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Field
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The successful candidate will contribute to the development of a new generation of 3D-printed biomimetic materials designed to model the human intestine in vitro, as part of the BAM-INT project. The project aims
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; the second year will run 1 August 2028–31 July 2029. Fellows are expected to be in residence for the term of the appointment and to take an active role in the intellectual life of their home department
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equipped with a range of sample environments, including a Langmuir trough and a reactor for chemical vapour deposition (CVD) growth of 2D materials on liquid metal catalysts (LMCat). Current in-house
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and cardiovascular research. Minimum Qualifications The ideal candidate should have a Ph.D. in cancer biology/immunology/molecular biology with a strong background in cancer cell culture models (2D, 3D
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Details: This is a full-time, academic, non-tenure track, term position with an initial one-year appointment starting Fall 2027. The position may be extended for a second year, depending on available
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objectives. Culture myoblast cells in both 2D and 3D systems, including development and maintenance of engineered myobundles. Evaluate muscle function through contractile force measurements following
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defined nanostructures and integrating them into nanoscale devices, we explore novel concepts in photonics for future quantum technologies. 【Keywords】carbon nanotubes,2D materials,photonic crystals
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at the nanoscale. Our second field of interest is vortex electronics. It involves building nanodevices for controlling and manipulating of superconducting vortices to present new functionalities e.g. memory cells
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multidimensional spectroscopy, ultrafast two-dimensional (2D) spectroscopy, and/or the development of advanced optical and spectroscopic instrumentation. ● Hands-on experience with ultrafast laser systems
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valorization tools. RESEARCH PROJECT AND SCIENTIFIC FIELD The regional project PYRAMIDE (Porphyrins and Porphyrin-Based Materials for the Hydrogen Evolution Reaction) focuses on the development of porphyrin