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printing processes. This includes working on the design and experimental validation of printed specimens with controlled fiber orientations, mechanical testing to assess anisotropic behavior, and correlating
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installation at DTU Campus for server room cooling will serve as a pilot for testing, control, and optimization of such latent thermal energy storage. This installation will be taken into operation in March 2026
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of such latent thermal energy storage. This installation will be taken into operation in March 2026. To optimize the controllability of cold storage using phase change materials, a novel charge determination
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modulation in 3D. Responsibilities and qualifications Your responsibilities will be to investigate the chemistry in the 3D printing process with emphasis on initiators and inhibitors covering both
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engines. Knowledge of advanced combustion concepts is a merit but not a prerequisite. Practical experience of engine operation in a lab is a merit. Knowledge of control theory is a merit and even better is
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quantification of intermediates, products and byproducts will further be developed, as well as reaction tracking. A second PhD student on the project will be responsible for developing the catalytic process and
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industry. Responsibilities and qualifications Your overall focus will be to advance the development of a sustainable photochemical reduction process for PFAS mineralization using a green reducing agent. You
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and qualifications. Possible topics are: The theory of ultrafast pump-probe experiments (e.g., time-resolved X-ray scattering and spectroscopy), simulations and data processing of actual ultrafast
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a PhD at DTU. Application procedure Your complete online application must be submitted no later than 5 January 2026 (23:59 Danish time). Applications must be submitted as one PDF file containing all
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a PhD at DTU. Application procedure Your complete online application must be submitted no later than 19 December 2025 (23:59 Danish time). Applications must be submitted as one PDF file containing all