979 resultados para Almond, Edward M. (Edward Mallory), 1892-1979.


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Digital reproduction, The National Library of Finland, Centre for Preservation and Digitisation, Mikkeli

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Tutkielma tarkastelee millä tavoin pastori William Edward Sellers perustelee ensimmäistä maailmansotaa kahdessa sodan aikana julkaisemassa teoksessaan. Sellersin tekstit selventävät Britannian nonkomformististen kirkkojen kantaa sotaan. Lisäksi ne toimivat esimerkkinä siitä minkälaisten teemojen ympärillä keskustelua käytiin sodan ajan Britannian kotirintamalla. Tutkielma perustuu Sellersin teoksiin With our Fighting Men (1915) ja With our Heroes in Khaki (1917). Sellersin teokset ovat monin tavoin konventionaalisia käsitellessään sotaa ja sen tapahtumia, hänen teoksistaan on kuitenkin löydettävissä selkeä tarkoitus. Sellersin teosten sanoma on, että sota oli traaginen tapahtuma, jolla oli tärkeä tarkoitus. Sota oli Jumalan tahto ja kristillisen maailman puolustamista. Sodan perustelu ja tarkoituksellisuus nivoutuvat Sellersillä muutoksen ajatukseen. Hänen mukaansa sodassa keskeistä oli sotilaiden laajamittainen kristillinen herääminen ja sen seuraukset. Sota loi uudenlaisia ”oikeita” ja parempia kristittyjä ja uudisti myös kristinuskoa ekumenian kautta. Sodassa tapahtuvat muutokset olivat Sellersin mukaan edellytys sodan voittamiselle, mutta myös tie uuteen maailmaan. Miehen ja uskon uudistuminen oli tärkeää ja tulisi Sellersin mukaan muokkaamaan sodan kautta koko Britannian yhteiskuntaa. Sota oli osa Jumalan suunnitelmaa ja keino Britannian uskonnolliseen uudistumiseen. Sodassa kaatuneet sotilaat olivat välttämtön uhraus tämn uuden maailman puolesta. Tutkielmassa tulee esille, kuinka Sellersin tekstit perustelevat sotaa luoden sille uskonnollisia, fatalistisia ja apokalyptisiä merkityksiä. Tutkielma vahvistaa väitettä konservatiivisten kristillisten tahojen patrioottisesta tematiikasta ja nonkomformistien toiveista laajan uskonnollisen heräämisen suhteen. Se toimii esimerkkinä siitä, millä tavoin konservatiiviset kristilliset tahot toivoivat sodan tuovan muutoksen modernisoituvaan ja maallistuvaan Britanniaan.

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The x-ray crystal structure of thiamine hydroiodide,C1ZH18N40S12' has been determined. The unit cell parameters are a = 13.84 ± 0.03, o b = 7.44 ± 0.01, c = 20.24 ± 0.02 A, 8 = 120.52 ± 0.07°, space group P2/c, z = 4. A total of 1445 reflections having ,2 > 2o(F2), 26 < 40° were collected on a Picker four-circle diffractometer with MoKa radiation by the 26 scan technique. The structure was solved by the heavy atom method. The iodine and sulphur atoms were refined anisotropically; only the positional parameters were refined for the hydrogen atoms. Successive least squares cycles yielded an unweighted R factor of 0.054. The site of protonation of the pyrimidine ring is the nitrogen opposite the amino group. The overall structure conforms very closely to the structures of other related thiamine compounds. The bonding surrounding the iodine atoms is distorted tetrahedral. The iodine atoms make several contacts with surrounding atoms most of them at or near the van der Waal's distances A thiaminium tetrachlorocobaltate salt was produced whose molecular and crystal structure was j~dged to be isomorphous to thiaminium tetrachlorocadmate.

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The endocrine pancreas of the rock bass (Ambloplites rupestris) was examined by light and electron microscopy. Two cell types with staining properties similar to mammalian A and B cells, and a third, non-staining cell type were found in the spherical pancreatic islets that were surrounded by a connective tissue capsule and embedded in two small masses of exocrine tissue. From an analysis of the ultrastructure of the A and B cells, a secretory cycle for each of these cell types was proposed. The secretory cycle of the A cell consisted of three well defined stages: (1) A cell production stage: during which A granule formation occurred in the sacs of the Golgi apparatus and the cell was characterized by the presence of numerous secretory granules, some elements of lamellar endoplasmic reticulum, and a homogeneously granular nucleus. The cytoplasm contained few distended cisternae, variable numbers of free ribosomes, microtubules and small vesicles. (2) A cell release stage: during which the release of A granules occurred and the cell usually contained several large distended cisternae and variable numbers of secretory granules. Granule release mechanisms included exocytosis, by which individual granules were released into the extracellular space after their membranes fused with the plasmalemma, and emiocytosis, by which one or more granules were released into a large cisterna whose membrane fused with the plasmalemma and formed a pore through which the cisternal contents passed out of the cell. (3) A cell reorganization stage: during which the changeover from the release stage to the production stage occurred and the reorganization of organelles and membrane structures took place. The cell contained few secretory granules and numerous small endoplasmic reticular cisternae. The cytoplasm exhibited less electron density than either of the other two stages. The A granule after formation underwent a series of morphological changes which were described in four numerically identified phases. The secretory cycle of the B cell consisred of two stages: (1) B cell production stage: during which the B granule formation occurred in the sacs of the Go1gi apparatus. The cell was characterized by an irregular outline, the presence of numerous secretory granules, and an irregularly shaped nucleus which contained variable amounts of clumped chromatin. The cytoplasm contained moderate amounts of lamellar endoplasmic reticulum studded with ribosomes, several small vesicles, and an active Go1gi apparatus. (2) B cell release stage: during which the release of B granules occurred. The cell contained a rounded nucleus with dispersed chromatin, several distended endoplasmic reticular cisternae and a variable number of secretory granules. Granule release occu~ by emiocytosis and exocytosis similar to that found for the A cell.

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Verse.

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Edward W. Bowslaugh (1843-1923) was the son of Jacob and Anna (Beamer) Bowslaugh. Edward Bowslaugh married Mary Southward, and the couple had six children, Edgar Morley, Edward Freeman, twins Alfred Malcolm and Alice Mary, Annie Olivia, John Jacob and Mabel Florence. Edward W. Bowslaugh was a farmer, contractor and owner of the Grimsby Planing Mills in Grimsby, Ont. and Bowslaugh’s Planing Mill in Kingsville, Ont. The mills manufactured door and sash trim and other wood related products. Some customers contracted the firm to provide wood products for cottages being built at Grimsby Park, the Methodist camp ground. Some time before 1885 Edward Bowslaugh and his family moved to Kingsville, Ont. to open up a new planing mill and door and sash manufactory. He later sold the Grimsby Planing Mills to Daniel Marsh. The diaries and account books include many names of workers as well as friends and family members residing in the Grimsby and Kingsville areas. James M. Bowslaugh (1841-1882) was the son of Jacob and Anna (Beamer) Bowslaugh. James married first Anna Catharine Merritt and after her death in 1875 he married Mary Gee in 1877. James and Anna had three children, Eliza, James Herbert, George Hiram, all died very young. James and Mary Gee had one son, Charles Leopold Kenneth Frederich Bowslaugh, b. 1881. James Bowslaugh was a farmer and lumberman, much like his younger brother Edward. James’ early diaries often note the activities of himself and his brother Edward. Both Edward and James were heavily involved in the Methodist church, teaching or leading Sunday school and attending prayer meetings. Alfred M. Bowslaugh b. 1873 was the son of Edward W. Bowslaugh and his wife Mary Southward. The school notebook is from his days as a student in Kingsville, Ont.

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The collection consists of 37 plans, surveys or maps of the City of Niagara Falls beginning in 1846 until 1928. Some of the plans were created for the Falls Company, a group of land speculators that included Buchanan, Murray, Street, Allen, Robinson and others. Other plans relate to the building of the suspension bridge and the railway. Some plans and drawing may refer to estate documents in RG 167 Niagara South estate and legal documents collection. Item 22 has been scanned for preservation purposes.

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Edward Mirynech joined the faculty at Brock University in 1964 as assistant professor of Geology. Edward Mirynech, the son of John and Katherine Mirynech, grew up in St. Catharines, attended Connaught Public School and received his formal education at the University of Toronto. Dr. Mirynech played several critical roles in the early development of the University. In addition to teaching, Dr. Mirynech was also the acting director of the athletics department, a coach for many of the early rowing, hockey and basketball teams and served the University as marshall for the sod turning ceremony for the new DeCew campus in 1965. Dr. Mirynech was instrumental in the founding of the physical education, geography and geological sciences programs. He served as acting chairman in 1968 when the department of geological sciences enrolled its first students. Part of the unique teaching program was the annual field trips to locations such as the Belleville area, extended summer teaching programs held in Trinidad-Tobago and the following year in Iceland. In 1972, the first graduation ceremony ever to be held in the Arctic, at Pond Inlet, NWT, made national news. Three geology students, on a study trip to the Arctic, received their degrees during a special ceremony. Dr. Mirynech was among the faculty team in Pond Inlet, NWT, representing Brock University. Dr. Mirynech retired from teaching in 1985, and passed away in 2004.

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Indenture of bargain and sale between Captain Thomas Bushby of the Island of Jersey and his wife Sarah Bushby to Edward Clarke Campbell of the town of Niagara regarding 100 acres in Sherbrooke Forest in the District of Niagara, also Lots 6 and 7 in the town plot of Sherbrooke. This document was registered in the Township of Sherbrooke on December 28, 1849 - instrument no. 503, March 17, 1849.