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Field
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. degree or equivalent in Molecular Biology, Biochemistry, or other related fields are encouraged to apply. Prior experience in laboratory work is required. Experience in working with research animals and
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these processes respond to environmental change and atmospheric inputs. Applicants with expertise in physiological and molecular approaches with stable- and radioisotope tracers, flow cytometry, and pigment
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filaments and driven by molecular motors, motile cells in a tissue, self-propelled particles and their collectives. Even though the complexity and diverse properties of active systems make their investigation
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University of Girona (UdG) - Institute of Computational Chemistry and Catalysis (IQCC) | Spain | 3 months ago
next-generation computational approaches to understand, predict, and engineer highly reactive intermediates in enzymatic catalysis. By combining quantum chemistry, molecular dynamics simulations, machine
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understanding of early metabolic dysfunction. To achieve this, we integrate data across multiple biological scales, from genetic variation and single-cell molecular profiles to clinical phenotypes collected in
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spin-lattice dynamics simulations, a framework that combines atomistic spin dynamics (magnons) with molecular dynamics (phonons), to investigate ways of manipulating spins in various magnetic systems
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Department of Biology hosts internationally leading research activity in ecology, evolutionary biology, physiology, marine science and technology, and cell & molecular biology. As a PhD Candidate with us, you
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Laboratory (Dstl). Background. We focus on a class of materials termed molecular capsules (doi.org/10.1039/D4CS00761A ) that have potential applications as supramolecular hosts for sensing, separations and
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. To fill-in this gap, you will use hierarchical molecular simulations to produce high quality thermodynamic, transport, and kinetic data that can be used for multiscale model development. We will focus both
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About the project: Generative AI-enabled Molecular Design for Optoelectronic Applications Supervisor: Dr Zsuzsanna Koczor-Benda, University of Warwick Molecular optoelectronic devices have a high