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1

Al-Ahmadi, Adel Bin Musaed Sulaiman. Electrohydrodynamic (EHD) enhancement of condensation heat transfer - development of correlation for heat transfer coefficient for tubular systems. Birmingham: University of Birmingham, 2003.

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2

Nazeri, Habib. The measurement of the heat transfer coefficient between cryolite and ledge. Ottawa: National Library of Canada, 1994.

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3

Cleary, Noel. Heat transfer coefficients as applied to the thermal processing of food products. Dublin: University College Dublin, 1998.

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4

Heidmann, James D. Determination of a transient heat transfer property of acrylic using thermochromic liquid crystals. [Washington, DC]: National Aeronautics and Space Administration, 1994.

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5

Poinsatte, Philip E. Convective heat transfer measurements from a NACA 0012 airfoil in flight and in the NASA Lewis icing research tunnel. [Washington, D.C.]: NASA, 1990.

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6

Poinsatte, Philip E. Convective heat transfer measurements from a NACA 0012 airfoil in flight and in the NASA Lewis icing research tunnel. [Washington, D.C.]: NASA, 1990.

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7

Rigby, D. L. Heat transfer in a complex trailing edge passage for a high pressure turbine blade. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 2002.

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8

Solar technologies for buildings. Chichester: Wiley, 2003.

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9

Eicker, Ursula. Solar Technologies for Buildings. New York: John Wiley & Sons, Ltd., 2006.

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10

Heat transfer. 6th ed. New York: McGraw-Hill Book Co., 1986.

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11

1950-, Klein Sanford A., ed. Heat transfer. 32 Avenue of the Americas, N.Y., NY: Cambridge University Press, 2008.

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12

Heat transfer. 2nd ed. Upper Saddle River, N.J: Prentice Hall, 1999.

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13

Heat transfer. Dubuque, Iowa: W.C. Brown, 1985.

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14

Heat transfer. Oxford: Oxford University Press, 2004.

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15

S, White P. R., ed. Heat transfer. 7th ed. London: McGraw-Hill, 1992.

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16

Heat transfer. New York: Wiley, 1993.

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17

Heat transfer. 2nd ed. New Delhi: Oxford University Press, 2012.

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18

Heat transfer. New York: John Wiley & Sons, Inc., 1993.

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19

Mills, Anthony F. Heat transfer. Homewood, IL: Irwin, 1992.

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20

Heat transfer. Englewood Cliffs, N.J: PTR Prentice Hall, 1993.

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21

Heat transfer. Englewood Cliffs, N.J: Prentice Hall, 1991.

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22

Heat transfer. 7th ed. New York: McGraw-Hill, 1990.

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23

Thomas, Lindon C. Heat transfer. Englewood Cliffs, N.J: Prentice-Hall, 1991.

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24

Heat transfer. Dubuque, IA: McGraw-Hill, 2009.

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25

Thomas, Lindon C. Heat transfer. London: Prentice Hall, 1992.

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26

Holman, J. P. Heat transfer. London: McGraw Hill, 1992.

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27

Heat transfer. 9th ed. New York: McGraw-Hill, 2002.

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28

Becker, Martin. Heat Transfer. Boston, MA: Springer US, 1986. http://dx.doi.org/10.1007/978-1-4684-1256-7.

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29

Holman, J. P. Heat transfer. Singapore: McGraw-Hill, 1989.

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30

von Böckh, Peter, and Thomas Wetzel. Heat Transfer. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012. http://dx.doi.org/10.1007/978-3-642-19183-1.

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31

Wrobel, L. C., and C. A. Brebbia, eds. Heat Transfer. Berlin, Boston: De Gruyter, 1991. http://dx.doi.org/10.1515/9783110853209.

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32

Korea-US Seminar on Thermal Engineering and High Technology (1986 Seoul, Korea). Heat transfer. Washington: Hemisphere Pub. Corp., 1988.

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33

Winterton, R. H. S. Heat transfer. Oxford: Oxford University Press, 1997.

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34

Taine, Jean. Heat transfer. London: Prentice-Hall International, 1993.

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35

1942-, Petit Jean-Pierre, ed. Heat transfer. New York: Prentice Hall, 1993.

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36

Holman, J. P. Heat transfer. 8th ed. New York: McGraw-Hill Companies, 1997.

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37

Venkateshan, S. P. Heat Transfer. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-58338-5.

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38

Impact of the heat transfer coefficient on pressurized thermal shock. Washington, DC: Division of Systems Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1999.

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39

T, Dickson, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Technology, and Oak Ridge National Laboratory, eds. Impact of the heat transfer coefficient on pressurized thermal shock. Washington, DC: Division of Systems Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1999.

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40

Carletti, Horazio G. Determination of metal-mold heat transfer coefficient for aluminum alloys. 2006.

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41

Lester, Donald J. Jr. Indirect measurement of local condensing heat-transfer coefficient around horizontal finned tubes. 1987.

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42

Transient liquid-crystal technique used to produce high-resolution convective heat-transfer-coefficient maps. [Washington, DC: National Aeronautics and Space Administration, 1993.

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43

E, Poinsatte Philip, and United States. National Aeronautics and Space Administration., eds. Transient liquid-crystal technique used to produce high-resolution convective heat-transfer-coefficient maps. [Washington, DC: National Aeronautics and Space Administration, 1993.

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44

E, Poinsatte Philip, and United States. National Aeronautics and Space Administration., eds. Transient liquid-crystal technique used to produce high-resolution convective heat-transfer-coefficient maps. [Washington, DC: National Aeronautics and Space Administration, 1993.

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45

E, Poinsatte Philip, and United States. National Aeronautics and Space Administration., eds. Transient liquid-crystal technique used to produce high-resolution convective heat-transfer-coefficient maps. [Washington, DC: National Aeronautics and Space Administration, 1993.

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46

A, Hippensteele Steven, and Lewis Research Center, eds. High-resolution heat-transfer-coefficient maps applicable to compound-curve surfaces using liquid crystals in a transient wind tunnel. Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1988.

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47

A, Hippensteele Steven, and Lewis Research Center, eds. High-resolution heat-transfer-coefficient maps applicable to compound-curve surfaces using liquid crystals in a transient wind tunnel. Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1988.

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48

A, Hippensteele Steven, and Lewis Research Center, eds. High-resolution heat-transfer-coefficient maps applicable to compound-curve surfaces using liquid crystals in a transient wind tunnel. Cleveland, Ohio: National Aeronautics and Space Administration, Lewis Research Center, 1988.

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49

L, Rigby David, and Lewis Research Center, eds. Heat transfer on a film-cooled blade: Effect of hole physics : prepared under contract NAS3-27571. [Cleveland, Ohio]: National Aeronautics and Space Administration, Lewis Research Center, 1998.

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50

L, Rigby David, and Lewis Research Center, eds. Heat transfer on a film-cooled blade: Effect of hole physics : prepared under contract NAS3-27571. [Cleveland, Ohio]: National Aeronautics and Space Administration, Lewis Research Center, 1998.

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