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PhD Scholarship in Development of Cement-Free Living Building Materials for Sustainable Construction
(MICP) technology (preferred) Knowledge of how microbes interact and affect and are affected by their physical-chemical environment (preferred) Experience in biomaterials, polymer science, and hydrogel
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the structure and function of microbial communities in Antarctic marine sediments. Fermentative microorganisms play a key role in the initial anaerobic breakdown of organic polymers, supplying substrates
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biointerfacing synthesis and Structural and physicochemical characterization of electrode materials (porous carbons, conductive polymers, porous polymers) and electrolytes: application of modern analytical methods
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)chemical engineering, material/polymer sciences or (bio)cheminformatics or you will have obtained it by the time of appointment. You can provide evidence of excellent study results. Experience with
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are the opposite. This PhD will explore electroactive shape-memory polymer (SMP) morphing structures activated by Joule heating, aiming to achieve large, rapid, and repeatable motion without reliance on motors
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advanced multiscale mechanical–transport modelling with experimental validation to quantify and predict the structural evolution of both the selective skin layer and the polymeric support layer under
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from liquid crystals to foams, as well as polymers and granular systems. These physics studies lie at the interface of physical chemistry and biology. The research will be conducted within the Mesoscopic
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The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | about 2 months ago
of CtBP polymer assemblies within the cell nucleus. Determine how CtBP polymerization influences chromatin regulation and transcriptional programs. Your Role The PhD student will develop an independent
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excitations and excitonic effects using advanced Wannier-based methods * Quantum transport in polymer materials with electron–phonon coupling Full details and application instructions: https://www.ch.nat.tum.de
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polymer degradation, modification, and photocuring, contributing to more sustainable chemical manufacturing and advanced materials development. Working in close collaboration with academic and industrial