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    • Leachman, Jacob
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    • Mechanical and Materials Engineering, School of
    • Faculty - Mechanical and Materials Engineering
    • Leachman, Jacob
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    AuthorLeachman, Jacob (3)
    Richardson, Ian Andrew (3)
    Blackham, T. M. (1)Fisher, J. (1)Penoncello, S. G. (1)SubjectAlternative energy (1)Crogenics (1)Cryogenics (1)Electrical properties (1)Equations of state (1)Fusion reactions (1)Hydrogen fueling station (1)Hydrogen storage (1)Temperature measurement (1)Thermodynamic properties (1)... View MoreDate Issued2014 (2)2012 (1)

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    Retrofit of a Rubotherm ISOSORP® 2000 for PVT-x and sorption measurements at cryogenic temperatures 

    Leachman, Jacob; Richardson, Ian Andrew; Blackham, T. M.; Penoncello, S. G. (Transactions of the Cryogenic Engineering Conference–CEC: Advances in Cryogenic Engineering, 2014)
    Type V composite storage tanks have significantly increased the working pressures of cryogenic systems for aerospace applications. However, the current operating pressures often exceed the range of available mixture property ...
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    Drop-in Hydrogen Refueling Station 

    Richardson, Ian Andrew; Leachman, Jacob; Fisher, J. (DOE Fuel Cell Technologies Office Webinar, 11/6/2014)
    This presentation describes Washington State University's winning bid in the Hydrogen Student Design Contest, 2014. Students designed a low-cost, low-maintenance hydrogen fueling station module suitable for mass production.
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    Thermodynamic properties status of deuterium and tritium 

    Leachman, Jacob; Richardson, Ian Andrew (Proceedings of the Cryogenic Engineering Conference, CEC: Advances in Cryogenic Engineering, 2012)
    Deuterium and tritium are seeing increased use in cryogenics as a fuel for nuclear fusion energy machines. The current Equation of State (EOS) for deuterium is based on work completed before the mid 1980's and tritium does ...