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, 2025. Preferred Qualifications: Experiences in electromagnetic transient analysis, grid-forming IBR modeling, quantum computing, power system stability, cybersecurity, real-time digital simulation, and
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. Your work bridges circuit design, electromagnetic modeling, quasi-optical system analysis and hands-on validation. A key part of your role is the realization of experimental demonstrations. You will
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simulations and translating these designs into manufacturable layouts. Your work bridges circuit design, electromagnetic modeling, quasi-optical system analysis and hands-on validation. A key part of your role
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responsible for the operation of the Level-1 (L1) trigger for the electromagnetic calorimeter (ECAL). It has also designed the calorimeter mechanics and contributed to the front-end readout electronics. It has
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. Position Summary The Postdoctoral Scholar candidate will work with Prof. Yvette Cendes in the field of time-domain astrophysics, including electromagnetic studies of tidal disruption events (TDEs
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electromagnetic simulation tools (e.g. ADS and HFSS) Specific Requirements Abilities and skills: Ability to summarize and write Autonomy LanguagesENGLISHLevelGood Additional Information Benefits https://www.imt
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and production of radiofrequency devices RF circuit production processes Proficiency in circuit and electromagnetic simulation tools (e.g., ADS and HFSS) Specific Requirements Abilities and skills
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dedicated to optimizing the searches for high-frequency gravitational waves in a network of electromagnetic cavities, or other setups to be conceived during the project. All aspects, from source
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thermal bath and an external energy source (e.g. an electromagnetic force, such as an electrostatic force, a light beam, or an electron beam). Within the framework of stochastic thermodynamics, the goal is
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decays, such as η(′) → e⁺e⁻π⁺π⁻, and the search for new effects, including the X(17) boson, hypothesized by the chiral resonance theory. The project also aims to investigate the electromagnetic structure