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especially in thermal energy systems (for steam production), (optimal) control (MPC), physics-based modelling and optimization. Numerical optimization, scientific computing (in C/C++) and general coding
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prides itself in its excellent research capabilities in areas including advanced manufacturing, aerospace, biomedical, energy, industrial engineering, maritime engineering, robotics, etc. The school is
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techniques (qPCR, immunohistochemistry, western blot) Cell analyses (in vitro assays, metabolism measurements) Recent open access research publications related to this position: https://onlinelibrary.wiley.com
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and Industrial Engineering (also DIMI). In particular, the researcher will mainly focus his researche on the optimization of manufacturing processes, specifically on cutting processes and on plastic
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conversion. Integration of developed materials into soft and deformable thermal energy-harvesting devices. Characterization and optimization of the thermoelectric, electrochemical, and energy-conversion
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district energy systems, both commercial and open-source; Optimization of building energy consumption, both electrical and thermal; Modelling, optimization and/or control of either buildings or energy
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for 3 years. Responsibilities The successful candidate will: Develop, optimize and validate advanced 3D cell culture models, including spheroids, organoids and tissue-engineered constructs. Establish
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(written and spoken). Specific Requirements Key responsibilities include: Design, optimize, and execute high-throughput cell-based phenotypic screening strategies to biologically evaluate novel compounds and
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consideration, please submit all application materials before review date) 01/04/2027 Posting Close Date Open Until Filled Yes Description of Work The Department of Mechanical & Materials Engineering (https
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Infrastructure? No Offer Description Associated research staff for Design, optimization and execution of biological assays in microfluidic systems; Repair and characterization of microfluidic devices and