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Postdoctoral Researcher (Physicist, Chemist or Material Scientist( (all genders) for a Tenure Tra...
of highly enriched isotopes for the preparation of targets and ion source materials for experiments with heavy ions. A close collaboration with experimental groups and the participation in experiments with
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background in biophysics, with a focus on ion channel research. Prior experience with patch-clamp electrophysiology and advanced microscopy techniques is highly desirable. The Dai lab investigates
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. Participation in the EPIC experiment at the Electron Ion Collider is also possible. Active participation in the Zero Degree Calorimeter detector calibration will also be possible. Some simulation studies
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for two-year postdoctoral positions in Nuclear Theory to begin in Fall 2026. Candidates are expected to have a Ph.D. in nuclear theory or a closely related field by the beginning of the postdoctoral
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nanoparticles, preferably using chromatography techniques (e.g. affinity, ion exchange); Experience in bioconjugation techniques for coupling recombinant proteins to nanoparticles; Experience in analytical
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weaknesses. For instance, ion trap based computers have a high degree of controllability and are only weakly susceptible to noise, yet with only tens of qubits they are comparatively small. Superconducting
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cutting-edge characterization techniques (transmission electron microscopy (TEM), atomic force microscopy (AFM), x-ray photoelectron spectrometry (XPS), secondary ion mass spectrometry (SIMS)...). Based
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, electron and optical lithography, reactive ion etching, as well as surface treatment (ALD, CVD, …). Classical analysis via SEM, AFM, XPS, Raman will be required. Finally, quantum analysis is required in
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utilizing vibrotactile cues as a reliable and confidential modality for feedback. The proposed system utilizes multiple sensing modalities including bioimpedance, ambient and skin temperature and ion
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University of Maryland, Baltimore County | Southern Md Facility, Maryland | United States | 3 days ago
, ion trap based computers have a high degree of controllability and are only weakly susceptible to noise, yet with only tens of qubits they are comparatively small. Superconducting technologies have