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for teaching, researching, and supervising students in semiconductor physics, with a focus on using advanced mathematical methods to model materials and electronic phenomena in semiconductors. Teaching
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mathematical methods to model materials and electronic phenomena in semiconductors. Teaching Responsibilities: Mathematical Analysis: Differential and integral calculus, differential equations, and Fourier
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for teaching and research in neutron physics, using mathematical methods to understand neutron interactions and related phenomena in complex materials. Teaching Responsibilities: Mathematical Analysis
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and methods for foreground removal, B-mode detection, and delensing. Requirements: PhD in Cosmology, Astrophysics, or Physics. Strong publication record in CMB science. Experience with CMB data
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radiation detection, data acquisition, and analysis techniques. Experimental Methods in Nuclear Physics: Advanced experimental techniques used in modern nuclear physics research. Requirements: PhD in Nuclear
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of radiation. Advanced Nuclear Physics Lab: Practical training in radiation detection, data acquisition, and analysis techniques. Experimental Methods in Nuclear Physics: Advanced experimental techniques used in
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. Position Objectives: The assistant professor will be responsible for teaching and research in neutron physics, using mathematical methods to understand neutron interactions and related phenomena in complex
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students in cosmology and space science research. Develop tools and methods for foreground removal, B-mode detection, and delensing. Requirements: PhD in Cosmology, Astrophysics, or Physics. Strong
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be self-motivated, organized, and able to work in ambiguous and changeable situations. A minimum experience of 5 years after the completion of the PhD is required to be eligible for this position. Key
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of project-based teaching or at least very open to this type of teaching. Create and update course materials, including syllabi, lecture slides, lab exercises, and assessments. Use innovative teaching methods