132 parallel-programming Fellowship research jobs at Nanyang Technological University
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Medical School. In August 2024, we welcomed our first intake of the NTU MBBS programme, that has been recently enhanced to include themes like precision medicine and Artificial Intelligence (AI) in
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aquaculture. Key Responsibilities: The candidate would be required to lead a project under a larger research programme between Singapore and China. The candidate should fulfill the following responsibilities
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engineering / technical hands-on experience soundscape evaluation Familiarity with soundscape ISO standards Good written and oral communication skills Proficiency in AI (python) programming and R programming
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multidisciplinary and integrated team of microbiologists, biochemists, cell biologists, and clinicians. Job Responsibilities: Research Planning and Project Execution Design, plan, and execute research projects
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Medical School. In August 2024, we welcomed our first intake of the NTU MBBS programme, that has been recently enhanced to include themes like precision medicine and Artificial Intelligence (AI) in
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optimization algorithms is highly desirable Excellent programming skills in Python, C++, Java, Julia, or other relevant languages Knowledge of maritime decarbonization and alternative fuels is a plus A good
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intervals Job Requirements: PhD degree in Mechanical/Electrical/Civil Engineering or equivalent Good knowledge of ultrasonic NDT/SHM Good numerical simulation skills Good programming skills (Matlab, C
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students associated with the project. To attend, contribute, and where necessary lead relevant meetings. To undertake any other duties relevant to the programme of research. Job Requirements: PhD degree in
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computer programming Knowledge in traffic safety, urban transportation studies, traffic flow theory, operation research Strong written and verbal communication skills We regret to inform that only
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. The successful candidate will contribute to a Pfizer-funded research programme focused on developing sustainable metal-free C-C and C-X bond-forming methodologies using photochemical and electrochemical approaches