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bamboo by‑products. Formulate and tune chitosan–lignin complexes for controlled infiltration and bonding within the fibre network. Assess the mechanical, thermal and moisture‑related behaviour
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offers Possibility to publish scientifically is offered and supported Regular team meetings Interdisciplinary cooperation with wet-lab biologist and clinicians Attend domestic and international conferences
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Experience in wet lab molecular biological techniques. Programming experience demonstrated with good programming practice (maintaining code repositories, version control, R, Python). Experience in working with
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wave attenuation for discriminating microstructural effects of thermal damage from moisture conditions in concrete, NDT & E International, 156, 2025. https://doi.org/10.1016/j.ndteint.2025.103473 [2] Y
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, high-moisture waste feedstocks that do not compete with land impacts for food production or alternative fuels. The research will focus on hydrothermal processing, an underdog compared
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response in the fish. The project will collaborate with the FHF (Norwegian Seafood Research Fund) project (‘FatSpot’) which will provide material from wet-lab experiments and production fish, aiming
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mainly in wet-lab, discovering binders by phage display selection and characterize them by ELISA, BLI and enzymatic activity assays. You will also perform in silico structural analysis and design of
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internship, or industrial placement) Wet lab experience How to apply: To apply email Professor Andrea Cortese at andrea.cortese@ucl.ac.uk with a single combined pdf (labelled as: �Your Name_RFC1 PhD
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climate. Your role and tasks: The successful candidate will develop a multiscale hygrothermal framework to simulate coupled heat and moisture transport from the repository scale down to the object level. A
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moisture-sensitive materials. Experience in the synthesis and characterisation of porous materials. Strong understanding of laboratory health and safety, risk assessment, and good research practice. Ability