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Books on the topic 'Cryogenic Cooling'

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1

R, Pruitt Gerald, and Society of Photo-optical Instrumentation Engineers., eds. Selected papers on cryogenic optical systems. SPIE Optical Engineering Press, 1994.

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2

W, Van Sciver Steven, and Goddard Space Flight Center, eds. "Astromag" coil cooling study. Applied Superconductivity Center, University of Wiscosin-Madsion, 1990.

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3

Center, Ames Research, ed. Three-stage linear, split-stirling cryocooler for 1 to 2K magnetic cold stage. National Aeronautics and Space Administration, Ames Research Center, 1993.

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4

Center, Ames Research, ed. Three-stage linear, split-stirling cryocooler for 1 to 2K magnetic cold stage. National Aeronautics and Space Administration, Ames Research Center, 1993.

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5

Longsworth, R. C. Three-stage linear, split-Stirling cryocooler for 1 to 2K magnetic cold stage. Ames Research Center, 1993.

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6

Center, Ames Research, ed. Three-stage linear, split-stirling cryocooler for 1 to 2K magnetic cold stage. National Aeronautics and Space Administration, Ames Research Center, 1993.

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7

United States. National Aeronautics and Space Administration., ed. NASA advanced refrigerator/freezer technology development project overview. National Aeronautics and Space Administration, 1994.

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8

Hastings, L. J. Large-scale demonstration of liquid hydrogen storage with zero boiloff for in-space applications. National Aeronautics and Space Administration, Marshall Space Flight Center, 2010.

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9

Chato, David J. Review and test of chilldown methods for space-based cryogenic tanks. National Aeronautics and Space Administration, 1991.

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10

Iwata, Geoffrey Zerbinatti. A cryogenic buffer-gas cooled beam of barium monohydride for laser slowing, cooling, and trapping. [publisher not identified], 2018.

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11

Ko, William L. Thermocryogenic buckling and stress analyses of a partially filled cryogenic tank subjected to cylindrical strip heating. National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1994.

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12

Ko, William L. Thermocryogenic buckling and stress analyses of a partially filled cryogenic tank subjected to cylindrical strip heating. National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Program, 1994.

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13

NASA Dryden Flight Research Center., ed. Open-mode debonding analysis of curved sandwich panels subjected to heating and cryogenic cooling on opposite faces. National Aeronautics and Space Administration, Dryden Flight Research Center, 1999.

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14

Ko, William L. Open-mode debonding analysis of curved sandwich panels subjected to heating and cryogenic cooling on opposite faces. National Aeronautics and Space Administration, Dryden Flight Research Center, 1999.

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15

NASA Dryden Flight Research Center., ed. Open-mode debonding analysis of curved sandwich panels subjected to heating and cryogenic cooling on opposite faces. National Aeronautics and Space Administration, Dryden Flight Research Center, 1999.

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16

NASA Dryden Flight Research Center., ed. Open-mode debonding analysis of curved sandwich panels subjected to heating and cryogenic cooling on opposite faces. National Aeronautics and Space Administration, Dryden Flight Research Center, 1999.

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17

NASA Dryden Flight Research Center., ed. Open-mode debonding analysis of curved sandwich panels subjected to heating and cryogenic cooling on opposite faces. National Aeronautics and Space Administration, Dryden Flight Research Center, 1999.

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18

T, Long Y., and United States. National Aeronautics and Space Administration., eds. Bubble mass center and fluid feedback force fluctuations activated by constant lateral impulse with variable thrust. National Aeronautics and Space Administration, 1995.

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19

W, Simon T., Oktay S, American Society of Mechanical Engineers. Heat Transfer Division., American Society of Mechanical Engineers. K-16 Committee on Heat Transfer in Electronic Equipment., and AIAA/ASME Thermophysics and Heat Transfer Conference (5th : 1990 : Seattle, Wash.), eds. Cryogenic and immersion cooling of optics and electronic equipment: Presented at AIAA/ASME Thermophysics and Heat Transfer Conference, June 18-20, 1990, Seattle, Washington. American Society of Mechanical Engineers, 1990.

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20

Mihaylov, Vyacheslav, Elena Sotnikova, and Nina Kalpina. Eco-friendly air protection systems for motor transport facilities. INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1093106.

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The textbook considers the issue of assessing the heat and humidity state of air in the processes of its processing in various systems, provides requirements for air protection means, taking into account their environmental friendliness, shows ways of energy saving in cooling, heating and year-round air conditioning systems, as well as when protecting the atmosphere from harmful emissions. The way of energy saving with individual thermal protection of the operator by means of local cooling during air treatment in an irrigated intensified nozzle is shown and recommendations for reducing its mat
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21

Jett, Timothy Raymond. Evaluation of bearing configurations using the single bearing tester in liquid nitrogen. National Aeronautics and Space Administration, George C. Marshall Space Flight Center, 1991.

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22

Jett, Timothy Raymond. Evaluation of bearing configurations using the single bearing tester in liquid nitrogen. National Aeronautics and Space Administration, George C. Marshall Space Flight Center, 1991.

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23

"Astromag" coil cooling study. Applied Superconductivity Center, University of Wiscosin-Madsion, 1990.

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24

Leachman, Jacob W., Øivind Wilhelmsen, and Konstantin I. Matveev. Cool Fuel. Oxford University PressOxford, 2025. https://doi.org/10.1093/9780198936688.001.0001.

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Abstract Hydrogen, the first and most abundant element in our universe, is an essential zero-carbon fuel in humanity’s race against catastrophic climate change. However, very few have access to cryogenic systems for energy-dense hydrogen to gain the necessary experience to contribute to this race. This textbook is written as an invitation for scientists and engineers with experience in thermodynamics, fluid mechanics, and heat transfer to engage in this race for the future via cryogenic hydrogen research and development. We begin with the history of hydrogen and cryogenics, to create a context
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25

Space power facility readiness for Space Station power system testing. National Aeronautics and Space Administration, 1995.

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26

Bubble mass center and fluid feedback force fluctuations activated by constant lateral impulse with variable thrust. National Aeronautics and Space Administration, 1995.

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27

Cohadon, Pierre-François, Jack Harris, Florian Marquardt, and Leticia Cugliandolo, eds. Quantum Optomechanics and Nanomechanics. Oxford University Press, 2020. http://dx.doi.org/10.1093/oso/9780198828143.001.0001.

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The Les Houches Summer School 2015 covered the emerging fields of cavity optomechanics and quantum nanomechanics. Optomechanics is flourishing and its concepts and techniques are now applied to a wide range of topics. Modern quantum optomechanics was born in the late 70s in the framework of gravitational wave interferometry, initially focusing on the quantum limits of displacement measurements. Carlton Caves, Vladimir Braginsky, and others realized that the sensitivity of the anticipated large-scale gravitational-wave interferometers (GWI) was fundamentally limited by the quantum fluctuations
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28

AIAA and Wash.) ASME Thermophysics and Heat Transfer Conference (1990 : Seattle. Cryogenic and Immersion Cooling of Optics and Electronic Equipment/Htd Vol 131/H00584: Presented at Aiaa/Asme Thermophysics and Heat Transfer Conference, ... Seattle, Washington (Htd (Series), V. 131.). Amer Society of Mechanical, 1990.

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29

(Editor), Martin Donabedian, and David G. Gilmore (Editor), eds. Spacecraft Thermal Control Handbook: Cryogenics (Aerospace Press). 2nd ed. AIAA (American Institute of Aeronautics & Ast, 2003.

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