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1

V, Kondratieva M., ed. Differential and difference dimension polynomials. Kluwer Academic, 1999.

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2

Kondratieva, M. V. Differential and Difference Dimension Polynomials. Springer Netherlands, 1999.

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3

Ashyralyev, Allaberen. New Difference Schemes for Partial Differential Equations. Birkhäuser Basel, 2004.

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4

Samarskii, A. A. Difference Schemes with Operator Factors. Springer Netherlands, 2002.

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5

Shishkin, G. I. Difference methods for singular perturbation problems. Chapman & Hall/CRC, 2008.

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6

P, Shishkina Lidia, ed. Difference methods for singular perturbation problems. Chapman & Hall/CRC, 2008.

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7

Dzhamay, Anton, Ken'ichi Maruno, and Christopher M. Ormerod. Algebraic and analytic aspects of integrable systems and painleve equations: AMS special session on algebraic and analytic aspects of integrable systems and painleve equations : January 18, 2014, Baltimore, MD. American Mathematical Society, 2015.

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8

author, Tomarelli Franco, ed. Discrete dynamical models. Springer, 2014.

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9

Ramūnas, Garunkštis, ed. The Lerch zeta-function. Kluwer Academic Publishers, 2002.

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10

Wolfgang, Kliemann, ed. Dynamical systems and linear algebra. American Mathematical Society, 2014.

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11

Difference algebra. Springer, 2008.

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12

Sobolevskii, Pavel E., and Allaberen Ashyralyev. New Difference Schemes for Partial Differential Equations. Springer Basel AG, 2012.

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13

Ibragimov, N. Kh, and L. V. Ovsyannikov. Lectures on the Theory of Group Properties of Differential Equations. World Scientific Publishing Co Pte Ltd, 2013.

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14

Caraballo Carmona, Carlos Manuel, and Francisco Lázaro García Fernández. Methodology of Mathematics Teaching. Treatment to School Mathematics Equations. Editorial Tecnocientífica Americana, 2021. http://dx.doi.org/10.51736/eta2021edu1.

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This book is aimed at pre-university students and its purpose is to contribute to the development of their knowledge related to the algebraic and transcendent equations studied at school, as well as their application to different situations that occur in practice in an innovative and creative way, using the procedures for solving them, so that it allows the consolidation of attitudes such as industriousness, responsibility and science. The system of knowledge worked on and treated didactically in this book is related to the algebraic equations and within them the linear, quadratic, fractional
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15

Mikhalev, A. V., A. B. Levin, E. V. Pankratiev, and M. V. Kondratieva. Differential and Difference Dimension Polynomials (Mathematics and Its Applications). Springer, 1998.

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16

PhD, J. N. Kapur. Mathematical Modeling. Mercury Learning and Information, 2023.

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17

Kapur, J. N. Mathematical Modeling. Mercury Learning & Information, 2023.

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18

Kapur, J. N. Mathematical Modeling. Mercury Learning & Information, 2023.

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19

Rajeev, S. G. Fluid Mechanics. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198805021.001.0001.

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Starting with a review of vector fields and their integral curves, the book presents the basic equations of the subject: Euler and Navier–Stokes. Some solutions are studied next: ideal flows using conformal transformations, viscous flows such as Couette and Stokes flow around a sphere, shocks in the Burgers equation. Prandtl’s boundary layer theory and the Blasius solution are presented. Rayleigh–Taylor instability is studied in analogy with the inverted pendulum, with a digression on Kapitza’s stabilization. The possibility of transients in a linearly stable system with a non-normal operator
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20

Kunz, Ernst. Kähler Differentials. Vieweg Verlag, Friedr, & Sohn Verlagsgesellschaft mbH, 2013.

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21

High accuracy solutions of incompressible Navier-Stokes equations. NASA, 1990.

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22

A, Davis James. Finite Fields and Their Applications: Proceedings of the 14th International Conference on Finite Fields and Their Applications, Vancouver, June 3-7 2019. de Gruyter GmbH, Walter, 2020.

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23

Finite Fields and Their Applications: Proceedings of the 14th International Conference on Finite Fields and Their Applications, Vancouver, June 3-7 2019. de Gruyter GmbH, Walter, 2020.

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24

Interactive Mathematics Year 2: Is There Really a Difference? (Interactive Mathematics Program). Key Curriculum Press, 1998.

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25

Shishkin, Grigory I. Difference Methods for Singular Perturbation Problems (Chapman and Hall /Crc Monographs and Surveys in Pure and Applied Mathematics). Chapman & Hall/CRC, 2008.

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26

Discrete Painleve Equations. American Mathematical Society, 2019.

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27

Algebraic And Geometric Aspects Of Integrable Systems And Random Matrices Ams Special Session Algebraic And Geometric Aspects Of Integrable Systems And Random Matrices January 67 2012 Boston Ma. American Mathematical Society, 2013.

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28

Székelyhidi, László. Discrete Spectral Synthesis and Its Applications. Springer Netherlands, 2014.

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29

Discrete Spectral Synthesis and Its Applications. Springer, 2006.

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30

Discrete Spectral Synthesis and Its Applications. Springer London, Limited, 2006.

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31

Draganov, Alexandr. Mathematical Tools for Real-World Applications. The MIT Press, 2022. http://dx.doi.org/10.7551/mitpress/14218.001.0001.

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Techniques for applying mathematical concepts in the real world: six rarely taught but crucial tools for analysis, research, and problem-solving. Many young graduates leave school with a solid knowledge of mathematical concepts but struggle to apply these concepts in practice. Real scientific and engineering problems are different from those found in textbooks: they are messier, take longer to solve, and standard solution recipes might not apply. This book fills the gap between what is taught in the typical college curriculum and what a practicing engineer or scientist needs to know. It presen
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32

Differential Galois Theory Through Riemann-Hilbert Correspondence: An Elementary Introduction. American Mathematical Society, 2017.

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33

Lerch Zeta-Function. Springer, 2010.

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34

Garunkstis, Ramunas, and Antanas Laurincikas. Lerch Zeta-Function. Springer, 2013.

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