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, combinatorial optimization, or coding theory; 3. Proficiency in English; 4. Programming experience (Python/Julia, Sagemath, GAP, semidefinite programming) is a plus; 5. Proactive with a good ability for
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of specific requirements Ph.D. in Bioinformatics, Computational Biology, Molecular Biology, or a related field; Familiarity with programming languages such as Python, R, or MATLAB; Hands-on experience in
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or particle physics at high or medium energy. Very good knowledge and programming skills in C/C++ (or possibly Python). Good knowledge of CERN-ROOT data analysis packages. Knowledge of statistical data analysis
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, experience in experiments high energy particle physics or nuclear physics, very good knowledge of c++ and Python programming languages, proficiency with data analysis framework ROOT/PyROOT, knowledge
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other software for nonlinear analysis of structures; the ability to use a programming environment (e.g., Python) will be an additional advantage; • Documented active participation in national and
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theory/cold atoms/quantum information/quantum simulators/quantum optics supported by good publication record, • good programming skills (python/julia, c++), • fluency in written and spoken English
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large software packages. Very good programming skills in C/C++, Python, Fortran, etc. are required. The candidate must have an excellent command of English. The candidate must meet the requirements
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related to the project. Knowledge on advanced control systems and optimization Advanced programming skills in Python and/or Matlab/Simulink Previous experience in scientific research project participation
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. Experience in recording and analyzing electrical biosignals will be appreciated (i. e. VEP, ERG, EEG, EKG). Programming skills in LabVIEW and/or Matlab, and/or Python. Proficiency in English, both spoken and
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. Essential qualifications: PhD in Computer Science, Robotics, Machine Learning, or related fields. Programming skills in Python/C++ and experience with ML frameworks (e.g. PyTorch, TensorFlow, JAX). Strong