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Field
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to solving non-linear PDEs. Processing a simulation in this way has some advantages. The low numerical dissipation allows for accurate simulation of time-dependent flows, enabling sensitive applications
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to advanced computing resources. The MMD group is responsible for the design and development of numerical algorithms and analysis necessary for simulating and understanding complex, multi-scale systems
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species formed on the electrode surface by electrolyte degradation, using molecular simulations. To this end, the postdoctoral fellow will develop methods to sample and characterize these processes using
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for the design and development of numerical algorithms and analysis necessary for simulating and understanding complex, multi-scale systems. The group is part of the Mathematics in Computation (MiC) Section
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development of numerical algorithms and analysis necessary for simulating and understanding complex, multi-scale systems. The group is part of the Mathematics in Computation (MiC) Section
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of Photonic Technologies (AIPT), that will join the group of Dr. Auro Perego. You will perform experimental and numerical simulations research in the field of optical frequency comb technology and specifically
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datasets/simulators relevant to space environments. Teamworking: Collaborate closely with team members at SpaceR and Redwire Space Your profile PhD in Robotics, Computer Science, Mechanical Engineering
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-scale numerical simulations, depending on the candidate's expertise and interests. The Postdoctoral Scholar appointment is contingent upon evidence of a doctoral degree, documentation of employment
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to solving non-linear PDEs. Processing a simulation in this way has some advantages. The low numerical dissipation allows for accurate simulation of time-dependent flows, enabling sensitive applications
-
researchers that are self-motivated, creative and enthusiastic to work on experimental measurements and numerical simulations of heat transfer in micro/nanomaterials and their interfaces. The duties