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Field
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: Experimental condensed matter physics, cosmology and astrophysics, particle astrophysics and dark matter, high energy, atomic, pulsar and biophysics; theoretical cosmology, condensed matter, mathematical, and
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approaches are integrated with behavioural studies, large-scale data analysis, biophysical modelling, multi-omic profiling, and collaborative human fMRI studies to build a comprehensive understanding of brain
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huge opportunity as an untapped resource. You will contribute to an interdisciplinary team comprising experts in structural biology, biophysics, microbiology, biopolymer science, downstream processing
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-performance computing. Additional experience in DNA biophysics, machine learning, and optimization is preferred. This job description intends to provide a representative and level of the types of duties and
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of transitioning to a permanent research role Freedom to develop independent ideas within a clear and ambitious research program Strong institutional and grant support Access to advanced technologies: cryo-EM
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and biophysics; theoretical cosmology, condensed matter, mathematical, and particle physics. Candidates for the position must have a Doctorate degree in Physics or a related discipline. To apply
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computational costs by orders of magnitude and enabling breakthroughs in drug design and materials science. The position bridges machine learning and molecular science, with opportunities for collaboration
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in genome-wide computational experiments. We are part of the Center for Medical Genomics and the Center for Computational Biology and Bioinformatic s. We have strong links to Penn State College
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be direct access to advanced biophysical infrastructure in the biophysics core facility headed by the PI, a GPU cluster with working pipelines for computational design and the department’s bioimaging
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. The Atherton group is based in Randall Centre for Cell & Molecular Biophysics, home to a diverse array of structural and cellular biology research, which is part of the School of Basic & Biomedical Sciences