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position is subject to availability of external funding. Project 3: The Resilience and Reaction to Policy of Pharmaceutical Supply Chains and Networks: Integrating Network Analysis, Simulations and
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methods to simulate between functional chemically active surfaces and molecules/liquids. Central methodologies include: static DFT calculations; TBMD and AIMD; classical atomistic and coarse-grained
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simulations and data-driven models for optimizing electrolyte formulation. The project involves close interaction with experimental partners in the AFLOW consortium and includes a planned research stay at
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copy of your Master’s thesis (or a draft thereof), and contact information for 2-3 references. Where to apply Website https://uu.varbi.com/en/what:job/jobID:894406/type:job/where:39/apply:1 Requirements
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neuromorphic circuits. We will also simulate high-efficiency spiking neural networks (SNN) and build neuromorphic sensory systems to validate performance and explore broad biomedical and other potential
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systems. The work combines numerical mathematics and quantum theory to simulate 2D and 3D spin textures and to quantify quantum effects such as coherence, entanglement, and dissipation. The candidate will
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the modeling and simulations. The duties may also include (e.g.) teaching, supervision of degree projects, collaboration with other University partners, administration linked to the tasks above Requirements To
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describe yourself, why you want to do a PhD and why you are suitable for this position. CV (max 2 pages) A certified copy of your master's degree and your course grades. Copies (or drafts) of your master's