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      by 
      Sun, Jian-Qiao.
      Format: 
      Excerpt: 
      MATHEMATICS -- Differential Equations -- General.
      by 
      Mennicken, Reinhard.
      Format: 
      Excerpt: 
      MATHEMATICS -- Differential Equations -- General.
      by 
      International Symposium on Inverse Problems (1998 : Nagano-shi, Japan)
      Format: 
      Excerpt: 
      Inverse problems (Differential equations) -- Congresses.
      by 
      Shyy, W. (Wei)
      Format: 
      Excerpt: 
      Differential equations -- Numerical solutions.
      by 
      Babin, A. V. (Anatoliĭ Vladimirovich)
      Format: 
      Excerpt: 
      MATHEMATICS -- Differential Equations -- Partial.
      by 
      Broer, H. W. (Hendrik Wolter), 1950-
      Format: 
      Excerpt: 
      MATHEMATICS -- Differential Equations -- Ordinary.
      by 
      Menke, William.
      Format: 
      Excerpt: 
      Inverse problems (Differential equations) -- Numerical solutions.
      by 
      Günther, Paul, 1926-
      Format: 
      Excerpt: 
      Differential equations, Hyperbolic.
      by 
      Bernfeld, Stephen R.
      Format: 
      Excerpt: 
      MATHEMATICS -- Differential Equations -- General.
      by 
      Guinot, Vincent.
      Format: 
      Excerpt: 
      Differential equations, Hyperbolic -- Numerical solutions.
      by 
      Jager, E. M. de (Eduardus Marie de)
      Format: 
      Excerpt: 
      MATHEMATICS -- Differential Equations -- General.
      by 
      Moore, Ramon E.
      Format: 
      Excerpt: 
      matrices -- Interval Newton methods -- Integration of interval functions -- Integral and differential
      by 
      Abels, H. (Helmut)
      Format: 
      Excerpt: 
      operators -- pt. 3. Applications to function space and differential equations -- pt. 4. Appendix.
      by 
      Krupka, D.
      Format: 
      Excerpt: 
      -- pt. III. Differential equations and geometrical structures -- pt. IV. Appendix.
      by 
      McMahon, David (David M.)
      Format: 
      Excerpt: 
      . Ordinary differential equations -- Ch. 5. Transforms -- Ch. 6. Integration -- Ch. 7. Special functions.
      by 
      Duffy, Daniel J.
      Format: 
      Excerpt: 
      equations -- Programming the black-scholes environment -- Design patterns -- Design and deployment issues.
      by 
      Reddy, J. N. (Junuthula Narasimha), 1945
      Format: 
      Excerpt: 
      element models of second-order differential equations -- Applications to 1-D heat transfer and fluid and
      by 
      Dobrev, V. K., author.
      Format: 
      Excerpt: 
      vectors, and conditionally invariant equations -- Invariant differential operators for noncompact Lie
      by 
      Geveci, Tunc., author.
      Format: 
      Excerpt: 
      2. Differential equations for acceleration and curvature -- Acceleration -- The moving frame -- Arc
      by 
      Yevick, David, author.
      Format: 
      Excerpt: 
      -- Probability theory and statistics -- Complex analysis -- Differential equations -- Transform theory -- Partial
      by 
      Siauw, Timmy, author.
      Format: 
      Excerpt: 
      Differentiation -- Numerical Integration -- Ordinary Differential Equations (ODEs).
      by 
      Chin, Eric, 1971- author.
      Format: 
      Excerpt: 
      Differential equations formulae -- Bibliography -- Notation.
      by 
      Lindfield, G. R. (George R.)
      Format: 
      Excerpt: 
      Solution of Non-linear Equations Differentiation and Integration Solution of Differential Equations
      by 
      Casteren, J. A. van.
      Format: 
      Excerpt: 
      pt. 1. Introduction -- pt. 2. Strong Markov processes -- pt. 3. Backward stochastic differential
      by 
      Prakasa Rao, B. L. S.
      Format: 
      Excerpt: 
      stochastic processes modeled by stochastic differential equations driven by fractional Brownian motion. Other
      by 
      Crannell, Annalisa, author.
      Format: 
      Excerpt: 
      levels (pre-calculus through differential equations).
      by 
      Dieudonné, Jean, 1906-1992.
      Format: 
      Excerpt: 
      -order differential equations, elementary local theory of differential systems -- Lie groups and lie algebras
      by 
      Kolchin, E. R. (Ellis Robert), 1916-
      Format: 
      Excerpt: 
      basis theorem and some related topics -- Algebraic differential equations -- Algebraic groups -- Galois
      by 
      Ortega, James M., 1932-
      Format: 
      Excerpt: 
      algebraic equations -- 3. Eigenvalues and eigenvectors -- 4. Differential and difference equations -- pt. II
      by 
      Khabaza, I. M. (Ishaq Murad)
      Format: 
      Excerpt: 
      differential equations.
      by 
      LaSalle, Joseph P.
      Format: 
      Excerpt: 
      Geometrie concepts : vectors and matrices -- Differential equations -- Application of Liapunov
      by 
      Shoemaker, Katherine, author.
      Format: 
      Excerpt: 
      In this thesis, we study a system of differential equations that are used to model the material
      by 
      Vorderwülbecke, Sophia, author.
      Format: 
      Excerpt: 
      In this thesis nonlinear differential equations containing advection, reaction and diffusion terms
      by 
      Garcia, Xavier, author.
      Format: 
      Excerpt: 
      differential equations as established in Fyodorov. We use this link to establish asymptotics on the average
      by 
      Dokos, Socrates. author.
      Format: 
      Excerpt: 
      Differential Equations -- Numerical Integration of Ordinary Differential Equations -- Distributed Systems
      by 
      Muscalu, Camil.
      Format: 
      Excerpt: 
      analysis to partial differential equations. The volume concludes with an introduction to the Weyl calculus
      by 
      Muscalu, Camil.
      Format: 
      Excerpt: 
      analysis to partial differential equations. The volume concludes with an introduction to the Weyl calculus
      by 
      Kiusalaas, Jaan.
      Format: 
      Excerpt: 
      of equations, interpolation and data fitting, solution of differential equations, eigenvalue problems
      by 
      Fadali, M. Sami.
      Format: 
      Excerpt: 
      engineering senior. This background includes three semesters of calculus, differential equations and basic
      by 
      Davidson, Ian, 1949-
      Format: 
      Excerpt: 
      differential equations -- Statistical foundations : systems of and higher order stochastic differential
      by 
      Thompson, James R. (James Robert), 1938-
      Format: 
      Excerpt: 
      the shrewd mixture of differential equations, computer-intensive methods, and data in a single
      by 
      Wibmer, Michael, author.
      Format: 
      Excerpt: 
      difference equations. In this approach, a system of ordinary difference equations is encoded in a difference
      by 
      Bovik, Alan C. (Alan Conrad), 1958-
      Format: 
      Excerpt: 
      differential equations for edge detection -- Image quality assessment -- Image watermarking: techniques and
      by 
      Ogawa, Kohei.
      Format: 
      Excerpt: 
      definite and can be expressed by formulas such as differential equations (2) phenomena that can be
      by 
      Ritsumeikan International Symposium (5th : 2005 : Ritsumeikan Daigaku, Japan)
      Format: 
      Excerpt: 
      -- Topics related to gamma processes / M. Yamazato -- On stochastic differential equations driven by
      by 
      Fripp, Archibald L.
      Format: 
      Excerpt: 
      , differential equations, engineering statistics, and partial derivatives. Numerous example engineering problems
      by 
      Tosun, İsmail.
      Format: 
      Excerpt: 
      Generation -- Appendix A: Mathematical Preliminaries -- Appendix B: Solution of Differential Equations
      by 
      Fox, Huw.
      Format: 
      Excerpt: 
      equations; Chapter 6. Laplace transform; Chapter 7. Sequences and series; Chapter 8. Logic gates; Chapter 9
      by 
      Pap, Endre.
      Format: 
      Excerpt: 
      , geometry, differential equations, optimization, variational analysis, decision making and others. The
      by 
      Jekeli, Christopher, 1953-
      Format: 
      Excerpt: 
      Transformations -- Fourier Transforms -- Ordinary Differential Equations -- Linear Differential Equations
      by 
      Farkas, Miklós, 1932-
      Format: 
      Excerpt: 
      -- Appendix 2 Ordinary Differential Equations -- Appendix 3 Partial Differential Equations -- Appendix 4
      by 
      Barbu, Viorel, 1941-
      Format: 
      Excerpt: 
      inequalities -- Nonlinear accretive differential equations -- Optimal control of parabolic variational
      by 
      Ames, William F.
      Format: 
      Excerpt: 
      ; Preface; Chapter 1. Improperly Posed Problems for Nonlinear Partial Differential Equations; Chapter 2
      by 
      Curtis, W. D.
      Format: 
      Excerpt: 
      ; Chapter 4. Differential Equations on Manifolds; Chapter 5. The Tangent and Cotangent Bundles; Chapter 6
      by 
      Arfken, George B. (George Brown), 1922-
      Format: 
      Excerpt: 
      -- Differential equations -- Sturm-Liouville theory--Orthogonal functions -- The gamma function -- Bessel
      by 
      Dieudonné, Jean, 1906-1992.
      Format: 
      Excerpt: 
      . Algebraic and differential topology; Chapter A II. Differential manifolds. Differential geometry; Chapter A
      by 
      Bensoussan, Alain.
      Format: 
      Excerpt: 
      . STOCHASTIC CALCULUS AND STOCHASTIC DIFFERENTIAL EQUATIONS; CHAPTER II. PARTIAL DIFFERENTIAL EQUATIONS
      by 
      Pietsch, A. (Albrecht)
      Format: 
      Excerpt: 
      , global analysis, differential equations on manifolds, and mathematical physics, and for the readers who
      by 
      Fukushima, Masatoshi, 1935-
      Format: 
      Excerpt: 
      , global analysis, differential equations on manifolds, and mathematical physics, and for the readers who
      by 
      Triebel, Hans.
      Format: 
      Excerpt: 
      , global analysis, differential equations on manifolds, and mathematical physics, and for the readers who
      by 
      Rothe, Erich H.
      Format: 
      Excerpt: 
      differential equations.--Sather, D. Branching and stability for nonlinear gradient operators.--Sattinger, D
      by 
      Michel, Anthony N.
      Format: 
      Excerpt: 
      Stochastic Differential Equations; Chapter V. Infinite-Dimensional Systems; Chapter VI. Input
      by 
      Norrie, D. H.
      Format: 
      Excerpt: 
      element applications -- Appendix A : Matrix algebra -- Appendix B : The differential and integral calculus
      by 
      Reiner, Markus, 1886-1976.
      Format: 
      Excerpt: 
      -layer theory to simple ordinary differential equations, by S. Goldstein.--The.
      by 
      Bellman, Richard, 1920-1984.
      Format: 
      Excerpt: 
      -- Review of matrix theory and linear differential equations -- Multidimensional control processes via the
      by 
      Oǧuztöreli, M. Namik.
      Format: 
      Excerpt: 
      Equations; Chapter I. Introduction; Chapter II. Delay-Differential Equations; Chapter III. Linear Delay-Differential
      by 
      Wendroff, Burton.
      Format: 
      Excerpt: 
      APPENDIXEXERCISES; COMPUTER PROBLEMS; NOTES; Chapter 3. Ordinary Differential Equations; 3.1. THE
      by 
      Flanders, Harley.
      Format: 
      Excerpt: 
      -- Applications in Euclidean space -- Applications to differential equations -- Applications to differential
      by 
      Thomas, Tracy Y. (Tracy Yerkes), 1899-1983.
      Format: 
      Excerpt: 
      -- Formulae of Gauss and Weingarten -- Gaussian and mean curvature of a surface -- Equations of Gauss and
      by 
      Baskar, Deepak Charles, author.
      Format: 
      Excerpt: 
      Runge-Kutta Method) to solve differential equations were written. The different fiber parameters to
      by 
      Galloway, Ivanti S., author.
      Format: 
      Excerpt: 
      differential equations that model the effect of anti-vaccination groups on the spread of infectious diseases
      by 
      McConkey, Robert G., author.
      Format: 
      Excerpt: 
      Maxwell's Equations can be reduced to two equations of differential forms. We continue our exploration of
      by 
      Klyatskin, Valery I. author.
      Format: 
      Excerpt: 
      partial differential equations. Further, the book considers two examples of stochastic structure formation
      by 
      Silhavy, Radek. editor.
      Format: 
      Excerpt: 
      Neutral Delay Integro Differential Equations with Constrained Grid --  Maze Navigation in the Ball & Plate
      by 
      Aubin, Jean-Pierre. author.
      Format: 
      Excerpt: 
      such as partial differential equations and their resolution by finite difference or finite elements
      by 
      Abali, Bilen Emek. author.
      Format: 
      Excerpt: 
      satisfying field equations that are partial differential equations in space and time. The field equations are
      by 
      Franklin, Joel, 1975-
      Format: 
      Excerpt: 
      . Root-finding; 4. Partial differential equations; 5. Time dependent problems; 6. Integration; 7. Fourier
      by 
      Uicker, John Joseph.
      Format: 
      Excerpt: 
      transformation matrices; 5. Position analysis by kinematic equations; 6. Differential kinematics and numeric
      by 
      Lindfield, G. R. (George R.)
      Format: 
      Excerpt: 
      -- Differentiation and integration -- Solution of differential equations -- Boundary value problems -- Fitting
      by 
      Naumann, Uwe, 1969-
      Format: 
      Excerpt: 
      language of continuous mathematics, such as partial differential equations and linear algebra, but
      by 
      Gbur, Greg.
      Format: 
      Excerpt: 
      equations; 15. Partial differential equations; 16. Bessel functions; 17. Legendre functions and spherical
      by 
      Liengme, Bernard V.
      Format: 
      Excerpt: 
      . Modelling I -- 10. Solving Equations -- 11. Numerical Integration -- 12. Differential Equations -- 13
      by 
      Poznyak, Alexander S.
      Format: 
      Excerpt: 
      Functions and the Central Limit Theorem; Iterative Logarithmic Law; Stochastic Differential Equations
      by 
      Harmuth, Henning F.
      Format: 
      Excerpt: 
      ; 1.1 Maxwell's Equations with Magnetic Dipole Currents; 1.2 Lagrange Function; 1.3 Basic Concepts of
      by 
      Poznyak, Alexander S.
      Format: 
      Excerpt: 
      -- III DIFFERENTIAL EQUATIONS AND OPTIMIZATION -- 19 Ordinary Differential Equations -- 20 Elements of
      by 
      Gradshteĭn, I. S. (Izrailʹ Solomonovich)
      Format: 
      Excerpt: 
      related results -- 14. Determinants -- 15. Norms -- 16. Ordinary differential equations -- 17. Fourier
      by 
      Kampen, N. G. van, author.
      Format: 
      Excerpt: 
      in continuous systems -- XV. The statistics of jump events -- XVI. Stochastic differential equations
      by 
      Bertotti, Giorgio.
      Format: 
      Excerpt: 
      aspects of hysteresis - from differential equations, and binary detection, to models of unemployment and
      by 
      Dunn, Stanley Martin.
      Format: 
      Excerpt: 
      , interpolation and integration -- Dynamic systems : ordinary differential equations -- Dynamic systems : partial
      by 
      Mortimer, Robert G.
      Format: 
      Excerpt: 
      -- Differential equations -- Operators, matrices, and group theory -- The solution of simultaneous algebraic
      by 
      Cebeci, Tuncer.
      Format: 
      Excerpt: 
      ; Chapter 2. Conservation Equations for Compressible Turbulent Flows; Chapter 3. Boundary-Layer Equations
      by 
      Atiyah, Michael Francis, 1929-
      Format: 
      Excerpt: 
      differential equations / Recent developments in dynamics / On the restricted Burnside problem / What is
      by 
      Farrashkhalvat, M.
      Format: 
      Excerpt: 
      differential equations that arise in the modelling of physical systems in engineering. Structured grid
      by 
      Tanaka, Hiroshi.
      Format: 
      Excerpt: 
      Machine generated contents note: Stochastic Differential Equations with Reflecting Boundary
      by 
      Turrell, George.
      Format: 
      Excerpt: 
      -- Ordinary Differential Equations -- Partial Differential Equations -- Operators and Matrices -- Group Theory
      by 
      Davis, H. Ted (Howard Ted)
      Format: 
      Excerpt: 
      Systems; Chapter 4. General Theory of Solvability of Linear Algebraic Equations; Chapter 5. The
      by 
      Venner, C. H.
      Format: 
      Excerpt: 
      , governed by a complex integro-differential equation. Their work has resulted in a very efficient and stable
      by 
      Pollock, D. S. G.
      Format: 
      Excerpt: 
      Analysis; Chapter 4. Polynomial Computations; Chapter 5. Difference Equations and Differential Equations
      by 
      Stroyan, K. D.
      Format: 
      Excerpt: 
      Derivatives. -- Applications of the Increment Approximation. -- Differential Equations from Increment Geometry
      by 
      Drozdov, Aleksey D.
      Format: 
      Excerpt: 
      tensor calculus, kinematics with finite strains, stochastic differential equations, and evolutionary
      by 
      Wu, Theodore Y.-T. (Theodore Yao-tsu)
      Format: 
      Excerpt: 
      Vorticity; VIII. Initial Conditions; IX. Semi-discretizations via Differential- Akgebraic Equations; X
      by 
      Grudzinski, Olaf von, 1947-
      Format: 
      Excerpt: 
      multiplication equations and of quasihomogeneous partial differential equations with constant coefficients
      by 
      Antont͡sev, S. N. (Stanislav Nikolaevich)
      Format: 
      Excerpt: 
      certain hydrodynamical models with nonlinear systems of partial differential equations. The investigations
      by 
      FERMAT Days 85 (Toulouse, France)
      Format: 
      Excerpt: 
      Optimization, as examined here, ranges from differential equations to problems arising in Mechanics
      by 
      Haug, Edward J.
      Format: 
      Excerpt: 
      structure displacements and the design parameters. The structual state equations are matrix equations for
      by 
      Cole, Julian D.
      Format: 
      Excerpt: 
      . Significant mathematical areas which enter the discussion are: Partial Differential Equations of Mixed Type
      by 
      International Conference on Trends in the Theory and Practice of Non-linear Analysis (6th : 1984 : University of Texas at Arlington)
      Format: 
      Excerpt: 
      Multipoint Boundary Value Problems for Higher Order Differential Equations; A Theory of Nonlinear Evolution
      by 
      Massari, Umberto, 1948-
      Format: 
      Excerpt: 
      of partial differential equations are used to solve the 19th Hilbert problem. Also included is a
      by 
      Taniguchi International Symposium on Stochastic Analysis (1982 : Katata-chō, Japan and Kyoto, Japan)
      Format: 
      Excerpt: 
      differential equations, is becoming increasingly important in connection with partial differential equations
      by 
      McShane, E. J. (Edward James), 1904-1989.
      Format: 
      Excerpt: 
      . Integration in One-Dimensional Space: Further Development; Chapter III. Applications to Differential Equations
      by 
      Yih, Chia-shun, 1918-1997.
      Format: 
      Excerpt: 
      . Introduction; II. Differential Equations and Boundary Conditions; III. Numerical Analysis Background; IV
      by 
      Prössdorf, Siegfried.
      Format: 
      Excerpt: 
      , global analysis, differential equations on manifolds, and mathematical physics, and for the readers who
      by 
      Peaceman, Donald W.
      Format: 
      Excerpt: 
      -order differential equations; Two-phase flow; Three-phase flow; Flow with change of phase; The black-oil model
      by 
      Iyanaga, Shōkichi, 1906-2006.
      Format: 
      Excerpt: 
      , global analysis, differential equations on manifolds, and mathematical physics, and for the readers who
      by 
      Tsokos, Chris P.
      Format: 
      Excerpt: 
      Preliminaries and formulution of the stochastic equations -- Some random integral equations of the
      by 
      Roberts, A. Wayne (Arthur Wayne), 1934-
      Format: 
      Excerpt: 
      Differential Equations with Constant Coefficients -- First-Order Linear Differential Equations -- Other First
      by 
      Jazwinski, Andrew H., editor.
      Format: 
      Excerpt: 
      Processes; Chapter 4 Stochastic Differential Equations; Chapter 5 Introduction to Filtering Theory; Chapter
      by 
      Hermann, Robert, 1931-
      Format: 
      Excerpt: 
      lie theory of ordinary differential equations -- Frobenius complete integrability theorem -- Reduction
      by 
      O'Neill, Barrett, author.
      Format: 
      Excerpt: 
      Derivatives; 4 Curves in E; 5 1-Forms; 6 Differential Forms; 7 Mappings; 8 Summary; Chapter II. Frame Fields
      by 
      Von Mises, Richard, 1883-1953.
      Format: 
      Excerpt: 
      Infinite Line Source of Diffusion; VI. Differential Equations of Diffusion and Statistical Theory of
      by 
      Saranathan, Harish, author.
      Format: 
      Excerpt: 
      -algebraic equations (DAEs). Instead, it employs direct methods, wherein the optimality of the calculated trajectory is
      by 
      Hache, Florian, author. (orcid)0000-0003-4816-6571
      Format: 
      Excerpt: 
      through the use of equilibrium equations and leads to a truncated governing differential equation in
      by 
      Baygents, Gerald Walker, author.
      Format: 
      Excerpt: 
      during 2018 - 2020. Using mathematical modeling with ordinary differential equations (ODE), we derive a
      by 
      Swietek, Karen Elizabeth, author.
      Format: 
      Excerpt: 
      treatment, we used generalized estimating equations and generalized linear models to determine the
      by 
      Bartlette, Kai, author.
      Format: 
      Excerpt: 
      hepatic IR. In addition, such an estimate represents a key input to differential equations-based models of
      by 
      Stoter, Klaas Franciscus Stein, author.
      Format: 
      Excerpt: 
      of partial differential equations. The domain decomposition variational multiscale method that has
      by 
      Brewster, Wayne J., author.
      Format: 
      Excerpt: 
      approximation of 1-D, 2-D, and 3-D linear partial differential equations. Validity of the framework is assessed
      by 
      Rothstein-Dowden, A., author.
      Format: 
      Excerpt: 
      differential equations, to which the analytical solution is known for a very small class of problems. Instead
      by 
      Zuniga, Andres, author. (orcid)0000-0002-5008-4236
      Format: 
      Excerpt: 
      sequences of periodic solutions to the system of ordinary differential equations previously considered
      by 
      Azar, Ahmad Taher. editor.
      Format: 
      Excerpt: 
      chaos fundamentals, fractional calculus, fractional differential equations, fractional control and
      by 
      Danko, George L. author.
      Format: 
      Excerpt: 
      integral, differential, and state-flux forms -- Transport models for Mechanical Energy -- Transport models
      by 
      Kajishima, Takeo. author.
      Format: 
      Excerpt: 
      book encompasses fluid mechanics, partial differential equations, numerical methods, and turbulence
      by 
      Aluf, Ofer. author.
      Format: 
      Excerpt: 
      systematically, starting with basic differential equations and their bifurcations, and subsequently moving on to
      by 
      Zohuri, Bahman. author.
      Format: 
      Excerpt: 
      Partial Differential Equations (PDEs) -- Index.
      by 
      Mortimer, Robert G.
      Format: 
      Excerpt: 
      Variables 10. Mathematical Series 11. Functional Series and Integral Transforms 12. Differential Equations
      by 
      Armbruster, Dieter.
      Format: 
      Excerpt: 
      Differential Equations.
      by 
      Dunn, William L. (William Lee), 1944-
      Format: 
      Excerpt: 
      interested readers with only an understanding of calculus and differential equations can learn Monte Carlo on
      by 
      Kli͡at͡skin, Valeriĭ Isaakovich.
      Format: 
      Excerpt: 
      described by differential and integral equations. Part III deals with the analysis of specific physical
      by 
      Krantz, Steven G. (Steven George), 1951-
      Format: 
      Excerpt: 
      , Abel, Galois, and the solving of equations -- René Descartes and the idea of coordinates -- Pierre de
      by 
      Lobontiu, Nicolae.
      Format: 
      Excerpt: 
      Approach; Coupled-field Systems; Appendix A Solution to Linear Ordinary Homogeneous Differential Equations
      by 
      Tarasov, Vasily E.
      Format: 
      Excerpt: 
      . Differential Equations for Quantum Observables -- 15. Quantum Dynamical Semi-Groups -- 16. Classical Non
      by 
      Hawkes, P. W.
      MacEwan University Access (Unlimited Concurrent Users) from ScienceDirect
      ScienceDirect http://www.sciencedirect.com/science/book/9780123739070
      Format: 
      Excerpt: 
      ; Acknowledgments; Appendix; References; Chapter 4. Anisotropic Diffusion Partial Differential Equations for
      by 
      Carcione, José M.
      Format: 
      Excerpt: 
      . This relation and the equations of momentum conservation are combined to give the equation of motion
      by 
      Ecole d'été de physique théorique (Les Houches, Haute-Savoie, France) (82nd : 2004)
      Format: 
      Excerpt: 
      : Modeling, Analysis, and Simulation of Genetic Regulatory Networks: From Differential Equations to Logical
      by 
      Bolton, W. (William), 1933-
      Format: 
      Excerpt: 
      . -- Appendices: -- Errors. -- Differential equations. -- Laplace transform. -- Answers. -- Index.
      by 
      Dym, Clive L.
      Format: 
      Excerpt: 
      elementary algebra, trigonometry, and first-year calculus and have some familiarity with differential
      by 
      Cohen, Albert, 1965-
      Format: 
      Excerpt: 
      differential equations : multilevel preconditioning, sparse approximations of differential and integral
      by 
      International Conference on Mathematical Finance (2001 : Shanghai, China)
      Format: 
      Excerpt: 
      Differential Equations 28 -- Z. Chen and X. Wang -- Some Lookback Option Pricing Problems 39 -- X. Guo
      by 
      Song, Yihong, author.
      Format: 
      Excerpt: 
      solutions of discrete Volterra equations. Finally, for a class of Volterra integral and integro-differential
      by 
      Hasselblatt, Boris.
      Format: 
      Excerpt: 
      theory and infinite-dimensional dynamical systems (partial differential equations). . Written by experts
      by 
      Fujita, Hiroshi, 1928-
      Format: 
      Excerpt: 
      solve partial differential equations. In 1991, we published an article on the finite element method
      by 
      Carcione, José M.
      Format: 
      Excerpt: 
      . This relation and the equations of momentum conservation are combined to give the equation of motion
      by 
      Jähne, Bernd, 1953-
      Format: 
      Excerpt: 
      , ordinary and partial differential equations, Fourier series, orthogonal polynomials, and Laplace transforms
      by 
      Gradshteĭn, I. S. (Izrailʹ Solomonovich)
      Format: 
      Excerpt: 
      . Determinants. Norms. Ordinary differential equations. Fourier, Laplace, and Mellin Transforms. The z
      by 
      Hawkes, P. W.
      Format: 
      Excerpt: 
      Equations; X. Hyperdifferential Form; XI. Digital Simulation of the Transform; XII. Applications to Wave and
      by 
      Berz, M.
      Format: 
      Excerpt: 
      . Dynamics of Particles and Fields; 1.1 Beams and Beam Physics; 1.2 Differential Equations, Determinism, and
      by 
      Hawkes, P. W.
      Format: 
      Excerpt: 
      -- VIII. Fractional Fourier Domains -- IX. Differential Equations -- X. Hyperdifferential Form -- XI
      by 
      Hawkes, P. W.
      Format: 
      Excerpt: 
      . Introduction; II. Field Equations and Material Properties; III. Fields, Potentials, and Gauges; IV. Edge
      by 
      Schechter, Eric, 1950-
      Format: 
      Excerpt: 
      ; integration theory; topological vector spaces; and differential equations. The author effectively demonstrates
      by 
      Ramirez, W. Fred, 1941-
      Format: 
      Excerpt: 
      ; Nomenclature; Appendices; Analytical Solutions to Ordinary Differential Equations ; IMSL Routines; Index.
      by 
      Whitehouse, John E.
      Format: 
      Excerpt: 
      application of graph theory to justify the derivation of the Node- and Mesh-equations from the more extensive
      by 
      Banach, Stefan, 1892-1945.
      Format: 
      Excerpt: 
      group theory, differential equations, integral equations, equations with infinitely many unknowns
      by 
      Misra, O. P.
      Format: 
      Excerpt: 
      differential equations and integral equations is conveniently collected here. The volume will serve as
      by 
      Adomian, G.
      Format: 
      Excerpt: 
      Differential Equations; 5.1. Deterministic Coupled Differential Equations; 5.2. Stochastic Coupled Equations; 5
      by 
      Colombeau, Jean François, 1947-
      Format: 
      Excerpt: 
      generalized functions -- Part 3 : New solutions of partial differential equations. Linear equations
      781. 
      by 
      Grossman, Stanley I.
      Format: 
      Excerpt: 
      Differentiation and Integration of More General Exponential and LogarithmicFunctions; 6.6 Differential Equations
      by 
      Vandergraft, James S.
      Format: 
      Excerpt: 
      . ORDINARY DIFFERENTIAL EQUATIONS; 8.1 Differential and Difference Equations
      by 
      Jacobson, David H.
      Format: 
      Excerpt: 
      Introduction to Copositive Matrices; 3.2 Extensions; 3.3 Quadratic Differential Equations; 3.4 Invariant Sets
      by 
      Symposium on Analytic Computational Complexity (1975 : Carnegie Mellon University)
      Format: 
      Excerpt: 
      and Differential Equations; 1. INTRODUCTION; 2. GENERALIZED INTERPOLATION PROBLEMS; 3. SPARSE LINEAR
      by 
      Lightstone, A. H.
      Format: 
      Excerpt: 
      , global analysis, differential equations on manifolds, and mathematical physics, and for the readers who
      by 
      Royal Irish Academy Conference on Numerical Analysis (1974 : Dublin, Ireland)
      Format: 
      Excerpt: 
      Multistep Methods for Ordinary DifFerential Equations applied to Parabolic Partial Differential Equations; 1
      by 
      Black, William, author.
      Format: 
      Excerpt: 
      numerically stored reference orbits and the relevant differential equations are derived. The latter of these
      by 
      Simons, S.
      Format: 
      Excerpt: 
      Differential operators for orthogonal coordinates; Chapter 9. An Application of Vector Analysis- Electrical
      by 
      Bronson, Richard.
      Format: 
      Excerpt: 
      ; Appendix to Chapter 6; CHAPTER 7. LINEAR DIFFERENTIAL EQUATIONS; 7.1 Fundamental Form; 7.2 Reduction of an
      by 
      Rasulov, M. L. (Medzhid Li͡atifovich)
      Format: 
      Excerpt: 
      -VALUE PROBLEMS WITH A PARAMETER FOR SYSTEMS OF ORDINARY DIFFERENTIAL EQUATIONS WITH DISCONTINUOUS COEFFICIENTS; 3
      by 
      Cristescu, N.
      Format: 
      Excerpt: 
      -DIMENSIONAL PROBLEMS; 1. Introduction; 2. Differential constitutive equations; 3. Instantaneous plastic response; 4
      by 
      Hill, Rodney, 1921-2011.
      Format: 
      Excerpt: 
      .4 Properties of the Inertia Tensor; 3.5 Impulse and Inertia; 3.6 Differential Equations of Euler; 3
      by 
      Fujita, Hiroshi, 1922-
      Format: 
      Excerpt: 
      components, the differential equations for the ultracentrifuge, and the case of negligible diffusion. The
      by 
      Alt, Franz L.
      Format: 
      Excerpt: 
      Systems of Linear Equations; 9. Least Square Methods for Ordinary Differential Equations.
      by 
      Dryden, Hugh L. (Hugh Latimer), 1898-1965.
      Format: 
      Excerpt: 
      . Hyperbolic Partial Differential Equations; IV. Elliptic Partial Differential Equations; V. Applications to
      by 
      Bridgman, Terry J., author.
      Format: 
      Excerpt: 
      completely integrable partial differential equations. Subsequent investigations by Nijhoff, Quispel & Capel
      by 
      Aziz, Jonathan David, author.
      Format: 
      Excerpt: 
      differential dynamic programming (DDP). The change of variable from time to orbit anomaly is accomplished by a
      by 
      Inamdar, Tanmay C., author.
      Format: 
      Excerpt: 
      coupled nonlinear partial differential equations are solved numerically through a segregated approach
      by 
      Carvalho Rocha, Daniel, Jr., author.
      Format: 
      Excerpt: 
      energy norm. Since this measure emerges from the differential equations that govern wave propagation, it
      by 
      Autry, Eric A., author.
      Format: 
      Excerpt: 
      distance. This gives rise to integro-partial differential equations of reaction-diffusion type. Our work
      by 
      Lewis, Peter, author.
      Format: 
      Excerpt: 
      In classical partial differential equations (PDEs), it is well known that the solution to Burgers
      by 
      Rigatos, Gerasimos G. author.
      Format: 
      Excerpt: 
      systems governed by partial differential equations (e.g. the Black–Scholes partial differential equation
      by 
      Aluf, Ofer. author.
      Format: 
      Excerpt: 
      describe Floquet theory, it is the study of linear systems of differential equations with periodic
      by 
      Adamatzky, Andrew. editor.
      Format: 
      Excerpt: 
      -Zhabotinsky Computing through Simulated Evolution -- On Synthesis and Solutions of Nonlinear Differential Equations - a
      by 
      Rao, J.S. author.
      Format: 
      Excerpt: 
      equations consistent with assumed deformation field and solution for deformations, strains and stresses were
      by 
      Zhao, Lin, author.
      Format: 
      Excerpt: 
      derive the partial differential equations (PDE) that characterize the dynamical evolution of the load
      by 
      Oduro, Bismark, author.
      Format: 
      Excerpt: 
      . The model is based on a mixture of differential and difference equations. Conditions for the existence
      by 
      Gabbiani, Fabrizio.
      Format: 
      Excerpt: 
      differential equations, the level will build up as increasingly complex techniques are introduced and combined
      by 
      Zhdanov, Michael S.
      Format: 
      Excerpt: 
      Introduction to Field Theory -- 1 Differential Calculus of Vector Fields and Differential Forms
      by 
      Ruskeepää, Heikki.
      Format: 
      Excerpt: 
      ; Matrices) 22. EQUATIONS (Linear Equations; Polynomial and Radical Equations; Transcendental Equations) 23
      by 
      Krupka, D.
      Format: 
      Excerpt: 
      ; differential equations (including ODEs, differential systems and distributions, and spectral theory
      Format: 
      Excerpt: 
      -spline basis. The differential equations are replaced by non-linear systems of equations and the problems of
      by 
      Zlatev, Zahari, 1939-
      Format: 
      Excerpt: 
      described by systems of partial differential equations. The discretization of the spatial derivatives in
      by 
      Kli͡at͡skin, Valeriĭ Isaakovich.
      Format: 
      Excerpt: 
      differential equations, like wave propagation in randomly layered media (localization), turbulent advection of
      by 
      Castillo, Enrique, 1946-
      Format: 
      Excerpt: 
      equations as an alternative to differential equations, and to state new problems in terms of functional
      by 
      Alexeev, Boris V.
      Format: 
      Excerpt: 
      elimination technique for the differential third order equation -- Appendix 3. Some integral calculations in
      by 
      Hlaváček, Ivan, 1933-
      Format: 
      Excerpt: 
      to various state problems modeled by differential equations or variational inequalities: nonlinear
      by 
      Kaufman, Alexander A., 1931-
      Format: 
      Excerpt: 
      Chapter 1. Basic electromagnetic laws and Maxwell's equations -- Chapter 2. Electromagnetic field
      by 
      Attenborough, Mary (Mary Patricia), 1954-
      Format: 
      Excerpt: 
      and series -- Systems of linear equations, matrices, and determinants -- Differential equations and
      by 
      Vohnout, Karel D.
      Format: 
      Excerpt: 
      Difference Equations -- 3.5 Differential Equations -- Chapter 4. Selected Transform Procedures -- 4.1 Partial
      by 
      Kulasiri, Don.
      Format: 
      Excerpt: 
      stochastic differential equations (SDE) and stochastic partial differential equations (SPDE) come from the
      by 
      Zhang, Dongxiao, 1967-
      Format: 
      Excerpt: 
      ; Preface; Chapter 1. Introduction; 1.1 Stochastic Partial Differential Equations; 1.2 Saturated Flow with
      by 
      Katsikadelis, John T.
      Format: 
      Excerpt: 
      various governing differential equations in a simple way minimizing a recourse to mathematics with which
      by 
      Mitra, Sanjit Kumar.
      Format: 
      Excerpt: 
      / Nonlinear partial differential equations in image processing / Region-based filtering of images and video
      by 
      Gao, Xiao-Shan.
      Format: 
      Excerpt: 
      Polynomial Differential Systems. Z. Li, Exact Solitary Wave Solutions of Non-linear Evolution Equations. H
      by 
      Mauser, H. (Heinz)
      Format: 
      Excerpt: 
      photochemical reactions by means of generalised differential equations, their set-up in matrix notation, and
      by 
      Liew, K. M.
      Format: 
      Excerpt: 
      Plate Theory and Ritz Method. Mindlin plate theory. Energy functionals. Governing differential equations
      by 
      Phillips, G. M. (George McArtney)
      Format: 
      Excerpt: 
      Eigenvalues and Eigenvectors. Systems of Non-linear Equations. Ordinary Differential Equations. Boundary Value
      by 
      Coburn, Stephen P.
      Format: 
      Excerpt: 
      be described without specifying the required differential equations. The final sections of the book
      by 
      Unger, David J.
      Format: 
      Excerpt: 
      governing a mode I elastoplastic crack problem * Places emphasis on the near crack tip partial differential
      by 
      Francaviglia, M.
      Format: 
      Excerpt: 
      Differential Equations and Applications to Probl; Definition; Statement 1; Statement 2; Theorem 1; Corollary
      by 
      Jhita, P. S., author.
      Format: 
      Excerpt: 
      introduction, followed by a review of the relevant literature. The basic differential equations and energy
      by 
      Ochiai, Takushiro, editor.
      Format: 
      Excerpt: 
      who were not experts on the topics considered during the sessions about partial differential equations
      by 
      Massel, Stanislaw R.
      Format: 
      Excerpt: 
      equations, as well as the statistical and spectral analysis of time series, is assumed. The reader should
      by 
      International Conference on Computational Methods in Water Resources (7th : 1988 : Massachusetts Institute of Technology)
      Format: 
      Excerpt: 
      Partial Difference Equation; Chapter 23. The Numerical Treatment of Partial Differential Equations
      by 
      Carroll, Robert W., 1930-2012.
      Format: 
      Excerpt: 
      quantization, attractors for PDE, Ginzburg-Landau Equations in superconductivity, Navier-Stokes equations
      by 
      Japan Conference on Graph Theory and Applications (1st : 1986 : Hakone-machi, Japan)
      Format: 
      Excerpt: 
      Chapter 26. Combinatorial resolution of systems of differential equations. IV. Separation of
      by 
      Nowacki, Witold.
      Format: 
      Excerpt: 
      thermoelasticity; 3. The wave equations of thermoelasticity; 4. Uncoupling of the system of differential equations
      by 
      Campbell, Gaylon S.
      Format: 
      Excerpt: 
      differential equations. In order to teach methods for solving very difficult differential equations with
      by 
      Seminário de Análise Funcional, Holomorfia e Teoria da Aproximação (1981 : Universidade Federal do Rio de Janeiro)
      Format: 
      Excerpt: 
      -- Spectral theory for certain operators polynomials / Reinhard Mennicken -- Integro-differential operators
      by 
      Symposium on a New Approach to Scientific Computation (1982 : IBM Thomas J. Watson Research Center)
      Format: 
      Excerpt: 
      ; Differential equations; CHAPTER 3. SOLVING ALGEBRAIC PROBLEMS WITH HIGH ACCURACY; INTRODUCTION; 1. COMPUTER
      by 
      International Symposium on Interval Mathematics (2nd : 1980 : Universität Freiburg)
      Format: 
      Excerpt: 
      DIFFERENTIAL EQUATIONS; I. INTRODUCTION; II. DIFFERENTIATION OF INTERVAL FUNCTION OF A REAL VARIABLE; III
      by 
      Workshop on the Information Linkage between Applied Mathematics and Industry (2nd : 1979 : Naval Postgraduate School, Monterey, Calif.)
      Format: 
      Excerpt: 
      PARTIAL DIFFERENTIAL EQUATIONS; 1. INTRODUCTION; 2. THE HELMHOLTZ EQUATION; 3. EXISTING SOFTWARE; 4
      by 
      Engelking, Ryszard.
      Format: 
      Excerpt: 
      , global analysis, differential equations on manifolds, and mathematical physics, and for the readers who
      by 
      Nowacki, Wojciech Krzysztof, author.
      Format: 
      Excerpt: 
      . Solution of the differential equations of the theory of thermal stresses; 29. Thermal shock on the boundary
      by 
      Curtain, Ruth F.
      Format: 
      Excerpt: 
      differential equations -- 8.2 Stochastic differential equations -- 8.3 Differential delay equations -- 8.4
      by 
      Georgescu-Roegen, Nicholas.
      Format: 
      Excerpt: 
      . MATHEMATICAL DYNAMIC SYSTEMS AND GROWTH; VI. DIFFERENTIAL EQUATIONS AND ECONOMIC DYNAMICS; VII. COMMODITIES
      by 
      Advanced Seminar on Special Functions (1975 : Madison, Wis.)
      Format: 
      Excerpt: 
      3. SUMS AND SEQUENCES4. LINEAR ORDINARY DIFFERENTIAL EQUATIONS; PART II. ASYMPTOTIC ESTIMATES OF
      by 
      Seely, Samuel, 1909-1995.
      Format: 
      Excerpt: 
      ; 2-7 STATE EQUATIONS FOR LINEAR SYSTEMS; 2-8 DIFFERENTIAL EQUATIONS IN NORMAL FORM.
      by 
      Grassmann, Peter.
      Format: 
      Excerpt: 
      Dimensional Equations; 1.9. Internal Energy and Enthalpy; 1.10. Notes on Dealing with Partial Derivatives; 1
      by 
      Stoll, Robert Roth.
      Format: 
      Excerpt: 
      . Familiarity with calculus and linear differential equations is required for understanding some of the examples
      by 
      International Conference on Dynamic Stability of Structures (1965 : Evanston, Ill.)
      Format: 
      Excerpt: 
      INTRODUCTION; 2 AUTONOMOUS ORDINARY DIFFERENTIAL EQUATIONS; 3 NONAUTONOMOUS SYSTEMS; 4 AUTONOMOUS FUNCTIONAL
      by 
      Berg, Lothar.
      Format: 
      Excerpt: 
      . Partial differential equations; 53. Differential-difference equations; 54. The finite part of an integral
      by 
      Sveshnikov, A. A. (Aram Aruti͡unovich), author.
      Format: 
      Excerpt: 
      WHEN THE RIGHT-HAND SIDE IS NON-STATIONARY; 15. LINEAR DIFFERENTIAL EQUATIONS WITH VARIABLE
      by 
      Clark, Melville, Jr.
      Format: 
      Excerpt: 
      .2 Ordinary Differential Equations; 3.3 Partial Differential Equations.
      by 
      Budak, B. M. (Boris Mikhaĭlovich)
      Format: 
      Excerpt: 
      PARTIAL DIFFERENTIAL EQUATIONS; 1. The equation for a function of two independent variables; 2. The
      by 
      Conference on the Ultracentrifuge (1962 : New York)
      Format: 
      Excerpt: 
      ; diffusion and sedimentation in multicomponent systems; and the frictional formalism in the flow equations of
      by 
      Vekua, I. N. (Ilʹi͡a Nestorovich), 1907-1977.
      Format: 
      Excerpt: 
      . Reduction of equations of elliptic type to the canonicalform; CHAPTER III. FOUNDATIONS OF THE GENERAL THEORY
      by 
      Urich, Matthew D., author. (orcid)0000-0001-5146-2895
      Format: 
      Excerpt: 
      model is a fully coupled, nonlinear set of Partial and Ordinary Differential Equations (PDEs and ODEs
      by 
      Zhang, Fangbo, author.
      Format: 
      Excerpt: 
      -Diffusion-Reaction equations that govern the spatial distribution of the swarm at the population level; and a microscopic model
      by 
      Hong, Brian D., author.
      Format: 
      Excerpt: 
      equilibrium equations are imposed in weak form, leading to a system of differential-algebraic equations that
      by 
      Narayanan Subramani, Deepak, author.
      Format: 
      Excerpt: 
      . We solve the reduced-order stochastic DO level-set partial differential equations (PDEs) to compute
      by 
      Ahmed, Sameed, author.
      Format: 
      Excerpt: 
      differential equations that has been used to model non-linear growth kinetics of breast cancer stem cells. The
      by 
      Erukulla, Gautami D., author.
      Format: 
      Excerpt: 
      ordinary differential equations are solved by Adams Moulton time integration method. Validation studies are
      by 
      Kamiński, M. M. (Marcin M.), 1969-
      Format: 
      Excerpt: 
      difference calculus 204 4.1.4. Parabolic differential equations 210 4.2. Analysis of the boundary value
      by 
      Pearl, Elliott.
      Format: 
      Excerpt: 
      equations / V.V. Filippov -- The interplay between compact spaces and the Banach spaces of their continuous
      by 
      Faghri, Amir.
      Format: 
      Excerpt: 
      generalized integral and differential transport phenomena equations for multi-component multiphase systems in
      by 
      Fattorini, H. O. (Hector O.), 1938-
      Format: 
      Excerpt: 
      processes governed by partial differential equations. Complete bibliography. Includes the latest research on
      by 
      Kli͡at͡skin, Valeriĭ Isaakovich.
      Format: 
      Excerpt: 
      Gaussian random field delta-correlated in time (ordinary differential equations) -- 8 Methods for solving
      by 
      Ferrera, J.
      Format: 
      Excerpt: 
      -history of the involved mathematics to the very last developments in Differential Equations, Inverse Problems
      by 
      Hutson, V.
      Format: 
      Excerpt: 
      Eigenfunction Expansions Associated with Ordinary Differential Equations -- 10.1 Introduction -- 10.2 Extensions
      by 
      Vrabie, I. I. (Ioan I.), 1951-
      Format: 
      Excerpt: 
      also those referring to the Maxwell equations, the equations of Linear Thermoelasticity, the equations
      by 
      Marghitu, Dan B.
      Format: 
      Excerpt: 
      -- Nonlinear Controllers by Feedback Linearization -- Sliding Control -- Appendix: -- Differential Equations
      by 
      Hoffman, E. J. (Edward Jack), 1925-2012.
      Format: 
      Excerpt: 
      Dissipative Effects -- 4.3 Darcy's Law -- 5. THE CLASSIC DIFFERENTIAL EQUATIONS FOR FLOW -- THROUGH POROUS
      by 
      Gil, Henryk, 1933-
      Format: 
      Excerpt: 
      trough described by a three-parameter influence function; 4.10 Differential equations for displacements
      by 
      Baker, W. E. (Wilfred Edmund), 1924-
      Format: 
      Excerpt: 
      Differential Equations; References; Part II: Scaling of Air Blast Waves and Gas Dynamics; Chapter 4. Scaling of
      by 
      Allen, H. G. (Howard Godfrey)
      Format: 
      Excerpt: 
      Basic Equations; 7.3. General Differential Equations; 7.4. Simplified Form of Differential Equations; 7
      by 
      Gvozdover, Samson Davidovich.
      Format: 
      Excerpt: 
      ; CHAPTER 1. ELEMENTS OF ELECTRODYNAMICS OF CAVITY RESONATORS; 1.1 The Differential Equations of Maxwell and
      by 
      Apostol, Marian.
      Format: 
      Excerpt: 
      Differential Equations -- 9.1 Introduction -- 9.2 Constant coefficients -- 9.3 First-order differential
      by 
      Gilʹ, M. I. (Mikhail Iosifovich)
      Format: 
      Excerpt: 
      . Chapter 19 deals with a class of the Stieltjes differential equations. These equations generalize
      by 
      Jeffrey, Alan.
      Format: 
      Excerpt: 
      Equations Homogeneous Equations Linear Differential Equations Constant Coefficient Linear Differential
      by 
      Bovik, Alan C. (Alan Conrad), 1958-
      Format: 
      Excerpt: 
      edge detection / Phillip A. Mlsna and Jeffrey J. Rodriguez -- Diffusion partial differential equations