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relationship acting over multiple length scales from the molecular, nano to the macro level and their cross-interactions and (c) utilizing the gathered knowledge and the invented materials to address key
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proficiency in Density Functional Theory (DFT) and/or Molecular Dynamics (MD) simulations, enabling the computational investigation of material properties, electronic structure, and atomic-scale behavior
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under realistic process conditions. Perform process simulations and scale-up assessments. Use advanced characterization techniques (XRD, BET, SEM, TPR, GC-MS, etc.). Collaborate with interdisciplinary
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engineering. CBS projects aim at an in-depth understanding of the molecular mechanisms of all transformations to propose new original alternatives in terms of efficiency, environmental friendliness, and
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assemblies, ideally with a focus on battery materials. Demonstrated proficiency in Density Functional Theory (DFT) and/or Molecular Dynamics (MD) simulations, enabling the computational investigation
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, AFM), and mechanical testing to evaluate material properties. Performance Evaluation: Implement agronomic trials to assess material performance under simulated or real environmental conditions
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of the following competencies. Experimental development, testing, and demonstration of novel CCUS technologies. Process simulation, cost, life cycle, and social assessment of CCUS value chains. Reactor
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and research network and is committed to recruiting high-quality academics and professionals to contribute to its dynamic, quality-driven research environment. About AITTC The Agricultural Innovation
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researchers. Required Skills Nuclear Instrumentation and Advanced Detection Techniques: Proficiency in detecting ionizing radiation and using Monte Carlo simulation software (MCNP, GEANT4). Knowledge of multi
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. Simulating and evaluating various extraction scenarios, considering industrial constraints. Collaborating closely with field and operational teams to integrate proposed solutions. Conducting literature reviews