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genetic adaptation in the expression and evolution of thermal responses. PhD project description: Using a combination of molecular, genomic, and computational techniques, we will investigate the expression
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Helmholtz-Zentrum Potsdam - Deutsches GeoForschungsZentrum GFZ | Potsdam, Brandenburg | Germany | 18 days ago
the topography, geomorphology and structures, carry out field studies to determine alterations with optical, thermal and hyperspectral sensors, and study the structural control of alteration. Your qualifications
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Max Planck Institute of Animal Behavior, Radolfzell / Constance | Radolfzell am Bodensee, Baden W rttemberg | Germany | 3 months ago
their flight depends entirely on vertical air currents (thermal updrafts). During soaring-gliding flight, individuals make use of updrafts to fly with minimal movement costs. But these fine-scale updrafts
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be characterized by spectrocopic techniques for their structure and composition and by chemical/thermal methods for their stability.Your profile: I am looking for a dynamic, motivated, and serious
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networks is key for in-situ management. This project aims to describe the heterogeneity of the subsurface at different scales using tomographic hydraulic, thermal and geophysical data. For this purpose
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Helmholtz-Zentrum Potsdam Deutsches GeoForschungsZentrum | Potsdam, Brandenburg | Germany | about 1 month ago
technical conditions for extraction Development of a numerical model of the extraction process, including the coupling to thermal and fluid‑mechanical processes in order to capture the dynamic behaviour
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additives) for nonaqueous aprotic lithium ion battery electrolytes You determine the relevant physicochemical (e.g., water content, viscosity, etc.) and thermal (TGA, DSC) properties of nonaqueous aprotic
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Helmholtz-Zentrum Potsdam - Deutsches GeoForschungsZentrum GFZ | Potsdam, Brandenburg | Germany | about 1 month ago
Development of a numerical model of the extraction process, including the coupling to thermal and fluid-mechanical processes in order to capture the dynamic behaviour of these extraction processes Design
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additives) for nonaqueous aprotic sodium-based battery electrolytes You determine the physicochemical (e.g., water content, viscosity, etc.) and thermal (TGA, DSC) properties of nonaqueous aprotic electrolyte
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electrolytes You determine the relevant physicochemical (e.g., water content, viscosity, etc.) and thermal (TGA, DSC) properties of nonaqueous aprotic electrolyte formulations You characterize properties and