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(https://github.com/LDMX-Software/ldmx-sw ), written in C++, maintained on github and configured via python. You will work with .root files and explore different event generators as well as machine
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. Experience with computational solid mechanics, computational soft tissue mechanics, or a closely related mechanics field. Well-developed coding expertise in Python, Julia, C++, Fortran, or a similar scientific
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Demonstrated working experience with cellular and molecular biology techniques Demonstrated coding experience in MATLAB or Python (or similar languages) Demonstrated experience with advanced microscopy (e.g
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, linear mixed models, structural equation modeling, multilevel models) You are proficient in using one or more common statistical analysis software packages (R, SPSS, Mplus, Python, etc.) You have a very
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-depth knowledge of QKD protocols: e.g. different encodings for BB84, entanglement-based QKD and of free-space optical (FSO) communication Programming and instrument-control skills: e.g. Python, MATLAB
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strains with different aggression phenotypes, including BALB/cJ and BALB/cByJ mice, to link circuit function, harm-aversion, and pathological aggression. What you will be contributing As postdoctoral
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validate theoretical models exploring the connection between thermal conductivity and electronic mobility in different classes of material. • Study the mechanism of polaron formation and dynamics
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. The ideal candidate holds a PhD in transport, operations research, civil engineering, or a related field, with strong skills in mathematical optimization and modelling (ideally in Python) and an interest in
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from around the world are tackling global issues and making a difference to people's lives. We believe that inspiring our people to do outstanding things at Durham enables Durham people to do outstanding
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. This large multimodal dataset allows us to estimate and test different computational models of the decision and learning processes. One postdoc is currently working on the MEG and iEEG data, and one PhD