952 resultados para National Commercial Bank of Albany (Albany, N.Y.)


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High-lycopene tomatoes (Solanum lycopersicum) are characterised by an intense red flesh-colour, due to an elevated concentration of the carotenoid, lycopene. However, this characteristic is only visible once fruit are cut open, making it impossible to differentiate intact high-lycopene fruit from standard tomato fruit, a clear market disadvantage. The reason that fruit colour of both high-lycopene and standard fruit looks almost identical from the outside is because tomato fruit normally contain the yellow flavonoid 'naringenin chalcone' in a thin layer of epidermal cells. It is this combination of naringenin chalcone and the underlying lycopene in the flesh that gives tomatoes their characteristic orange-red colour. By incorporation of the recessive colourless epidermis mutant allele 'y' (which prevents naringenin chalcone accumulation) into high-lycopene fruit, we have been able to create high-lycopene tomatoes (hp1.ogc.y) exhibiting a deep-pink colour visible from the outside. Hue angle of the skin of the high-lycopene 'y' mutant and a regular highlycopene tomato (hp1.ogc.Y) was 30 and 38°, respectively, while flesh values were similar at 31 and 32°, respectively. Removal of naringenin chalcone from the epidermis appeared to improve the visibility of underlying lycopene, such that fruit outer colour became a subsequent indicator of underlying flesh colour. The removal of epidermal pigmentation means that high-lycopene fruit can now be differentiated from standard tomato fruit in the market place without the need to cut fruit open.

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Cadastral survey map showing lot lines, lot nos., dimensions, acreages, and proposed streets.

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In previous chapters of this volume, various authors describe the development of herbaceous legumes for pastures on clay soils in Queensland until about the 1980s. Emphasis is on the collection and evaluation of the genus Desmanthus, given its relatively recent addition to agriculture and considerable potential for providing useful pasture legumes for clay soils, particularly in the seasonally dry areas of northern Australia. Other genera are also discussed, including early assessments of herbaceous legumes that were later developed for clay soils (Clitoria, Macroptilium and Stylosanthes). This chapter provides a summary of the development of herbaceous legumes for clay soils in Queensland from these earlier assessments until present. Beef cattle farming is the principal agricultural enterprise in seasonally dry areas of northern Australia, including large areas of clay soils in Queensland. Sown and naturally occurring grasses provide the key feed resource, and the inclusion of sown legumes can significantly improve live-weight gain and reproductive performance per unit area. Queensland has been the centre of development for legumes for clay soils in tropical and subtropical areas of Australia, mostly through assessing and developing plants held in the Australian Tropical Forages Genetic Resource Collection (ATFGRC) (now a component of the Australia Pastures Genebank (APG)). The systematic appraisal of genetic material for clay soils was a focus of well-resourced government research up to the early to mid-1990s, but declined thereafter as sown pasture research teams were dismantled and funding to maintain the ATFGRC declined. Cultivar development is now conducted by small government, private enterprise and university research teams that collaborate where possible. In recent studies the use of experienced researcher knowledge and old plant evaluation sites has been particularly valuable for identifying potentially useful material. Cultivars for long- and short-term pastures on clay soils have been developed to the level of commercial seed production for Desmanthus (five cultivars from four species with two cultivars (one composite) in current use), Clitoria ternatea (one cultivar), Macroptilium bracteatum (two) and Stylosanthes seabrana (two). Other potential cultivars of these species are currently in various stages of development. Each species has different production niches depending on climate, clay soil type and grazing strategy. Adoption of these cultivars is occurring but has variously been impeded by limited promotion, mismatch of seed supply and demand, and difficulty establishing legumes in pastures of some key grass species. Recent renewed investment by the Australian Beef Industry has seen revived government research into pasture legumes in Queensland and rejuvenation of the APG.

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Weight and length descriptive statistics are reported for 73 fish species discarded in the commercial fisheries from the south coast of Portugal. Parameters of the weight-length relationship were estimated for 57 of these species. These are the first weight-length parameters reported for 20 of these species. For an additional 16 species for which no weight-length parameters have been reported, the parameter a was estimated by setting b = 3.0. Samples were used from five gear types: crustacean trawler, fish trawler, pelagic purse seine, demersal purse seine and trammel net. Samples were obtained from depths ranging from <30 m to >500 m and included pelagic and demersal species.

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Intra-specific Y-chromosomal sequence variation is useful for analysing the male contribution to a species’ spatial genetic structure. In red deer (Cervus elaphus) this is especially relevant, because geographic dispersal and game translocations occur mainly through the males. However, Y-chromosomal markers for wild organisms are scarce and frequently non-polymorphic within species. We assessed the intra-specific variation of two Y-chromosomal introns in red deer, one in the DBY (or DDX3Y) gene and the other in the UBE1Y gene. The introns were amplified using previously published exonic primers and directly sequenced in individuals of five red deer subspecies from across Eurasia. However, no nucleotide polymorphism was observed, which rebuts the usefulness of these introns for studies of red deer phylogeography and on illegal transport of red deer within this region. Male-based phylogeographic studies should thus be focused on other Y-chromosomal markers for this species.

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1 Brief von Max Horkheimer an die Zeitschrift The Dog's World, 05.06.1939; 5 Briefe zwischen John Dollard und Max Horkheimer, 1936-1938; 16 Briefe zwischen Josef Doppler und Max Horkheimer, 1934-1939; 2 Briefe zwischen Walter Dorn und Max Horkheimer, 27.09.1941, 24.03.1942; 2 Briefe zwischen Melvyn Douglas und Max Horkheimer, 02.03.1942, 18.12.1941; 34 Briefe zwischen Carl Dreyfuss und Max Horkheimer, 1937-1939; 1 Brief von der National City Bank of New York an den American Consul General London, 15.10.1937; 1 Brief und 2 Entwürfe von Max Horkheimer an den Americal Consul General London, 10.09.1937; 4 Briefe zwischen Walter Dubislav und Max Horkheimer, 1936, 02.10.1936; 3 Briefe zwischen A. E. Duncan-Jones und Max Horkheimer, 1938, 13.04.1938; 1 Brief von E. Duprée an Max Horkheimer, 04.02.1936; 2 Briefe zwischen Bonté Durán und Max Horkheimer, 15.04.1941;

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1 Brief von Max Horkheimer an die Cadillac Motor Division, 05.06.1939; 148 Briefe zwischen Erwin Cahn, Lotte Cahn, Ilse Cahn, Max Cahn, Lilo Cahn, Lina Cahn und Max Horkheimer, 1938-1942; 10 Briefe zwischen dem Transmigration Bureau og the American Jewish Joint Distribution Committee und Friedrich Pollock, 1941-1942; 3 Briefe zwischen dem National Refugee Service und Max Horkheimer, 07.04.1941, 1941; 1 Brief von Julius S. Bach an die National City Bank of New York, 27.06.1940; 1 Brief von Julius S. Bach an den American Consul General Berlin, 15.04.1940; 1 Brief von Max Horkheimer an Julius S. Bach, 15.05.1940; 16 Briefe von Max Horkheimer an den American Consul General Stuttgart, 1938-1941; 2 Briefe zwischen der Auswandererstelle Marx und Max Horkheimer, 02.06.1941; 5 Briefe zwischen dem Reisebüro Anselm Stuttgart und Max Horkheimer, 1941; 9 Briefe zwischen der Sapt A.G und Max Horkheimer, 1940-1941; 3 Briefe zwischen Emanuel Green und Max Horkheimer, 26.09.1940, 1940; 3 Briefe zwischen der Zweigstelle Wüttemberg der Reichsvereinigung der Juden in Deutschland und Max Horkheimer, 1940, 19.09.1940; 2 Briefe zwischen der Auswandererstelle Adler und Max Horkheimer, 25.05.1940; 2 Briefe von Max Horkheimer an den American Consul General Berlin, 1939; 1 Brief von Max Horkheimer an S. Klein, 20.03.1939; 1 Brief von Max Horkheimer an den Collector of Customs, 27.02.1939; 1 Brief von Max Horkheimer an Ludwig Lewisohn,. 03.01.1939; 1 Brief von Friedlaender an Kahn, 15.12.1938; 1 Brief von Erwin Cahn an Max Horkheimer, 07.02.1935;

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20 Briefe zwischen Alfred Haas und Max Horkheimer, 1935-1941; 2 Briefe von Willy Haas an Max Horkheimer, 1938; 3 Briefe zwischen Virginia Haber und Max Horkheimer, 12.09.1945, August 1945; 7 Briefe zwischen Hugo Hahn und Max Horkheimer, 1942-1946; 1 Brief von Max Horkheimer an Charles G. Haines, 23.10.1940; 1 Brief von Max Horkheimer an Hall, 02.07.1939; 2 Briefe zwischen H. Duncan Hall und Max Horkheimer, 04.08.1939, 24.07.1939; 2 Briefe zwsichen Herbert Berkerath und Max Horkheimer, 10.10.1939, 09.10.1939; 23 Briefe zwischen Wolfgang Hallgarten und Max Horkheimer, 1937-1941; 1 Brief von Max Horkheimer an die American Philosophic Society Philadelphia, 15.04.1940; 2 Briefe zwischen Betty Drury und Max Horkheimer, 29.02.1940, 20.02.1940; 6 Briefe zwischen Nina Almond und Max Horkheimer, 1939; 1 Brief von Ruth E. Hollander an Max Horkheimer, 08.09.1938; 1 Brief von dem Brooklyn College an Wolfgang Hallgarten, 29.04.1938; 4 briefe zwischen dem Brooklyn College und Max Horkheimer, 18.05.1938, 17.05.1938; 2 Briefe zwischen Robert Maynard Hutchins und Max Horkheimer, 02.11.1937, 28.10.1937; 2 Briefe zwsichen Hardt und Max Horkheimer, 01.10.1943; 4 Briefe zwischen Gertrude Hardt und Max Horkheimer, 1947-1948; 4 Briefe zwischen den Harper & Brothers New York und Max Horkheimer, 24.10.1950, 1950; 1 Brief von Friedrich Pollock an Margot von Mendelssohn, 13.09.1950; 1 Brief von Hartoch an Max Horkheimer, 09.06.1937; 4 Briefe zwischen dem Harvard College Cambridge Massachusetts und Max Horkheimer, 1939-1940; 3 Briefe zwischen Felix Hase und Max Horkheimer, 1936, 13.03.1936; 1 Brief von Freda E. Hecht an Max Horkheimer, 01.03.1947; 1 Brief von Ernest S. Hediger an Max Horkheimer, 02.09.1940; 2 Briefe zwischen Agnes Heilbut und Max Horkheimer, 18.07.1938,; 7 Briefe zwischen Eduard Heimann und Max Horkheimer, 1936-1939; 1 Brief von Fritz Hein an Max Horkheimer, 14.06.1949; 2 Briefe zwischen Walter Heinemann und Max Horkheimer, 15.02.1945, 12.03.1945; 2 Briefe zwischen Philipp Heller und Max Horkheimer, 16.09.1944, 09.10.1944; 1 Brief von Max Horkheimer an Hellmann, 23.03.1939; 4 Briefe zwischen L. E. Hellmann und Max Horkheimer, 1939; 4 Briefe zwischen P. A. Hemerijk und Max Horkheimer, 1936-1937, 03.02.1936; 5 Briefe zwischen Carl G. Hempel und Max Horkheimer, 1939-1941; 1 Lebenslauf von Hans Henning; 1 Brief von Else Henschke an Max Horkheimer, 24.07.1940; 1 Briefe von Isi Hepner an Max Horkheimer, 23.01.1941; 1 Brief von Leo Löwenthal an Isi Hepner, 03.02.1941; 1 Brief von Gertrude E. Herman anMax Horkheimer, 10.12.1949; 1 Brief von Wilhelm G. Hertz an Max Horkheimer, 29.09.1938; 2 Briefe zwischen Wieland Herzfelde und der National City Bank of New York, 28.11.1939, 30.11.1939; 2 Briefe zwischen Karl Hess und Max Horkheimer, 14.08.1935, 25.10.1934; 4 Briefe zwischen Karl Heymann und Max Horkheimer, 1947, 1949; 19 Briefe zwischen Robert Hilb und Max Horkheimer, 1937-1941; 2 Briefe zwischen Joseph Rosenthal und Max Horkheimer, 12.11.1940, 25.10.1940; 2 Briefe zwischen Henry Church und Max Horkheimer, 14.12.1940, 18.12.1940; 1 Brief von Ellen Hilb an Max Horkheimer, 11.03.1938; 1 Brief von Emil Hilb an Max Horkheimer, 15.04.1939; 2 Briefe zwischen Yoshitaro Hirano und Max Horkheimer, 1936, 23.01.1936; 2 Briefe von Max Horkheimer an Hirsch, 1938; 1 Brief von Arnold Hirsch an Max Horkheimer, 14.07.1949; 4 Briefe zwischen Charles Hirsch und Max Horkheimer, 1937, 1938; 2 Briefe von Max Horkheimer an Ernst Hirsch, Oktober 1938; 1 Brief von Max Horkheimer an Julius Hirsch, 24.02.1942;

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46 Briefe zwischen Max Horkheimer und Frederick Wild; 1 Brief von Frederick Pollock an Leo Löwenthal, 22.04.1948; 5 Empfehlungsschreiben für Max Horkheimer von Frederick Pollock, 16. u. 17.04.1948; 1 Telegramm von Frederick Pollock an Max Horkheimer, 28.06.1943; 1 Brief an Max Horkheimer von Julius Schwietering, 18.02.1948; 10 Briefe zwischen der National City Bank of New York und Max Horkheimer, 1943-1944; 1 Brief von Frederick Wild an H. P. Edelman, 27.01.1944; 1 Brief von Hilda Kahn an Frederick Wild, 02.12.1943; 1 Brief von Frederick Wild an Jane Reinheimer, 30.11.1943;

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Mode of access: Internet.

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v.6 (1870)

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Fossil associations from the middle and upper Eocene (Bartonian and Priabonian) sedimentary succession of the Pamplona Basin are described. This succession was accumulated in the western part of the South Pyrenean peripheral foreland basin and extends from deep-marine turbiditic (Ezkaba Sandstone Formation) to deltaic (Pamplona Marl, Ardanatz Sandstone and Ilundain Marl formations) and marginal marine deposits (Gendulain Formation). The micropalaeontological content is high. It is dominated by foraminifera, and common ostracods and other microfossils are also present. The fossil ichnoasssemblages include at least 23 ichnogenera and 28 ichnospecies indicative of Nereites, Cruziana, Glossifungites and ?Scoyenia-Mermia ichnofacies. Body macrofossils of 78 taxa corresponding to macroforaminifera, sponges, corals, bryozoans, brachiopods, annelids, molluscs, arthropods, echinoderms and vertebrates have been identified. Both the number of ichnotaxa and of species (e. g. bryozoans, molluscs and condrichthyans) may be considerably higher. Body fossil assemblages are comparable to those from the Eocene of the Nord Pyrenean area (Basque Coast), and also to those from the Eocene of the west-central and eastern part of South Pyrenean area (Aragon and Catalonia). At the European scale, the molluscs assemblages seem endemic from the Pyrenean area, although several Tethyan (Italy and Alps) and Northern elements (Paris basin and Normandy) have been recorded. Palaeontological data of studied sedimentary units fit well with the shallowing process that throughout the middle and late Eocene occurs in the area, according to the sedimentological and stratigraphical data.

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La globalización y la competitividad como realidad de las empresas, implica que los gerentes preparen a sus empresas de la mejor manera para sobrevivir en este mundo tan inestable y cambiante. El primer paso consta de investigar y medir como se encuentra la empresa en cada uno de sus componentes, tales como recurso humano, mercadeo, logística, operación y por último y más importante las finanzas. El conocimiento de salud financiera y de los riesgos asociados a la actividad de las empresas, les permitirá a los gerentes tomar las decisiones correctas para ser rentables y perdurables en el mundo de los negocios inmerso en la globalización y competitividad. Esta apreciación es pertinente en Avianca S.A. esto teniendo en cuenta su progreso y evolución desde su primer vuelo el 5 de diciembre de 1919 comercial, hasta hoy cuando cotiza en la bolsa de Nueva York. Se realizó un análisis de tipo descriptivo, acompañado de la aplicación de ratios y nomenclaturas, dando lugar a establecer la salud financiera y los riesgos, no solo de Avianca sino también del sector aeronáutico. Como resultado se obtuvo que el sector aeronáutico sea financieramente saludable en el corto plazo, pero en el largo plazo su salud financiera se ve comprometida por los riegos asociados al sector y a la actividad desarrollada.