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Max Planck Institute for Astronomy, Heidelberg | Heidelberg, Baden W rttemberg | Germany | 18 days ago
structure and atmospheric dynamics of gas giants (3 years). Observations of transiting exoplanets with JWST: data analysis with a focus on multi-wavelength observations or atmospheric modelling of sub
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the formation of planets and planetary systems. His research combines planet formation simulations, the study of dust chemistry, and hydrodynamic modelling of protoplanetary discs to constrain the conditions that
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Job Advertisement 2025-06 23.07.2025 At the Leibniz Institute of Atmospheric Physics (IAP), a full-time position (40h/week) in the Department “Modelling of Atmospheric Processes” is available as
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conditions Couple the power electronics model with electrochemical battery models Support efforts towards hardware-in-the-loop (HIL) integration of the developed models Collaborate with project partners and
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software Structural and thermomechanical simulations, particularly thermal stresses, mechanical loads, and deformation under high-temperature conditions Development of an engineering design for
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with data-based models and numerical dynamo simulations. The successful candidate will contribute to studies of time-averaged geomagnetic field morphologies and core dynamics during transitional events
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harmonized multi-model datasets of high-resolution decadal and multi-decadal scenario simulations for the three European target seas, and (ii) demonstrators of climate services at European Sea basin, coastal
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-Neptunian objects for the various suggested theoretical models. The developed workflow should also be applicable to the other discovery science projects in Dynaverse. Your tasks in detail: Perform scientific
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. Project Objectives 1. Observational studies of AGN jet geometry, collimation and acceleration: Measurements of jet shapes from parsec-scale images. Multi-year kinematics and model analysis to probe
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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Bremerhaven, Bremen | Germany | 23 days ago
generation and its dependence on the environmental conditions, notably sea ice, and comparing it to semi-analytical estimates Applying this internal tide generation as forcing the internal wave model IDEMIX