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. Waht you bring to the table You are capable of working independently while also proactively seeking collaboration — whether with your supervisor, fellow researchers, or external partners. You're known
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activity and synaptic dynamics using high-density 3D Multi-Electrode Arrays (3D-MEAs) — done in close collaboration with experts, providing full support as you learn to analyze this data. o Multi-Omic
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vehicle hot- and cold structures, landing attenuation systems, seals, valves, parachute systems, separation systems, solar array drive mechanisms, reaction wheels, pointing mechanisms, pyrotechnics
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low-power mixed-signal ICs for large sensor arrays. Your work may include low-noise analogue front-ends, high-resolution and energy-efficient ADCs, and local data processing and multiplexing. You will
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developing an integrated spectropolarimeter in which photonic-crystal filter arrays are combined directly with an imaging detector. This approach could reduce instrument size and enable more scalable
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outside of work as well. What you bring to the table You have a passion for biodiversity, optics, and bioimaging, with experience in bridging these interdisciplinary fields. You are capable of conducting
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bring to the table You are capable of working independently while also proactively seeking collaboration — whether with your supervisor, fellow researchers, or external partners. You're known for your
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, quantum simulation experiments using Rb-Sr mixtures, single Sr atoms in optical tweezer arrays and improved ways to build optics. Your project will profit from synergy with all these activities. Want
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operating atom interferometers, quantum simulation experiments using Rb-Sr mixtures, single Sr atoms in optical tweezer arrays and improved ways to build optics. Your project will profit from synergy with all
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experiments that mimic repetitive silica deposition under early Earth conditions. An array of microenvironmental conditions will be tested to study the variety of silica sinter fabrics and morphologies