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University of Toronto | Downtown Toronto University of Toronto Harbord, Ontario | Canada | about 2 months ago
Principles I Course Description: Matter and its transformations are studied at the macroscopic level. Topics include stoichiometry, phases of matter, equilibria, thermodynamics and electrochemistry. Number
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: Title of the scientific project: Nonequilibrium phase transitions, synchronization and chaos in thermodynamically consistent models Principal investigator: Dr. Eng. Krzysztof Ptaszyński Description
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understanding of energy-conversion systems, thermodynamics, electrical engineering, heat and mass transfer, electrochemistry, or control engineering. The ability to conduct independent, systematic, and
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mechanical engineering or a related field who will excel in teaching in a broadly-based undergraduate curriculum (https://www.hmc.edu/engineering/curriculum/ ). Industrial or other practical experience in
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, applied physics or a closely related discipline. Specific Requirements We are looking for candidates with: A strong foundation in thermodynamics, fluid mechanics, heat transfer and combustion. Motivation
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18 Sep 2026 Job Information Organisation/Company ARCNL Research Field Engineering » Chemical engineering Engineering » Mechanical engineering Physics » Applied physics Physics » Thermodynamics
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their applications to statistical physics and/or black hole thermodynamics. The Theoretical physics position will focus on gravitational and holographic systems out of equilibrium, with possible topics
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computing environment. A fundamental understanding of energy-conversion systems, thermodynamics, electrical engineering, heat and mass transfer, electrochemistry, or control engineering. The ability
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to understand engineering principles (thermodynamics, fluid dynamics, psychometrics, etc.) that pertain to the heating, ventilating, and air conditioning of buildings and the operation of other building services
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, and conditioned water systems. Administer and execute water and steam chemistry programs to maintain regulatory compliance, maximize thermodynamic efficiency, support system reliability and capacity