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specializes in drug discovery and development, particularly targeting chromatin remodeling enzymes and synthetic lethality pathways for cancer therapy. The company leverages its molecular expertise in
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Plan / Goals to be achieved: Molecular ferro- and piezoelectrics are emerging as low-power, lead-free platforms for sensing, memory, and energy harvesting, yet the lack of predictive links between
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. The ideal applicant will be eager to engage in a dynamic, cross-border doctoral programme, spending significant periods of study and research in both Poland and the Netherlands. We seek an individual who
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networks and nonequilibrium thermodynamics of living systems. Current areas of interest include (but not limited to) molecular mechanisms and nonequilibrium thermodynamics in living systems responsible
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of interest include (but not limited to) molecular mechanisms and nonequilibrium thermodynamics in living systems responsible for important regulatory functions such as signal transduction, molecular motor
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written English. Preference will be given to candidates with an affinity for theoretical work and experience in working with molecular dynamics simulations. Where to apply E-mail natjecaji.pisarnica@irb.hr
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Isabel Monteiro Lopes IV - Work Plan / Goals to be achieved: The selected candidate will join a dynamic translational research team as part of a strategic collaboration with a pharmaceutical company
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of research. These include: Computational physics, including statistical mechanics, biophysics, fluid mechanics, quantum physics, and molecular dynamics Numerical methods for partial differential equations and
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Plan / Goals to be achieved: The candidate will join a dynamic translational research team, within the framework of a strategic collaboration with a pharmaceutical company, with the goal of developing
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. Numerical simulations and theoretical membrane models will be developed, aiming to couple viscous interfacial fluid flow, elastic deformations and wetting-like processes at cellular membranes. The theoretical