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Field
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to train tomorrow’s leaders in earth and environmental science. For further details about the programme please see http://nercgw4plus.ac.uk/ For eligible successful applicants, the studentships comprises
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of raw materials. Fibre Reinforced Polymers (FRPs) have become a widely adopted solution for strengthening concrete structures due to their high mechanical performance, durability, and ease of installation
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Description The Center for Molecular Bioengineering (B CUBE, https://tu-dresden.de/cmcb/bcube ) and its partner institutions, the Biotechnology Center (BIOTEC) and the Center for Regenerative
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of tremendous industrial importance, enabling the synthesis of pharmaceuticals, polymers, and functional materials. One of the fundamental limitations of these reactions is the lack of precise control over
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to escape detection. This is the case of labile N-phosphorylations and methylations. This project will leverage state of the art molecular imprinting techniques to develop refined polymer binders (porous
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the mechanical properties of conjugated polymers and on the development of spinning processes for the manufacture of conducting polymer fibers for wearable electronics. A summary of the research field can be found
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As a PhD candidate, you will develop a molecularly imprinted polymer (MIP)-based sensor for detecting antimicrobial resistance (AMR) in pathogens that threaten human health. Acting as artificial
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) techniques mainly involving MEX, PBF, VPP, metal Atomic diffusion (ADAM), electrospinning, electroforming, rapid tooling and vacuum casting, as well as on polymer processing (injection moulding, compression
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) of printed electronic devices. Read more at: www.ri.se ; https://www.printedelectronicsarena.com/en/ ; https://liu.se/loe The position We are looking for an early-stage researcher for an industrial PhD student
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the email server of TUD applies), preferably via the TUD SecureMail Portal https://securemail.tu-dresden.de by sending it as a single pdf file to rtg3120 at tu-dresden.de or to: TU Dresden, Chair