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Theory , Atomic Molecular and Optical Physics , Atomic Physics , Atomic, Molecular, and Optical Physics , atomic-molecular-optical physics , Atomic/Molecular Physics , Biological Physics , Biophysics
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facteurs abiotiques, mécanismes d'adaptation…) qui peuvent confondre les résultats et aboutir à des faux positifs en termes de marqueur de stress biochimique. Une façon de contourner cette limite serait de
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physique de la matière active. En l'absence d'un cadre théorique unifié, les simulations numériques jouent un rôle crucial dans la recherche sur la matière active. Bien que des progrès significatifs aient
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statistics, policies, and procedures related to campus safety. Go here to review: https://safety.temple.edu/reports-logs/annual-security-report You may request a copy of the report by calling Temple
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(experience in high-pressure experiments, X-ray diffraction, or Raman spectroscopy would be an asset) -An interest in atomistic simulation methods (DFT, molecular dynamics, or related approaches) -Skills in
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well as engagement in teaching, examinations, and assessment of MSC and PhD theses within the field of Hematology, Oncology, and Molecular Medicine. Depending on qualifications the associate professor will also be
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of Dr. H. Robert Horvitz at Massachusetts Institute of Technology in Cambridge, MA. This individual will join an integrative team studying molecular mechanisms of cellular fate determination and
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measure their mechanical, adhesive and frictional properties. By combining these data with classical molecular dynamics simulations and a molecular-scale approach to the thermodynamics of molecular
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/Qualifications Experience with molecular simulations (LAMMPS, GROMACS or equivalent) and/or electrostatics simulations (APBS or equivalent). Strong programming skills (Python, FORTRAN, C, or similar). Experience
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tender for external recruitment of a Full Professor, in the area of Biochemistry, subfield of Biocatalysis, with an emphasis on Enzyme Engineering and Molecular Enzymology Reference 002/TI/PC/2026 1. In