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1

Eckert, E. R. G. Analysis of heat and mass transfer. Washington: Hemisphere Pub. Corp., 1987.

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2

1966-, Robinson Anne Skaja, and Wagner Norman Joseph 1962-, eds. Mass and heat transfer: Analysis of mass contactors and heat exchangers. Cambridge: Cambridge University Press, 2008.

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3

Alifanov, O. M. Inverse heat transfer problems. Berlin: Springer-Verlag, 1994.

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4

An introduction to mass and heat transfer: Principles of analysis and design. New York: John Wiley & Sons, 1998.

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5

Necati, Özışık M., ed. Unified analysis and solutions of heat and mass diffusion. New York: Dover, 1994.

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6

Delgado, J. M. P. Q., Antonio Gilson Barbosa de Lima, and Marta Vázquez da Silva, eds. Numerical Analysis of Heat and Mass Transfer in Porous Media. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012. http://dx.doi.org/10.1007/978-3-642-30532-0.

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7

Barbosa, Lima Antonio Gilson, Silva Marta Vázquez, and SpringerLink (Online service), eds. Numerical Analysis of Heat and Mass Transfer in Porous Media. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

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8

Shang, De-Yi. Free Convection Film Flows and Heat Transfer: Laminar free Convection of Phase Flows and Models for Heat-Transfer Analysis. 2nd ed. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

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9

Luo, Lingai. Heat and Mass Transfer Intensification and Shape Optimization: A Multi-scale Approach. London: Springer London, 2013.

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10

Yarin, L. P. The Pi-Theorem: Applications to Fluid Mechanics and Heat and Mass Transfer. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

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11

Shilyaev, Mihail, Elena Hromova, Aleksandr Bogomolov, A. Pavlenko, and V. Butov. Modeling of hydrodynamics and heat and mass transfer in dispersed media. ru: INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1865376.

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The monograph presents methods for calculating the dehydration of wet granular materials in industrial centrifuges, filter presses and vacuum filters under the influence of gravitational forces, as well as by purging the granular layer with dry air with elevated temperature; physical and mathematical models of gas absorption and the theory of capturing submicron dust by condensation in foam, centrifugal bubbling apparatus and hollow nozzle scrubbers, packing columns and tubular absorbers; physical and mathematical models of dry adsorption of gases in packing columns and flues by injecting a dispersed adsorbent into the flow are presented, a method for determining the phase equilibrium constants of sorption processes based on the developed models is proposed; physical and mathematical modeling and analysis of the combustion process of dispersed solid ash fuel in a four-stage cyclone gorenje is carried out. the furnace. It can be useful in the educational process for a number of specialties, in particular thermal power engineering, chemical-technological, metallurgical profiles, environmentalists, as well as for researchers and graduate students and in engineering practice.
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12

American Society of Mechanical Engineers. Winter Meeting. Second-law analysis in heat/mass transfer and energy conversion: Presented at the Winter Annual Meeting of the American Society of Mechanical Engineers, Chicago, Illinois, November 27-December 2, 1988. New York, N.Y. (345 E. 47th St., New York 10017): The Society, 1988.

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13

Meeting, American Society of Mechanical Engineers Winter. Advances in bioheat and mass transfer, 1993: Microscale analysis of thermal injury processes, instrumentation, modeling, clinical applications : presented at the 1993 ASME Winter Annual Meeting, New Orleans, Louisiana, November 28-December 3, 1993. New York, N.Y: American Society of Mechanical Engineers, 1993.

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14

American Society of Mechanical Engineers. Winter Meeting. Second-law analysis in heat/mass transfer and energy conversion: Presented at the Winter Annual Meeting of the American Society of Mechanical Engineers, Chicago, Illinois, November 27-December 2, 1988. New York: American Society of Mechanical Engineers, 1988.

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15

S, El-Genk Mohamed, and United States. National Aeronautics and Space Administration., eds. "HPTAM", a two-dimensional heat pipe transient analysis model, including the startup from a frozen state: Final report no. UNM-ISNPS-4-1995. Albuquerque, N.M: Institute for Space and Nuclear Power Studies, School of Engineering, University of New Mexico, 1995.

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16

Koskinen, Jukka Tapio. Use of population balances and particle size distribution analysis to study particulate processes affected by simultaneous mass and heat transfer an nonuniform flow conditions. Lappeenranta: Lappeenranta University of Technology, 1993.

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17

Gilberto Francisco Martha de Souza. Thermal Power Plant Performance Analysis. London: Springer London, 2012.

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18

service), SpringerLink (Online, ed. Conventional Three-Phase Fixed-Bed Technologies: Analysis and Critique. New York, NY: Springer New York, 2012.

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19

Baehr, Hans Dieter, and Karl Stephan. Heat and Mass Transfer. Berlin, Heidelberg: Springer Berlin Heidelberg, 2006. http://dx.doi.org/10.1007/3-540-29527-5.

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20

Karwa, Rajendra. Heat and Mass Transfer. Singapore: Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-3988-6.

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21

Baehr, Hans Dieter, and Karl Stephan. Heat and Mass Transfer. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-20021-2.

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22

Karwa, Rajendra. Heat and Mass Transfer. Singapore: Springer Singapore, 2017. http://dx.doi.org/10.1007/978-981-10-1557-1.

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23

Baehr, Hans Dieter, and Karl Stephan. Heat and Mass Transfer. Berlin, Heidelberg: Springer Berlin Heidelberg, 1998. http://dx.doi.org/10.1007/978-3-662-03659-4.

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24

Mills, Anthony F. Heat and mass transfer. Burr Ridge, Ill: Irwin, 1995.

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25

Baehr, H. D. Heat and mass transfer. Berlin: Springer, 1998.

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26

Baehr, H. D. Heat and Mass Transfer. Berlin, Heidelberg: Springer-Verlag Berlin Heidelberg, 2011.

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27

White, Frank M. Heat and mass transfer. Reading, Mass: Addison-Wesley, 1988.

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28

Heat and Mass Transfer. London: Taylor and Francis, 2017.

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29

Heat transfer. Oxford: Oxford University Press, 2004.

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30

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

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31

Combustion, heat transfer, and analysis. Warrendale, PA: Society of Automotive Engineers, 1986.

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32

Raju, K. S. N. Fluid Mechanics, Heat Transfer, and Mass Transfer. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2011. http://dx.doi.org/10.1002/9780470909973.

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33

Basic heat and mass transfer. 2nd ed. Upper Saddle River, N.J: Prentice Hall, 1999.

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34

Ghiaasiaan, S. Mostafa. Convective Heat and Mass Transfer. Second edition. | Boca Raton : Taylor & Francis, CRC Press, 2018. | Series: Heat transfer: CRC Press, 2018. http://dx.doi.org/10.1201/9781351112758.

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35

Basic heat and mass transfer. Chicago: Irwin, 1995.

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36

Convective heat and mass transfer. Cambridge: Cambridge University Press, 2011.

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37

Eckert, E. R. G., and Robert M. Jr Drake. Analysis of Heat and Mass Transfer. Springer, 1997.

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38

Eckert & D. Analysis Of Heat And Mass Transfer. CRC, 1986.

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39

Wagner, Norman J., T. W. Fraser Russell, and Anne Skaja Robinson. Mass and Heat Transfer: Analysis of Mass Contactors and Heat Exchangers. Cambridge University Press, 2008.

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40

Russell, Fraser. Mass and Heat Transfer: Analysis of Mass Contactors and Heat Exchangers. Cambridge University Press, 2008.

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41

Wagner, Norman J., T. W. Fraser Russell, and Anne Skaja Robinson. Mass and Heat Transfer: Analysis of Mass Contactors and Heat Exchangers. Cambridge University Press, 2008.

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42

Wagner, Norman J., T. W. Fraser Russell, and Anne Skaja Robinson. Mass and Heat Transfer: Analysis of Mass Contactors and Heat Exchangers. Cambridge University Press, 2012.

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43

Imaging Heat And Mass Transfer Processes Visualization And Analysis. Springer, 2012.

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44

Panigrahi, Pradipta Kumar, and Krishnamurthy Muralidhar. Imaging Heat and Mass Transfer Processes: Visualization and Analysis. Springer London, Limited, 2012.

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45

Panigrahi, Pradipta Kumar, and Krishnamurthy Muralidhar. Imaging Heat and Mass Transfer Processes: Visualization and Analysis. Springer, 2012.

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46

Middleman, Stanley. An Introduction to Mass and Heat Transfer: Principles of Analysis and Design. Wiley, 1997.

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47

Alifanov, Oleg M. Inverse Heat Transfer Problems. Springer, 2012.

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48

Inverse Heat Transfer Problems. Springer, 2012.

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49

Numerical Analysis Of Heat And Mass Transfer In Porous Media. Springer, 2012.

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50

Silva, Marta Vázquez da, J. M. P. Q. Delgado, and Antonio Gilson Barbosa de Lima. Numerical Analysis of Heat and Mass Transfer in Porous Media. Springer Berlin / Heidelberg, 2014.

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