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signatures of seasonal processes on Mars and transient liquid water activity relevant for icy airless worlds. The successful candidate will lead design, integration and testing of cryo-vacuum regulation and
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/anion exchange membrane systems). The successful candidate will contribute to the design, fabrication, testing, and characterization of materials and devices for clean energy conversion and storage
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mission of unleashing the potential of every individual, enriching the human experience through inclusion, discovery, and innovation; and propelling broad-based prosperity for the many communities we serve
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, ECCV, ICML, NeurIPS, and ICLR annually. Additionally, contribute to teaching the CAP6411 course. Minimum Qualifications: PhD in Computer Science or another related field Preferred Qualifications
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integrate in vivo mouse models and proteomics via mass spectrometry to uncover mechanisms of immune reprogramming and therapeutic response. Minimum Qualifications: PhD in Biomedical Sciences, Bioengineering
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modeling methods to design novel catalytic materials for energy and sustainability. Responsibilities: The postdoctoral researcher will work on the computational design of materials for electrocatalysis
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institutes. Supervise and train graduate and undergraduate students. Minimum Qualifications: PhD in Biomedical Sciences, Bioengineering, or any related field. Preferred Qualifications: Working knowledge
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: - Mentor graduate and undergraduate students. Develop new research: - Support or lead research proposals. Minimum Qualifications PhD in Electrical Engineering, Electrical and Computer Engineering, Materials
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at the University of Central Florida and partner institutions. Minimum Qualifications PhD in Computer Science, Computational Social Science, Innovation Modeling or related. Preferred Qualifications -A Ph.D. in
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Rocketdyne. The work is oriented on the design and testing of various systems and components for applications with supercritical CO2, H2/NH3, molten salt and particle-based storage systems. The Postdoctoral