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to develop methodologies for real-time modeling and inversion of geophysical well logs, with a particular focus on borehole electromagnetic data during drilling. This includes the further development
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electromagnetic data during drilling. This includes the further development and application of fast solvers for Maxwell’s equations and nonlinear inversion algorithms that we have already developed in a previous
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home-built hardware components into a unique research tool, including vacuum chambers, turbo-molecular pumps, mass-spectrometers (Quadrupole and Time-Of-Flight), electromagnetic pulse valves, pressure
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participate. The present project aims at studying collective and single-particle properties of neutron-rich nuclei in the region around 78Ni by measuring electromagnetic transition probabilities
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around 78Ni by measuring electromagnetic transition probabilities. The experimental determination of transition probabilities is crucial for understanding the onset of deformation and shape coexistence
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spectroscopies and optical characterisation of nanomaterials. Experience with standard nanofabrication processes. Experience with electromagnetic simulation software (Lumerical, Comsol, CST or similar). Ability
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(Quadrupole and Time-Of-Flight), electromagnetic pulse valves, pressure gauges, solenoid valves, resistive heaters and thermocouple sensors, PID controllers, actuated gate valves, etc. Programming in LabView