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Field
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This role is part of a joint project (xDEA) between the University of Salford and the University of Nottingham. Its focus is to develop new tools for the vibro-acoustic simulation of structures in
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their impact on global plasma confinement Assess the effect of geometry on plasma confinement and behavior of turbulence Build-up a comprehensive database based on these simulations and analyze data Job
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). Hands-on experience with computational materials methods (e.g., DFT, molecular dynamics, phase-field simulations). Proficiency in Python, TensorFlow/PyTorch, and scientific computing. Experience in
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research staff Demonstrable career trajectory in AI Health Downloading a copy of our Job Description Full details of the role and the skills, knowledge and experience required can be found in the Job
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. Applications should not be sent to the contact listed below. Please provide a resume and a separate document addressing the skills and experience listed in the Position Description. A copy of the Position
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to 100 GHz, using custom and commercial test fixtures. Develop and simulate computational models of material-loaded microelectronic devices to quantify electric, acoustic, and piezoelectric fields for a
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quantum optics simulation via MATLAB, COMSOL, Lumerical, etc., and understanding of health and safety regulations related to laboratory environments. Please include responses to the following questions as
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Education (ACGME) standards Field: Business Administration, Simulation focused education, Higher Education, Medical Education (GME or UME) Why MCW? Outstanding Healthcare Coverage, including but not limited
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experience at the time of application; (b) have experience in InSAR applications for landslides and reclamations, PolSAR/PolInSAR for vegetation mapping, finite element analysis, numerical simulation, machine
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when the doctoral degree is expected to be obtained. A copy of the doctoral thesis and up to 3 relevant articles where the applicant has had a prominent role in the authorship. Contact information