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a leading research center in multiscale models for cardiac electrophysiology, with focus on simulating intracardiac electrograms as an enabling technology for arrhythmia characterization. CaMo@KIT
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, crystallography) and molecular simulations. The PhD student is recruited within the ANR-funded project MyoAssemble. Myosins are molecular motors involved in several critical cellular processes. They convert
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new pyranopyran-based building blocks, as well as the quadrupolar chromophores obtained by adding two electron-withdrawing groups A, for next-generation OPV and OLEDs. After synthesis, optical and
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of geomorphological factors (elevation, slope, aspect, debris cover) on the long-term evolution of glaciers. • Compare the long-term evolution of glaciers based on their degree of sensitivity to climate. • Calibrate
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integration of West Nile virus and avian influenza issues into a participatory multi-agent model developed for the prevention of zoonoses as part of the PREZODE ZOOCAM project. The assignment aims to produce
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selecting simulations to run based on a given prediction objective. • Implement and validate these developments in the YALES2 code. • Utilize high-performance computing resources to run the simulations
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involve selecting various event topologies to constrain background and perform detailed study of double-beta decays. GEANT4-based simulations will be used with the software FALAISE developed by SuperNEMO
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disturbances. Current control methods generally rely on simplified interaction models based on constant aerodynamic coefficients, quasi-static approximations, potential flow models, or experimentally identified
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employed to simulate irradiation conditions based on the geometry of the irradiation cell currently used in the PhD project of B. Lathuillière (MATICE PhD student, 2024–2027). GEANT4-DNA and GATE
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field) and ground-based (radio) data - Use of various software codes: (i) radio emission simulation code, (ii) solar wind propagation code. - Development of software (preferably in Python) for data