998 resultados para Bank notes.


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"1.1.1888. Josef Weismann geb. 20.10.1857. pens. 31.12.1927"

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"11.4.1889 Franz Trolldenier geb. 5.12.1866"

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"15.4.1889 Georg Heinrich geb. 12.5.1863. pens. 31.12.1927"

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"25.7.1891 Friedrich Brandes geb. 11.4.1867 pens. 31.12.1927"

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"1.10.1891 Moritz Romberg geb. 4.6.1870"

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"1.10.1891 August Rothschild geb. 14.11.1870"

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"1.10.1893 Otto Pieper geb. 11.2.1868"

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"15.11.1893 Heinrich Ruhrmann geb. 1.1.1863 pens. 31.12.1927"

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"2.12.1895 Richard Mueller geb. 1.3.1853 pens. 31.12.1927"

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"15.8.1896 Franz Koch geb. 14.9.1860 gest. 21.10.1927"

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"1.6.1897 Max Fonrobert geb. 5.12.1866"

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"1.12.1897 Otto Pfeiffer geb. 23.10.1873"

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. Management of the invasive Vachellia nilotica indica infesting tropical grasslands of Northern Australia has remained unsuccessful to date. Presently Anomalococcus indicus is considered a potential agent in the biological management of V. n. indica. Whereas generic biological details of A. indicus have been known, their feeding activity and details of their mouthparts and the sensory structures that are associated with their feeding action are not known. This paper provides details of those gaps. Nymphal instars I and II feed on cortical-parenchyma cells of young stems of V. n. indica, whereas nymphal instars III and adult females feed on phloem elements of older shoots. Nymphal instars and adults (females) trigger stress symptoms in the feeding tissue with cells bearing enlarged and disfigured nuclei, cytoplasmic shrinkage, cytoplasmic trabeculae, abnormal protuberances and uneven cell wall thickening, unusual cell membrane proliferation, and exhausted and necrosed cells. Continuous nutrient extraction by A. indicus can cause stem death. We provide evidence that A. indicus, by virtue of its continuous feeding activity and intense population build up, can be an effective biological-management agent to regulate populations of V. n. indica in infested areas. © 2014 © 2014 Société entomologique de France.

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Memoir by Pierre Ferrand, written in 1992, including recollections of his meeting with Alfred Doeblin in the freight car of a military transport leaving occuppied Paris in 1940 for Cahors, information on Ferrand's family which Ferrand believes is portrayed in Doeblin's "Schicksalsreise," critical comments on Doeblin's work and character, and information on Ferrand's father's work as Advisor on German Affairs for the French government and on the family's emigration to the United States; newspaper clipping of 1991 with letter to the editor on Frederick the Great by Pierre Ferrand.

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A significantly increased water regime can lead to inundation of rivers, creeks and surrounding floodplains- and thus impact on the temporal dynamics of both the extant vegetation and the dormant, but viable soil-seed bank of riparian corridors. The study documented changes in the soil seed-bank along riparian corridors before and after a major flood event in January 2011 in southeast Queensland, Australia. The study site was a major river (the Mooleyember creek) near Roma, Central Queensland impacted by the extreme flood event and where baseline ecological data on riparian seed-bank populations have previously been collected in 2007, 2008 and 2009. After the major flood event, we collected further soil samples from the same locations in spring/summer (November–December 2011) and in early autumn (March 2012). Thereafter, the soils were exposed to adequate warmth and moisture under glasshouse conditions, and emerged seedlings identified taxonomically. Flooding increased seed-bank abundance but decreased its species richness and diversity. However, flood impact was less than that of yearly effect but greater than that of seasonal variation. Seeds of trees and shrubs were few in the soil, and were negatively affected by the flood; those of herbaceous and graminoids were numerous and proliferate after the flood. Seed-banks of weedy and/or exotic species were no more affected by the flood than those of native and/or non-invasive species. Overall, the studied riparian zone showed evidence of a quick recovery of its seed-bank over time, and can be considered to be resilient to an extreme flood event.