984 resultados para Blake, Norman
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(scans hs13920-2of2 shows inscriptions on back)
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"Geneal. tab. of the noble and distinguished family of Manners, duke of Rutland, &c."
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Mode of access: Internet.
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The "Life of Sir Isaac Newton" is substantially a translation from that in the "Biographie universelle", by M. Biot. cf. note at head of article.
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Mode of access: Internet.
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Caption title.
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Cover title: Norman tympana and lintels in the churches of Great Britain.
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Thesis (Master's)--University of Washington, 2016-06
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This edition of Polymer Degradation and Stability comprises selected papers presented at the 27th Polymer Degradation Discussion Group (PDDG) Conference, affiliated to the Macromolecular Group of the Royal Society of Chemistry, held at Aston University, Birmingham (UK), September 2007, in honour of Professor Norman Billingham for lifelong career in Polymer Science. Norman Billingham was one of the main founders of the PDDG meetings which have been held annually at different venues in the UK since 1976, and biennially since 1998. The PDDG meetings are forums for scientific developments and open discussion of all aspects of polymer degradation and stabilisation and have always provided younger researchers a platform for presenting and discussing their work in the field. This 27th PDDG meeting, chaired by Sahar Al-Malaika (Aston University), was dedicated to Norman Billingham, the Guest of Honour, in recognition for his distinguished contributions to Polymer Science particularly in the area of polymer degradation and stabilisation. The meeting was attended by 65 delegates from 15 countries in Europe, USA and Australia, many of whom have worked and collaborated with Norman at some points of their career. The guest editors of this issue wish to add their Congratulations to Norman Billingham for his outstanding contributions and achievements in the field of polymer degradation and stabilisation and to wish him very happy years ahead. We wish also to express our gratitude to Elsevier for sponsoring the 27th PDDG event and our appreciation to Professor Norman Billingham in his capacity as the Editor-in-Chief of Polymer Degradation and Stability, for the support and help received during the preparation of this special issue.
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A close look at the English acquisition processes of Richard Rodriguez, Norman Podhoretz, and Arnold Schwarzenegger reveals that, far from their contentions that they learned English by immersion, which led them to dismiss bilingual education, they benefitted from numerous sources of help largely unavailable to English Language Learners nationwide.
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An area of about 22,000 km² on the northern Blake Plateau, off the coast of South Carolina, contains an estimated 2 billion metric tons of phosphorite concretions, and about 1.2 billion metric tons of mixed ferromanganese-phosphorite pavement. Other offshore phosphorites occur between the Blake Plateau and known continental deposits, buried under variable thicknesses of sediments. The phosphorite resembles other marine phosphorites in composition, consisting primarily of carbonate-fluorapatite, some calcite, minor quartz and other minerals. The apatite is optically pseudo-isotropic and contains about 6% [CO3]**2- replacing [PO4]**3- in its structure. JOIDES drillings and other evidence show that the phosphorite is a lag deposit derived from Miocene strata correlatable with phosphatic Middle Tertiary sediments on the continent. It has undergone variable cycles of erosion, reworking, partial dissolution and reprecipitation. Its present form varies from phosphatized carbonate debris, loose pellets, and pebbles, to continuous pavements, plates, and conglomeratic boulders weighing hundreds of kilograms. No primary phosphatization is currently taking place on the Blake Plateau. The primary phosphate-depositing environment involved reducing conditions and required at least temporary absence of the powerful Gulf Stream current that now sweeps the bottom of the Blake Plateau and has eroded away the bulk of the Hawthorne-equivalent sediments with which the phosphorites were once associated.