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(CFD) methods. The role focuses on transitioning legacy CFD solvers to modern, Python-based AI frameworks (e.g., PyTorch, JAX), targeting high-efficiency, scalable simulations of water-air systems with
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Optimization models for ATM system. Strong programming skills in Python, Java etc. Good English writing and communication skills for research work. Able to work independently while contributing effectively in
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, C++, Python etc. Competent in teamwork and presenting results in informative visuals. Interpersonal skill: Ability to work under pressure, Ability to work independently, develop solutions under strict
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Experience with Variational Quantum Eigensolver (VQE) algorithms Proficiency in data analysis and visualization using Python libraries Ability to work independently and collaboratively We regret to inform
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experiments with z-tree, Python, and o-Tree. Experience in running computerized laboratory economic experiments. Recruiting, training, and supervising undergraduate research assistants Performing research
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programming, optical instrumentation, automation and data processing skills (e.g. C++, LabVIEW, Zemax, OSLO, TracePro, MATLAB, Python, ImageJ). Proven publication track record would be an advantage. We regret
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transport engineering, maritime transport and management, computer science, or a related field from a good university; Excellent programming skills, such as Python, C++, Java, Julia, or other competent
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researchers and scientists (as a team team player and team leader) to produce high-quality research Mastering of a programming language (e.g. Python, C, Matlab,etc) Have good technical reading, writing and
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software for modeling unprecedented electromagnetic phenomena, using languages such as C++ and Python Formulate new theories pertaining to EUV generation, obtained ab initio from Maxwell’s equations and
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and Competencies: Proficiency in CAD software, rapid prototyping and application of autopilot flight control. Proficiency in Python, C++, and MATLAB/Simulink; familiarity with robotics middleware (e.g