30 computational-materials Postdoctoral positions at Chalmers University of Technology in Sweden
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15 Dec 2025 - 12:00 (UTC) Type of Contract Temporary Job Status Full-time Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff
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2 Oct 2025 Job Information Organisation/Company Chalmers University of Technology Research Field Computer science Researcher Profile Recognised Researcher (R2) Country Sweden Application Deadline 15
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. * Applicants who have not yet completed their Doctoral degree are welcome to apply, provided that the degree will be awarded no later than June 15, 2026. Has experience with computational methods, programming
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information - far beyond the limits of classical systems. Our research spans quantum computing, sensing, transduction, thermodynamics, and foundations, all aimed at harnessing the powerful behavior of light and
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Application Deadline 29 Nov 2025 - 22:00 (UTC) Type of Contract Temporary Job Status Full-time Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Reference Number 304--1
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16 Nov 2025 - 12:00 (UTC) Type of Contract Temporary Job Status Full-time Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff
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research supporting designers, regulations, and operational models. The division plays a central role in the Naval Architecture and Ocean Engineering education (through the international master’s programme
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? If so, this postdoctoral position is your opportunity to make an impact while working in a collaborative research group focused on cutting-edge battery materials and manufacturing. Project description
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fundamental questions about the particles and forces governing our Universe to energy-related research. The methods of our investigations are also diverse and complementary, and range from theory and computer
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you will do Conduct independent research in collaboration with the research group Customize microfluidic platforms by integrating biological barriers and tissue-mimicking materials into chip designs