Books on the topic 'Integro-Differential'

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1

Lakshmikantham, V. Theory of integro-differential equations. Lausanne, Switzerland: Gordon and Breach Science Publishers, 1995.

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2

Grigoriev, Yurii N., Nail H. Ibragimov, Vladimir F. Kovalev, and Sergey V. Meleshko. Symmetries of Integro-Differential Equations. Dordrecht: Springer Netherlands, 2010. http://dx.doi.org/10.1007/978-90-481-3797-8.

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3

1952-, Kalitvin Anatolij S., and Zabreĭko P. P. 1939-, eds. Partial integral operators and integro-differential equations. New York: M. Dekker, 2000.

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4

Singh, Harendra, Hemen Dutta, and Marcelo M. Cavalcanti, eds. Topics in Integral and Integro-Differential Equations. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-65509-9.

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5

Voronina, N. V. Integrodifferent︠s︡ialʹnye uravnenii︠a︡ i ikh prilozhenii︠a︡. Permʹ: Izd-vo Permskogo universiteta, 1995.

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6

Imanaliev, M. I. Nelineĭnye integro-differens͡s︡ialʹnye uravnenii͡a︡ s chastnymi proizvodnymi. Bishkek: "Ilim", 1992.

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7

Tang, Arsalang. Analysis and numerics of delay Volterra integro-differential equations. Manchester: University of Manchester, 1995.

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8

Billings, S. A. Mapping nonlinear integro-differential equations into the frequency domain. Sheffield: University of Sheffield, Dept. of Control Engineering, 1989.

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9

Garroni, M. G. Green functions for second order parabolic integro-differential problems. Burnt Mill, Harlow, Essex, England: Longman Scientific & Technical, 1992.

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10

Theory of functionals and of integral and integro-differential equations. Mineola, N.Y: Dover Publications, 2005.

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11

Morchało, Jarosław. O stabilności i asymptotycznym zachowaniu się rozwiązań równań różniczkowych i różniczkowo-całkowych. Poznań: Wydawn. Politechniki Poznańskiej, 1987.

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12

Kharlamova, E. I. Integrodifferent͡s︡ialʹnoe uravnenie dinamiki tverdogo tela. Kiev: Nauk. dumka, 1986.

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13

Gabdulkhaev, B. G. Pri͡amye metody reshenii͡a singuli͡arnykh integralʹnykh uravneniĭ pervogo roda: Chislennyĭ analiz. Kazanʹ: Izd-vo Kazanskogo universiteta, 1994.

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14

Foltyńska, Izabela. Oscillatory solutions to systems of nonlinear integrodifferential equations with deviating arguments. Poznań: Wydawn. Politechniki Poznańskiej, 1993.

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15

Kostin, G. V. Integrodifferential relations in linear elasticity. Berlin: De Gruyter, 2012.

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16

Volterra integral and differential equations. 2nd ed. Boston: Elsevier, 2005.

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17

Symmetries of integro-differential equations: With applications in mechanics and plasma physics. Dordrecht: Springer, 2010.

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18

Jumarhon, B. High order product integration methods for a nonlinear Volterra integro-differential equation. Salford: University of Salford Department of Mathematics and Computer Science, 1995.

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19

O'Regan, Donal. Existence theory for nonlinear integral and integrodifferential equations. Dordrecht: Kluwer Academic Press, 1998.

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20

Chisti͡akov, V. F. Algebro-different͡sialʹnye operatory s konechnomernym i͡adrom. Novosibirsk: "Nauka", Sibirskai͡a izdatelʹskai͡a firma RAN, 1996.

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21

Ozeret͡skovskiĭ, V. B. Ri͡ady Teĭlora kak metod reshenii͡a different͡sialʹnykh, integralʹnykh i integro-different͡sialʹnykh uravneniĭ matematicheskoĭ fiziki. Moskva: [s.n.], 1994.

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22

Tsimin, Shih, ed. Finite element methods for integrodifferential equations. Singapore: World Scientific, 1998.

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23

Integrodifferent͡s︡ialʹnye uravnenii͡a︡ v dinamike ti͡a︡zheloĭ sloistoĭ zhidkosti. Moskva: Nauka, Fizmatlit, 1996.

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24

Computational electrodynamics: The finite-difference time-domain method. Boston: Artech House, 1995.

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25

C, Hagness Susan, ed. Computational electrodynamics: The finite-difference time-domain method. 3rd ed. Boston: Artech House, 2005.

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26

C, Hagness Susan, ed. Computational electrodynamics: The finite-difference time-domain method. 2nd ed. Boston: Artech House, 2000.

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27

Allen, Taflove, ed. Computational electromagnetics. Boston: Artech House, 1993.

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28

Yeffet, Amir. A non-dissipative staggered fourth-order accurate explicit finite difference scheme for the time-domain Maxwell's equations. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1999.

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29

Yeffet, Amir. A non-dissipative staggered fourth-order accurate explicit finite difference scheme for the time-domain Maxwell's equations. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1999.

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30

Yeffet, Amir. A non-dissipative staggered fourth-order accurate explicit finite difference scheme for the time-domain Maxwell's equations. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1999.

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31

Yeffet, Amir. A non-dissipative staggered fourth-order accurate explicit finite difference scheme for the time-domain Maxwell's equations. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1999.

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32

Yeffet, Amir. A non-dissipative staggered fourth-order accurate explicit finite difference scheme for the time-domain Maxwell's equations. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1999.

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33

Southeast Geometry Seminar (15th 2009 University of Alabama at Birmingham). Geometric analysis, mathematical relativity, and nonlinear partial differential equations: Southeast Geometry Seminars Emory University, Georgia Institute of Technology, University of Alabama, Birmingham, and the University of Tennessee, 2009-2011. Edited by Ghomi Mohammad 1969-. Providence, Rhode Island: American Mathematical Society, 2013.

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34

Kostic, Marko. Abstract Volterra Integro-Differential Equations. Taylor & Francis Group, 2015.

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35

Abstract Volterra Integro-Differential Equations. Taylor & Francis Group, 2015.

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36

Ibragimov, N. Kh, Sergey V. Meleshko, and Yurii N. Grigoriev. Symmetries of Integro-Differential Equations. Springer, 2010.

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37

Kostic, Marko. Abstract Volterra Integro-Differential Equations. Taylor & Francis Group, 2015.

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38

W, Iliff Kenneth, and Dryden Flight Research Facility, eds. Identification of unsteady aerodynamics and aeroelastic integro-differential systems. Edwards, Calif: National Aeronautics and Space Administration, Ames Research Center, Dryden Flight Research Facility, 1985.

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39

Kostić, Marko. Almost Periodic and Almost Automorphic Solutions to Integro-Differential Equations. De Gruyter, Inc., 2019.

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40

Second Order Elliptic Integro-Differential Problems (Research Notes in Mathematics Series). Chapman & Hall/CRC, 2002.

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41

V, Vasilʹev O., and Irkutskiĭ vychislitelʹnyĭ t͡s︡entr, eds. Algebro-different͡s︡ialʹnye sistemy i metody ikh reshenii͡a︡: Sbornik nauchnykh trudov. Novosibirsk: VO "Nauka", 1993.

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42

Neta, Beny, T. Jangveladze, and Z. Kiguradze. Numerical Solutions of Three Classes of Nonlinear Parabolic Integro-Differential Equations. Elsevier Science & Technology Books, 2015.

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43

Partial Integral Operators and Integro-Differential Equations: Pure and Applied Mathematics. CRC, 2000.

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44

Numerical Solutions of Three Classes of Nonlinear Parabolic Integro-Differential Equations. Elsevier, 2016. http://dx.doi.org/10.1016/c2015-0-01583-0.

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45

Cho, Yeol Je, Jiang Zhu, and Dajun Guo. Partial Ordering Methods In Nonlinear Problems. Nova Science Publishers, 2004.

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46

(Editor), Ravi P. Agarwal, and Donal O'Regan (Editor), eds. Integral and Integrodifferential Equations: Theory, Methods and Applications (Series in Mathematical Analysis and Applications, Volume 2). CRC, 2000.

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47

P, Agarwal Ravi, O'Regan Donal, and Hammerlin G. 1928-, eds. Integral and integrodifferential equations: Theory, methods, and applications. Amsterdam: Gordon and Breach Science Publishers, 2000.

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48

Giuseppe, Da Prato, Iannelli Mimmo, Consiglio nazionale delle ricerche (Italy), and Istituto trentino di cultura, eds. Volterra integrodifferential equations in Banach spaces and applications. Harlow, Essex, England: Longman Scientific & Technical, 1989.

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49

V, Ulitin R., and Institut geofiziki (Rossiĭskai͡a︡ akademii͡a︡ nauk), eds. Teorii͡a︡ i praktika ėlektromagnitnykh metodov geofizicheskikh issledovaniĭ: Sbornik nauchnykh trudov. Ėkaterinburg: "Nauka," Uralʹskoe otd-nie, 1992.

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50

Ruban, Anatoly I. Marginal Separation Theory. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199681754.003.0006.

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Chapter 5 discusses the ‘short separation bubble’ that forms at the leading edge of an aerofoil when the angle of attack reaches a certain value. It then suggests that the process of the formation of the bubble is described by the Marginal Separation theory, which represents a special version of the triple-deck theory. It then covers how, in this case, the viscous-inviscid interaction problem may be reduced to an integro-differential equation for the skin friction. It discusses how by solving this equation not only the transition from attached to separated flow in the boundary layer be predicted, but also the well-known phenomenon of the ‘bubble bursting’ that leads to a sudden loss of the lift produced by an aerofoil.
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