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IT4Innovations National Supercomputing Center, VSB - Technical University of Ostrava | Czech | 17 days ago
investigations focused on spin dynamics, · Perform numerical simulations to study: - ultrafast magnetization phenomena, - interactions with surface acoustic waves, - propagation of sound waves in the presence of a
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for a millimetre-wave metasurface project using nonlinear circuits such as diodes. This position may require travel to these partner organizations. Duration: Fixed term until March 2028 (possible
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2AZ, United Kingdom of Great Britain and Northern Ireland [map ] Subject Areas: Physics / GR-Cosmology (gr-qc) , Gravitational Waves , hep-th , Particle/Cosmology Theory , Physics Appl Deadline: 2025
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IT4Innovations National Supercomputing Center, VSB - Technical University of Ostrava | Czech | 19 days ago
investigations focused on spin dynamics, · Perform numerical simulations to study: - ultrafast magnetization phenomena, - interactions with surface acoustic waves, - propagation of sound waves in the presence of a
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Infrastructure? No Offer Description Mission: Analyze the dynamics associated with atmospheric and oceanic heat waves in the Euro-Mediterranean region through climate simulations with the SPEEDO model. Functions
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by professors from MIT and Singapore. This position will entail the following technical responsibilities: 1. Develop wave-based multiscale modelling frameworks to characterize acoustic metamaterials
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(or traveling) waves - Functional minimization - Numerical discretization methods for PDEs - Numerical simulations of PDEs The application should include: - A detailed CV describing the candidate's academic and
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the analysis of nonlinear wave and dispersive equations. Our ideal candidate already has experience with methods of PDEs, in particular Harmonic Analysis, and is able to actively participate in research
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, Cosmology , Experimental or Theoretical Physics , GR-Cosmology (gr-qc) , Gravitational Physics , Gravitational Waves , hep , HEP-Phenomenology (hep-ph) , HEP-Theory (hep-th) , Particle/Cosmology Theory
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opportunity to work on the extremely timely “TWISST: Terahertz wave induced spin switching technology” project. TWISST aims to develop the scientific understanding needed to create a new generation of magnetic