995 resultados para Finley, Samuel, 1715-1766


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Signatur des Originals: S 36/G03139

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Signatur des Originals: S 36/G14261

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126 Briefe zwischen Max Horkheimer und Leo Löwenthal, Januar - August 1948; 1 Brief von Max Horkheimer an Herbert Marcuse, 1948; 2 Briefe zwischen Theodor W. Adorno und Leo Löwenthal, 1948; 1 Brief von Leo Löwenthal an Samuel H. Flowerman, 15.06.1948; 3 Briefe zwischen Erich Preiser und Leo Löwenthal, 1948; 1 Brief von Max Horkheimer an Howard Wilson, 28.08.1948; 1 Brief von Paul Lazarsfeld an Leo Löwenthal, 26.08.1948; 1 Brief von Käte Hirsch an Leo Löwenthal, [1948]; 1 Brief von Willy Haas an Max Horkheimer, 15.07.1948; 1 Brief von Max Horkheimer an Moses Finley, 16.08.1948; 1 Brief von Max Horkheimer an Robert J. Havighurst, [August 1948]; 1 Brief (Auszug) von Hans Mayer an Max Horkheimer, 23.03.1948; 1 Brief von Julius Schwietering an Max Horkheimer, 18.02.1948; 1 Brief von E. Stein an Max Horkheimer, 26.06.1948;

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Vorbesitzer: Samuel Thomas von Soemmerring; Sophie von Soemmerring; Akzessionsnummer: 2904/10;

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Strassburg, Univ., Diss., 1904

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An integrated instrument package for measuring and understanding the surface radiation budget of sea ice is presented, along with results from its first deployment. The setup simultaneously measures broadband fluxes of upwelling and downwelling terrestrial and solar radiation (four components separately), spectral fluxes of incident and reflected solar radiation, and supporting data such as air temperature and humidity, surface temperature, and location (GPS), in addition to photographing the sky and observed surface during each measurement. The instruments are mounted on a small sled, allowing measurements of the radiation budget to be made at many locations in the study area to see the effect of small-scale surface processes on the large-scale radiation budget. Such observations have many applications, from calibration and validation of remote sensing products to improving our understanding of surface processes that affect atmosphere-snow-ice interactions and drive feedbacks, ultimately leading to the potential to improve climate modelling of ice-covered regions of the ocean. The photographs, spectral data, and other observations allow for improved analysis of the broadband data. An example of this is shown by using the observations made during a partly cloudy day, which show erratic variations due to passing clouds, and creating a careful estimate of what the radiation budget along the observed line would have been under uniform sky conditions, clear or overcast. Other data from the setup's first deployment, in June 2011 on fast ice near Point Barrow, Alaska, are also shown; these illustrate the rapid changes of the radiation budget during a cold period that led to refreezing and new snow well into the melt season.