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methods to enhance our suite of metabolic modeling tools, including, but not limited to, the calculation, comparison, sampling, and visualization of fluxes. He or she will use these tools to integrate and
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work on the ERC project and use genetics as well as high-resolution in vivo and in vitro imaging to study how T-tubules and the sarcoplasmic reticulum interact with sarcomeres during flight muscle
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for neuromorphic devices based on the dynamics of magnetic skyrmions. The main objective is to use the equilibrium propagation algorithm — EqProp — to design local learning rules adapted to skyrmionic systems
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Effective practice on applying the viability theory in economics or beyond Good understanding of the monetary issues in the economic system Strong writing and oral skills in French and English Website
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consist in the development and use of new magnetization probes for the pulsed magnetic fields generated at the LNCMI-Toulouse. With this new setup, magnetization experiments will be performed on quantum
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(pure and metal-doped) and carbon chains in supernova ejecta. • Apply molecular dynamics (MD) methods to simulate the formation of alumina agglomerates. • Use ab initio wave function methods to model
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treatment and reaction conditions. The work will involve the use of state-of-the-art transmission electron microscopes, together with advanced data acquisition and analysis methodologies, to achieve high
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factorization algorithm over ℚ_p(x). Our second goal is to use this to develop a factorization algorithm over ℚ(x) or over ℚ*(x), where ℚ* denotes the algebraic closure of ℚ. We anticipate that the second problem
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simulations (MD), including the development or use of appropriate interatomic potentials to study adsorption, diffusion, and thin-film growth, as well as ion–matter interactions during deposition, whether ion
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encoding of information, inspired by concepts from single-pixel imaging, and transposed to fluorescence microscopy through the use of structured illumination with variable frequency. The objective is to