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, optimize, and test advanced materials that will accelerate the deployment of higher performance nuclear energy systems. As part of our research team, you will assess the viability of accelerated irradiation
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an electrolysis cell. In particular, stability will be assessed using accelerated degradation tests, and the structural and morphological evolution of the catalysts will be monitored via physicochemical techniques
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conduct research on: Repurposing end-of-first-life electric bus and IMC batteries as second-life stationary and mobile energy storage systems with focus on battery degradation and cell-to-cell variations
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stationary and mobile energy storage systems with focus on battery degradation and cell-to-cell variations Analyzing the impact of battery chemistry, aging history, operational profiles, and pack architecture
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Laboratory (HTMR) at Mohammed VI Polytechnic University (UM6P) is a state-of-the-art research facility dedicated to accelerating scientific discovery through automation, digitalization, and high-throughput
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research facility dedicated to accelerating scientific discovery through automation, digitalization, and high-throughput experimentation. By integrating advanced robotics, intelligent workflows, and
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, you will be encouraged to develop independent ideas, propose new concepts, and test them experimentally and/or computationally. The role is ideally suited to strengthen your pre-existing expertise and
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into mobility and energy systems. We improve the efficiency, sustainability and economics of electric vehicles by optimizing and accelerating the integration of components up to complex mobility systems through