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the ionization process and the resulting correlations. Confront the measurements with the ab initio and analytical strong-field theory developed by the UCL partner group, closing the loop between experiment and
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-discriminating scaling laws. The successful candidate will be expected to: Develop, setup and apply advanced, non-intrusive optical diagnostics tailored for micro-scale flames, specifically Digital Holographic
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mission delivery within approved budget and mission scopes. Support program and/or capability development by identifying opportunities, developing people, shaping concepts, coordinating proposal efforts
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encouraged to apply. Our laboratory develops and applies NMR methods - particularly solid-state NMR - to reveal molecular composition, structure, interactions, and chemical modifications in complex biological
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orientation. Applicants should have or expect to complete a PhD by September 1, 2027. Applicants should submit their applications electronically by visiting the web site https://www.gsb.stanford.edu/recruiting
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experience may include flames, plasmas, high-temperature CVD furnaces, aerosol reactors, or related gas-phase synthesis platforms. The position combines reactor development, chemical kinetics, reacting-flow
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of the transformation science and sustainability transitions literatures to help advance the intellectual core of the Transformation Science Program. About the Transformation Science Program The Transformation Science
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, close mentorship, and the opportunity to develop an independent research direction within the broader neuro-adipose communication program. The postdoctoral scholar will join a collaborative environment
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of innovation in pain research, education, and patient care. Our postdoctoral program has successfully transitioned fellows into independent research careers; many have achieved their own NIH K/R grants and
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, respiratory waveforms, heart rate, blood pressure trends, and other bedside monitoring signals. The goal of this work is to develop, validate, and translate computational methods that extract clinically