47 evolution "https:" "https:" "https:" "https:" "https:" "https:" research jobs at Princeton University
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conjunction with a unique tip-enhanced spectroscopy instrument, currently under development in Prof. Rabitz's lab, to produce the world's first nanoscale dual-frequency comb laser spectrometer.The resulting
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, Atmospheric and Oceanic Sciences, Geosciences, Computational Science and Engineering, or a related area is required.The position will involve developing models and algorithms for the evolution of inorganic
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research staff. Projects may include software package creation and maintenance, data engineering, development and/or implementation of advanced statistical methodologies, and supporting research on high
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ownership and resistance to them, the administrative and informational technologies enabling the development of property, and the religious and moral aspects of poverty and ownership. Intellectual
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. EST.Interested applicants must apply online at https://www.princeton.edu/acad-positions/position/40821 and submit a CV, cover letter, writing sample, transcript and the names and contact information of three
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development in Prof. Rabitz's lab, to produce the world's first nanoscale dual-frequency comb laser spectrometer.The resulting instrument will have many applications; notably, it will allow the spectroscopic
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courses. Program faculty and senior researchers will offer mentoring to support professional development. Former postdoctoral researchers with SGS have pursued careers in academia, nongovernmental and
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. '74 Walton III Senior Research Scientist. The research is highly applied in nature, and will involve a granular exploration of the sequence of development, investment decision making, financing, and
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international politics of economic development; the political economy of human security; the evolution and impact of international institutions; and the politics of international law and human rights policies
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-frequency comb laser for use in conjunction with a unique tip-enhanced spectroscopy instrument, currently under development in Prof. Rabitz's lab, to produce the world's first nanoscale dual-frequency comb