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1

Efimovich, Sheĭndlin Aleksandr, and Pelet͡s︡kiĭ V. Ė, eds. Teplofizicheskie svoĭstva molibdena i ego splavov: Spravochnik : soglasovano s Gosudarstvennoĭ sluzhboĭ standartnykh spravochnykh dannykh. "Metallurgii͡a︡", 1990.

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2

Ty, Neises. A comparison of supercritical carbon dixoide power cycle configurations with an emphasis on CSP applications. National Renewable Energy Laboratory, 2013.

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3

Joint Panel on Oceanographic Tables and Standards. Carbon Dioxide Sub-Group., ed. Thermodynamics of the carbon dioxide system in seawater: Report. Unesco, 1987.

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4

McEachern, Rod J. A review of the oxidation of uranium dioxide at temperatures below 400C̊. Whiteshell Laboratories, 1997.

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5

D, Aggarwal M., and George C. Marshall Space Flight Center., eds. A study of microstructural characteristics of Ni-based superalloys at high temperatures: Final technical report. Dept. of Physics, Alabama Agricultural and Mechanical University, 1990.

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6

D, Aggarwal M., and United States. National Aeronautics and Space Administration, eds. A study of microstructural characteristics of Ni-based superalloys at high temperatures: Semi-annual technical report. Dept. of Physics, Alabama Agricultural and Mechanical University, 1987.

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7

United States. National Aeronautics and Space Administration., ed. A Study of microstructural characteristics of Ni-based superalloys at high temperatures: Semi-annual technical report. Dept. of Physics, Alabama Agricultural and Mechanical University, 1988.

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8

J, Carroll John, and Sara Anwar. Carbon Dioxide Thermodynamic Properties Handbook. Wiley & Sons, Incorporated, John, 2011.

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9

Dvuokisʹ ugleroda v vysokotemperaturnykh prot͡s︡essakh mineraloobrazovanii͡a︡. "Nauka", 1988.

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10

J, Carroll John, and Sara Anwar. Carbon Dioxide Thermodynamic Properties Handbook: Covering Temperatures from -20° to 250°C and Pressures up to 1000 Bar. Wiley & Sons, Limited, John, 2016.

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11

J, Carroll John, and Sara Anwar. Carbon Dioxide Thermodynamic Properties Handbook: Covering Temperatures from -20° to 250°C and Pressures up to 1000 Bar. Wiley & Sons, Limited, John, 2016.

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12

J, Carroll John, and Sara Anwar. Carbon Dioxide Thermodynamic Properties Handbook: Covering Temperatures from -20° to 250°C and Pressures up to 1000 Bar. Wiley & Sons, Incorporated, John, 2016.

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13

J, Carroll John, and Sara Anwar. Carbon Dioxide Thermodynamic Properties Handbook: Covering Temperatures from -20° to 250°C and Pressures up to 1000 Bar. Wiley & Sons, Incorporated, John, 2016.

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14

J, Carroll John, and Sara Anwar. Carbon Dioxide Thermodynamic Properties Handbook: Covering Temperatures from -20 Degrees to 250 Degrees Celcius and Pressures up to 1000 Bar. Wiley & Sons, Incorporated, John, 2011.

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15

J, Carroll John, and Sara Anwar. Carbon Dioxide Thermodynamic Properties Handbook: Covering Temperatures from -20 Degrees to 250 Degrees Celcius and Pressures up to 1000 bar. Wiley-Scrivener, 2011.

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16

J, Carroll John, and Sara Anwar. Carbon Dioxide Thermodynamic Properties Handbook: Covering Temperatures from -20 Degrees to 250 Degrees Celcius and Pressures up to 1000 Bar. Wiley & Sons, Incorporated, John, 2011.

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17

J, Carroll John, and Sara Anwar. Carbon Dioxide Thermodynamic Properties Handbook: Covering Temperatures from -20 Degrees to 250 Degrees Celcius and Pressures up to 1000 Bar. Wiley & Sons, Incorporated, John, 2011.

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18

Long, Yi, and Yanfeng Gao. Vanadium Dioxide-Based Thermochromic Smart Windows. Taylor & Francis Group, 2021.

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19

Long, Yi, and Yanfeng Gao. Vanadium Dioxide-Based Thermochromic Smart Windows. Jenny Stanford Publishing, 2021.

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20

Long, Yi, and Yanfeng Gao. Vanadium Dioxide-Based Thermochromic Smart Windows. Jenny Stanford Publishing, 2021.

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21

Vanadium Dioxide-Based Thermochromic Smart Windows. Jenny Stanford Publishing, 2021.

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22

Geological sequestration of carbon dioxide: Thermodynamics, kinetics, and reaction path modeling. Elsevier, 2007.

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23

Clarke, Andrew. Water. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780199551668.003.0005.

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Abstract:
Liquid water is essential for life, and a metabolically active cell is ~70% water. The physical properties of liquid water, and their temperature dependence, are dictated to a significant extent by the properties of hydrogen bonds. From an ecological perspective, the important properties of liquid water include its high latent heats of fusion and vapourisation, its high specific heat, the ionisation, low dynamic viscosity and high surface tension. The solubility in water of oxygen, carbon dioxide and the calcium carbonate used to build skeletons in many invertebrates groups all increase with d
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