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- Solid experience in molecular and cellular biology - Proven experience in iPSC cell culture and differentiation - Experience in transcriptome analysis desirable - Ability to work independently on
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proteins in lipid droplets; (2) development and maintenance of the POP_MD code for non-equilibrium molecular dynamics simulations of biological systems. The successful candidate will be responsible
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investigate the molecular mechanisms that underlie the regenerative capacity of injured neurons. Our research focuses on gene regulation processes, particularly the translational control of mRNAs into proteins
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aiming at characterizing the taxonomic diversity of freshwater zooplankton communities of mountain lakes and link the dynamics of these communities to some restauration actions. The selected candidate will
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senescent cells dynamically shape the microenvironment and how these processes can either promote regeneration or contribute to cancer, degenerative diseases, and aging. Research Project Our recent findings
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The researcher will study the potential of atto-photochemistry on organic or inorganic photoinduced reactions. He or she will use quantum chemistry and molecular dynamics methods to do so. The overall objective is
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kinetic properties associated with a transformation, using artificial intelligence tools * performing molecular dynamics simulations * developing codes to analyze these simulations, using existing
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measurements - Optimization of charging conditions and then neutralization of helium droplets. ISMO is a leading laboratory in molecular physics and its applications, located at Paris-Saclay University in
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Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The molecular mechanism of bio-magnetic sensing, utilized
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more than 300 researchers, engineers, and students working across analytical chemistry, physico‑chemistry, environmental science, and materials science. CAPT combines quantum chemistry, molecular dynamics