1950
Elder-Smith Sheep Sales at Stawell - Dick Monaghan. Manager of Stawell Branch 1950stawell -
Stawell Historical Society Inc
Photograph, Elder-Smith Sheep Sales at Stawell with Dick Monaghan as the Manager of Stawell Branch 1950
Elder-Smith Sheep Sales at Stawell - Dick Monaghan. Manager of Stawell Branch 1950stawell -
Vision Australia
Audio - Sound recording, RVIB Orchestra and Saxophone Quartet, 1950s
RVIB Orchestra, recorded in Ormond Hall, playing 7 medleys of songs including Gerschwin, Rogers and Hart, Carmichael, Hammerstein, Kearns and Berlin. The orchestra consisted of: Band Leader and Tenor Sax: Richard (Dick) Sutcliffe Soprano Sax: Alan Campbell Saxophone: Arthur Tyzack, Barry Palmer Baritone Sax: John Laversha Trumpet: Reg Hill Trombone: Ian Cooper Piano: Geoff Smith, Rosemary Shone, Fritz Kreisler Piano/Bass: Allan Nuske Drums: Bob Tennant The Victorian Saxophone Quintet, recorded by the ABC circa 1957, playing 9 songs and 2 medleys, consisted of: Alan Campbell, Richard (Dick) Sutcliffe, Arthur Tyzack, John Laversha, Ian Cooper. The announcer is: Bill Passick. 1 MP3 audio recording of orchestra playingroyal victorian institute for the blind, rvib orchestra, dick sutcliffe, alan campbell, arthur tyzack, barry palmer, john laversha, reg hill, ian cooper, geoff smith, allan nuske, rosemary shone, fritz kreisler, bob tennant, bill passick -
Vision Australia
Audio - Sound recording, A Tribute to Stan Hedger by the Blind Workers Union of Victoria, 1975?
Norm Rees, Jim Smith, Charlie Bradley, Reuben Ryan and Ethel and Dick Sutcliffe reflect upon the work that Stan Hedger, late superintendent of the RVIB, undertook during his tenure and how this affected the students at the school. In their testimonies they discuss how he began improving domestic and school conditions upon arrival, to helping establish the Trojan club, introducing dancing, physical conditioning and socialising to the children, being available to oversee the resolving of complaints and changing the nature from an asylum to an institution.1 audio recording of recollections on Stan Hedgerroyal victorian institute for the blind, oral history, jim smith, norm rees, charlie bradley, reuben ryan, ethel sutcliffe, dick sutcliffe, s.w. hedger, radio shows -
Victorian Railway History Library
Book, Selems, Ron, Trackside
... Selems, Ron Kingsford-Smith, Robert Dawes, Dick Langford-Brown ...A pictorial history of steam and diesel locomotives in New South Wales.ill, p.128.non-fiction A pictorial history of steam and diesel locomotives in New South Wales.locomotives - new south wales - history, railroad operations - new south wales - history -
Bendigo Historical Society Inc.
Newspaper - JENNY FOLEY COLLECTION: BORUNG FOOTBALL TEAM
Bendigo Advertiser ''The way we were'' from Monday, July 28, 2003. Top team; Borung football team, premiers 1937. Bendigo Advertiser ''The way we were'' from 2003. Borung football team identified: the way we were recently featured a photo of the Borung football team in 1937. A reader has provided us with their names: Dick Cornish, Fred Perryman, Jim Coghill, Jack Perryman, Bill Perryman, Ted Perryman, Jock Wright, Aub Smith, Keith Wright, Arthur Tonkin, Tom Verley, Eric Huggins (captain), Frank Wright, Bob Coghill, Albert Tonkin, Norm Smith, Don Kelly, Bob Leech and Tom Cornish. The clip is in a folder.newspaper, bendigo advertiser, the way we were -
Flagstaff Hill Maritime Museum and Village
Animal specimen - Whale Rib Bone, Undetermined
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 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 rib bone with advanced stage of calcification as indicated by brittleness. 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 -
Federation University Historical Collection
Book, Ballarat School of Mines Principal's Reports,1923-1934, 1923-1934
Red hard covered book with hand written reports by A.F. Heseltine. 23 February 1922 - Sickness of Dick Richards 18 August 1926 - Mrs Weston, sister of Alfred Mica Smith, donates photos of the professor.ballarat school of mines, a. f. heseltine, dick richards, r.w. richards, j.p. chard, j. tung, g.l. nicholls, arc lamp, telephone mechnics class, l.a. archibald, visits, associated smelters, iron knob, arbor day, w.h. finlayson, ethel campbell, repatriation, xray, x-ray, plumbing, alfred bayley, w. knight, mica smith scholarship, w.h. findlayson, herald shield, j.d. o'laughlin, e. schache, brown and sharp micrometer, h.r murphy, a. cornish, w.h. steane, l. hillman, l. vernon, kalgoorlie excursion, james peart, e.a. brophy, n.g. king, r. young, j.m. sutherland, woolclassing, yallourn, v. dorron, ballarat school of mines literary society, w. hollway, s. palmer, albert street, j.r. elsworth, ballarat school of mines caretaker, e. watson, j.r. pounds, m.s. kewkins, battery, m.g. rumpff, j. eldridge, eureka progress association, cyanide plant dismantle, materia medica, t. henderson, w.s. rackham, m. dean, new guinea goldfields, gala day -
Eltham District Historical Society Inc
Photograph, Peter Bassett-Smith, Ink sketch of Dorian Le Gallienne by Nora Heysen, 1988
Dorian Le Gallienne (1915-1963) was born in Melbourne and studied music at Melbourne University Conservatorium and at the Royal College of Music, London. In 1951 he won a Commonwealth Jubilee Music Scholarship and studies in London for a further two years. Le Gallienne was recognized as one of Australia’s foremost composers. He was also well known as a music critic for Melbourne newspapers. On the local scene he wrote the music for Tim Burstall’s 1958 film “The Prize”; set in Eltham. From 1949 until his death, he lived with his friend Dick Downing in Yarra Braes Road. Their modest mudbrick “weekender” grew in stages to become one of the notable houses of the area. Bicentennial/Heritage Week Display, "The Eltham Tradition", Eltham Shire Office, 17-22 April 1988 Colour photographactivities, eltham shire office, heritage display, heritage week, dorian le gallienne, nora heysen, portrait -
Flagstaff Hill Maritime Museum and Village
Animal specimen - Whale bone, Undetermined
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 Village
Animal specimen - Whale Vertebrae, Undetermined
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 -
Flagstaff Hill Maritime Museum and Village
Animal specimen - Whale Jaw Bone, Undetermined
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 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 jaw bone one side, long & curved with advanced stage of calcification 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 -
Bendigo Historical Society Inc.
Newspaper - JENNY FOLEY COLLECTION: GOOD OLD DAYS
White Hills Primary School (No.1916) opened in Napier Street in 1877. It moved to its current site in Plumridge Street in 1985.Bendigo Advertiser ''The way we were'' from 2003. Good old days: White Hill primary school grades 2,3 and 4; circa 1951. Back row from left: Bruce McDowell, Frank Honeychurch, Ken Smith, Gillian Phillips, Ruth Drummont, Dawn Barfoot, unknown, Ronald Sylvester, Dick Watts. Fourth row: Joan Grabbish, Joan Ward, Beth Yates, Margaret Baum, Suzette Gillen, June Richardson, Joy Oakes, Eileen Tappe, Helen Keckes. Third row: Rodney Hamilton, Barry Wright, Marjorie Grey, June Luke, Glenda Gooding. Second row: Nola Peake, Marlene Smith, Lillian Watts, Barbara Smith, Lynette Phillips, Elaine Baum, Jacqueline Williams. Front row: Nick Hawke, Keith Veale, Wally Forbes, Noel Honeychurch, Kelvin Raison, Daryl Jones, Ronald Taig, Sidney Howie, Kevin Eddlestone. Some names are missing. The clip is in a folder.newspaper, bendigo advertiser, the way we were -
Melbourne Tram Museum
Newspaper, The Age, The Port Phillip - Caulfield Leader, "Hailing a tram by the Bayside", "Trams off track", "Tram ride by the seaside? Rattling good vistas guaranteed", 18/10/2004 12:00:00 AM
Newspaper clipping - set of three items about the possibility of a tram running along Beaconsfield Parade between St Kilda and Port Melbourne. .1 - Editorial from The Age, 18-10-2004, titled "Hailing a tram by the Bayside" supporting the proposal by The Mayor Dick Gross. .2 - item from The Port Phillip - Caulfield Leader of 5/6/2007, with the title "Trams off track", about the City of Port Phillip on the proposal, though $70000 had been spent on the study. Quotes Paul Smith of the City about the proposal, tourism only, not a public transport link. Has an image of the Port Phillip Leader of 12/12/2006 announcing the proposal. Item written by Peter Rolfe. .3 - item from The Age, 14/10/2004 titled Tram ride by the seaside? Rattling good vistas guaranteed", fearing a photo of the bay, maps and options to use Mills St. Item written by Dan Silkstone.trams, tramways, new tramway, beaconsfield parade, port melbourne, st kilda, city of port phillip, mills st -
Melbourne Tram Museum
Slide, Peter Moses, 1974
Photograph looking west along Victoria Parade from about Smith St with SW5 843 during 1974. Shows the hedges that were along the track. Tram on a route 42, City service. Tram has advertisements for Courage Draught and Dirty Dicks. Kodak cardboard mount slide, taken by Peter Moses. Slide mount dated Dec. 1974.In ink on slide " 1974 Melbourne Victoria Pade"trams, tramways, victoria parade, sw5 class, route 42, tram 843 -
Bendigo Historical Society Inc.
Newspaper - JENNY FOLEY COLLECTION: WINNERS
... , P.A. Smith, Jack Allen, Dick Winter, Merv Mason, Keith Hunt... O'Sullivan, W. Graham. Middle row: Max Perry, P.A. Smith, Jack Allen ...BHS CollectionBendigo Advertiser ''The way we were'' from Monday, May 19, 2003. Winners: loddon Valley League football team and officials who beat the Bendigo Association team by four points in a night match at the Bendigo Showgrounds in 1951. Back row from left: D.L. Twigg, A.R. Collins, Ed Harrison, Don Collins, Don Curnick, Lester Haeberle, Charl Catto, Trevor Hayes, Cam Higgs, Charlie Sutton, Bob O'Sullivan, W. Graham. Middle row: Max Perry, P.A. Smith, Jack Allen, Dick Winter, Merv Mason, Keith Hunt, Harry Pettifer, Eric Rothacker. Front row: J. Dunne, Keith Perry, Kevin Stuart, Pere Trower, Keith Graham, Arthur Lacey, Wally Nelson, Arthur Harrison. The clip is in a folder.newspaper, bendigo advertiser, the way we were -
Bendigo Historical Society Inc.
Magazine - LYDIA CHANCELLOR COLLECTION: 3BO WOMENS CLUB MAGAZINE 1939
Two copies of magazine. Aqua colour cover, dark blueprint. On front ' 3 BO Women's Club magazine 1939. Amalgamated Wireless (A/SIA) Ltd. AWA.' Magazine contains details of personnel of 3BO Women's Club and branches, including Bendigo, Castlemaine, Echuca, Rochester, Dingee, Harcourt, Pyramid Hill and Inglewood. Photos of 3BO staff and members of the Women's Club feature: Bob Rudd, Dick Gaze, Amy Huxtable, Miss Dora Roberton, Isabel Poulston, Reg Fox, Miriam Fitzgerald, Scott Griffiths, Elwyn Honeychurch and Ron Smith. Mrs. Warner (Essex); Mrs. Gilbert; and Mr. Percy Reed are also pictured.3bo women's club, 3bo women's tennis club, 3bo bendigo