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1

Jiang, L. Y. Turbulent mixing in supersonic high-temperature exhaust jets. North York, Ont: Institute for Aerospace Studies, University of Toronto, 1996.

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2

Stradomskiĭ, M. V. Optimal temperature conditions in the design of diesel engines. New York: Begell House, 1995.

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3

Bakker, Anton. High-accuracy CMOS smart temperature sensors. Boston, MA: Kluwer Academic Publishers, 2000.

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4

Thielbar, Melinda. The kung fu puzzle: A mystery with time and temperature. Minneapolis: Graphic Universe, 2009.

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5

Eurotherm, Seminar (58th 1997 Nantes France). Thermal management of electronic systems III: Proceedings of the Eurotherm Seminar 58, September 24-26, 1997, Nantes, France. Paris: Elsevier, 1998.

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6

International, Workshop on Electronic Properties and Mechanisms of High Tc Superconductors (1991 Tsukuba Kenkyū Gakuen Toshi Japan). Electronic properties and mechanisms of high Tc superconductors: Proceedings of the International Workshop on Electronic Properties and Mechanisms of High Tc Superconductors, Tsukuba, Japan, 29-31 July 1991. Amsterdam: North-Holland, 1992.

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7

1942-, Horton C. W., Wootton A, and Wakatani Masahiro, eds. U.S.-Japan Workshop on Ion Temperature Gradient-Driven Turbulent Transport: Austin, TX 1993. New York: AIP Press, 1994.

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8

1922-, Fujita Hiroshi, ed. Proceedings of the Ninth International Congress on Mathematical Education: 2000 Makuhari, Japan. Norwell, Mass: Kluwer Academic, 2004.

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9

International ASM Conference on High Temperature Aluminides and Intermetallics (2nd 1991 San Diego, Calif.). High temperature aluminides and intermetallics: Proceedings of the Second International ASM Conference on High Temperature Aluminides and Intermetallics, September 16-19, 1991, San Diego, CA, USA. Edited by Whang Sung-Hyun 1936-, Pope D. P, Liu C. T. 1937-, and ASM International. London: Elsevier Applied Science, 1992.

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10

L, Heiras Jesus, Sansores L. E, and Valladares A. A, eds. Superconducting ceramics: XII Winter Meeting on Low Temperature Physics, Vista Hermosa, Morelos, México, 13-16 January, 1991. Singapore: World Scientific, 1991.

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11

International Conference on Ferrites (5th 1989 Bombay, India). Advances in ferrites: Proceedings of the fifth International Conference on Ferrites, January 10-13, 1989, Bombay, India. Edited by Srivastava C. M, Patni M. J, and Indian Institute of Technology, Bombay. New Delhi: Oxford & IBH Pub. Co., 1989.

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12

Gavroglou, Kōstas. Methodological aspects of the development of low temperature physics, 1881-1956: Concepts out of context(s). Dordrecht, The Netherlands: Kluwer Academic Publishers, 1989.

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13

Beijing International Workshop on High Temperature Superconductivity (1987 Peking, China). Proceedings of the Beijing International Workshop on High Temperature Superconductivity: Beijing, P.R. China, 29 June-1 July 1987. Edited by Gan Z. Z. Singapore: World Scientific, 1987.

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14

Conference on Critical Issues in the Development of High Temperature Structural Materials (1993 Kailua Kona, Hawaii). Critical issues in the development of high temperature structural materials: Proceedings from the Conference on Critical Issues in the Development of High Temperature Structural Materials, held in Kona, Hawaii, March 7-14, 1993. Warrendale, Pa: Minerals, Metals & Materials Society, 1993.

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15

Meeting, COSPAR Plenary. Global change and space observations: Proceedings of symposium A2 of the COSPAR twenty-ninth Plenary Meeting held in Washington, DC, U.S.A., 28 August-5 September, 1992. Oxford: Published for The Committee on Space Research by Pergamon Press, 1993.

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16

DaCosta, Herbert. Rate constant estimation for thermal reactions: Methods and applications. Hoboken, N.J: Wiley, 2012.

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17

CCAST (World Laboratory) Symposium/Workshop (1994 Beijing, China). High Tc̳ superconductivity and the C₆₀ family: Proceedings of the CCAST (World Laboratory) Symposium/Workshop held at China Center of Advanced Science and Technology (World Laboratory), Beijing, People's Republic of China, May 23-June 2, 1994. Luxembourg: Gordon and Breach, 1995.

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18

International Symposium on Heat and Mass Transfer under Plasma Conditions (1st 1994 Çeşme, Turkey). Heat and mass transfer under plasma conditions: Proceedings of International Symposium on Heat and Mass Transfer under Plasma Conditions. New York: Begell House, 1995.

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19

International High Temperature Electronics Conference (4th 1998 Albuquerque, N.M.). 1998 Fourth International High Temperature Electronics Conference: HITEC, Albuquerque, New Mexico, USA, June 14-18, 1998. New York City, NY: The Institute of Electrical and Electronics Engineers, Inc., 1998.

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20

Finite temperature field theory. Singapore: World Scientific, 1997.

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21

G, Baskaran, ed. Proceedings of the Anniversary Adriatico Research Conference and Workshop on Strongly Correlated Electron Systems. Singapore: World Scientific, 1990.

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22

Stephan, K. Thermal conductivity and viscosity data of fluid mixtures. [Frankfurt/Main]: Dechema, 1988.

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23

International Conference on Radiative Properties of Hot Dense Matter. (4th 1990 Sarasota, Fla.). Radiative properties of hot dense matter: Proceedings of the 4th International Workshop, October 22, 1990, Sarasota, Florida. Singapore: World Scientific, 1991.

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24

Chubb, Donald L. Rare earth optical temperature sensor. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2000.

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25

Chubb, Donald L. Rare earth optical temperature sensor. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2000.

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26

Ferreira, Rodger F. Development of thermal models for Hungry Horse Reservoir and Lake Koocanusa, northwestern Montana and British Columbia. Helena, Mont: U.S. Dept. of the Interior, U.S. Geological Survey, 1992.

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27

Institut vysokikh temperatur (Akademii͡a nauk SSSR). Teoreticheskiĭ otdel. Report of Theoretical Department, 1989-1990. Moscow: USSR Academy of Sciences, Institute for High Temperatures, 1991.

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28

Gafiychuk, V. Mathematical description of heat transfer in living tissue. Lviv, Ukraine: VNTL Publishers, 1999.

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29

Bažant, Z. P. Concrete at high temperatures: Material properties and mathematical models. Harlow: Longman, 1996.

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30

Caissie, Daniel. Modelling water temperatures at depths within the stream substrate of Catamaran Brook (NB): Potential implication of climate change. Moncton, NB: Dept. of Fisheries and Oceans, Gulf Fisheries Centre, Science Branch, Diadromous Fish Division, 2001.

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31

Cooper, Leonard Y. The buoyant plume-driven adiabatic ceiling temperature revisited. Gaithersburg, MD: U.S. Dept. of Commerce, National Bureau of Standards, 1985.

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32

Cooper, Leonard Y. The buoyant plume-driven adiabatic ceiling temperature revisited. Gaithersburg, MD: U.S. Dept. of Commerce, National Bureau of Standards, 1985.

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33

Measures (Mathematics Links). Heinemann Library, 1999.

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34

Brewer, D. F. Progress in Low Temperature Physics. Elsevier Science Ltd, 1986.

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35

Brewer, D. F. Progress in Low Temperature Physics. Elsevier Science Publishing Company, 1990.

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36

Brewer, D. F. Progress in Low Temperature Physics. Elsevier Science Publishing Company, 1991.

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37

F, Brewer D., ed. Progress in low temperature physics. North-Holland, 1989.

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38

Progress in Low Temperature Physics. Elsevier Science Ltd, 1987.

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39

(Editor), Z. Z. Gan, and G. J. Cui (Editor), eds. High Temperature Superconductivity (Series on Progress in High Temperature Superconductivity). World Scientific Publishing Co Pte Ltd, 1987.

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40

Stradomskii, M. V., and E. A. Maksimov. Optimal Temperature Conditions in the Design of Diesel Engines. Begell House, 2000.

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41

Lee, Peter W., W. E. Frazier, and M. J. Koczak. Low Density, High Temperature Powder Metallurgy Alloys. Tms, 1990.

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42

E, Frazier William, Koczak Michael J, Lee Peter W, and Minerals, Metals and Materials Society. Fall Meeting, eds. Low density, high temperature powder metallurgy alloys. Warrendale, Pa: Minerals, Metals, & Materials Society, 1991.

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43

Evans, A. G., S. G. Fishman, F. D. Lemkey, and J. R. Strife. High Temperature/High Performance Composites: Volume 120. University of Cambridge ESOL Examinations, 2014.

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44

Sherwood, Dennis, and Paul Dalby. Thermodynamics and mathematics. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198782957.003.0004.

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Abstract:
Most school mathematics is about how one variable, y, varies with respect to one other variable, x, according to an equation such as y = 3x2. Equations like this underpin the student’s knowledge of algebra, and differential and integral calculus. Thermodynamics, however, is necessarily about how a variable, such as the pressure P, varies with respect not to one but to three variables simultaneously – for example, the mole number n, the volume V, and the temperature T. This makes the algebra of thermodynamics more complex, and also implies that mutual changes between pairs of variables is described not in terms of total derivatives of the form dy/dx, but rather by partial derivatives of the form (∂P/∂T)V. Many students find the leap from dy/dx to (∂P/∂T)V very difficult - the purpose of this chapter is therefore to build the reader’s confidence in understanding, and manipulating, functions of two and three variables.
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45

Whang, S. H., and D. P. Pope. High Temperature Aluminides and Intermetallics. Elsevier Science & Technology, 1993.

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46

Symmetry and Heterogeneity in High Temperature Superconductors (NATO Science Series II: Mathematics, Physics and Chemistry). Springer, 2006.

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47

Bianconi, Antonio. Symmetry and Heterogeneity in High Temperature Superconductors (NATO Science Series II: Mathematics, Physics and Chemistry). Springer, 2006.

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48

Schneider, T. R., D. T. Shaw, and C. C. Tsuei. Layered Superconductors: Fabrication, Properties and Applications : Symposium Held April 27-May 1, 1992, San Francisco, California, U.S.A. (Materials Research Society Symposium Proceedings). Materials Research Society, 1992.

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49

T, Shaw D., ed. Layered superconductors: Fabrication, properties, and applications : symposium held April 27-May 1, 1992, San Francisco, California, U.S.A. Pittsburgh, Pa: Materials Research Society, 1992.

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50

(Editor), Q.-S. Yang, ed. Proceedings of the Beijing International Workshop on High Temperature Superconductivity (World Scientific Series on Progress in High Temperature Supe). World Scientific Pub Co Inc, 1987.

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