Student Solutions Manual, A Modern Introduction to Differential Equations

**Produk Detail:**

- Author : Henry J. Ricardo
- Publisher : Academic Press
- Pages : 154 pages
- ISBN : 0123750296
- Release : 03 March 2009
- Rating : 4/5 from 21 reviews

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Student Solutions Manual, A Modern Introduction to Differential Equations

**Produk Detail:**

- Author : Henry J. Ricardo
- Publisher : Academic Press
- Pages : 154 pages
- ISBN : 0123750296
- Release : 03 March 2009
- Rating : 4/5 from 21 reviews

- Author : Henry J. Ricardo
- Publisher : Academic Press
- Release : 03 March 2009

Student Solutions Manual, A Modern Introduction to Differential Equations

- Author : Henry J. Ricardo
- Publisher : Academic Press
- Release : 17 January 2020

A Modern Introduction to Differential Equations, Third Edition, provides an introduction to the basic concepts of differential equations. The book begins by introducing the basic concepts of differential equations, focusing on the analytical, graphical and numerical aspects of first-order equations, including slope fields and phase lines. The comprehensive resource then covers methods of solving second-order homogeneous and nonhomogeneous linear equations with constant coefficients, systems of linear differential equations, the Laplace transform and its applications to the solution of differential equations

- Author : Henry J. Ricardo
- Publisher : Academic Press
- Release : 24 February 2009

A Modern Introduction to Differential Equations, Second Edition, provides an introduction to the basic concepts of differential equations. The book begins by introducing the basic concepts of differential equations, focusing on the analytical, graphical, and numerical aspects of first-order equations, including slope fields and phase lines. The discussions then cover methods of solving second-order homogeneous and nonhomogeneous linear equations with constant coefficients; systems of linear differential equations; the Laplace transform and its applications to the solution of differential equations and

- Author : Henry Ricardo
- Publisher : Houghton Mifflin College Division
- Release : 01 April 2002

- Author : James R. Brannan,William E. Boyce
- Publisher : John Wiley & Sons
- Release : 17 February 2015

Brannan/Boyce’s Differential Equations: An Introduction to Modern Methods and Applications, 3rd Edition is consistent with the way engineers and scientists use mathematics in their daily work. The text emphasizes a systems approach to the subject and integrates the use of modern computing technology in the context of contemporary applications from engineering and science. The focus on fundamental skills, careful application of technology, and practice in modeling complex systems prepares students for the realities of the new millennium, providing

- Author : William E. Boyce
- Publisher : John Wiley & Sons
- Release : 08 November 2010

Unlike other books in the market, this second edition presents differential equations consistent with the way scientists and engineers use modern methods in their work. Technology is used freely, with more emphasis on modeling, graphical representation, qualitative concepts, and geometric intuition than on theoretical issues. It also refers to larger-scale computations that computer algebra systems and DE solvers make possible. And more exercises and examples involving working with data and devising the model provide scientists and engineers with the tools

- Author : Richard Brown
- Publisher : Oxford University Press
- Release : 28 June 2018

This text is a high-level introduction to the modern theory of dynamical systems; an analysis-based, pure mathematics course textbook in the basic tools, techniques, theory and development of both the abstract and the practical notions of mathematical modelling, using both discrete and continuous concepts and examples comprising what may be called the modern theory of dynamics. Prerequisite knowledge is restricted to calculus, linear algebra and basic differential equations, and all higher-level analysis, geometry and algebra is introduced as needed within

- Author : James R. Brannan
- Publisher : John Wiley & Sons
- Release : 08 November 2010

Unlike other books in the market, this second edition presents differential equations consistent with the way scientists and engineers use modern methods in their work. Technology is used freely, with more emphasis on modeling, graphical representation, qualitative concepts, and geometric intuition than on theoretical issues. It also refers to larger-scale computations that computer algebra systems and DE solvers make possible. And more exercises and examples involving working with data and devising the model provide scientists and engineers with the tools

- Author : Sadri Hassani
- Publisher : Springer Science & Business Media
- Release : 27 July 2013

The goal of this book is to expose the reader to the indispensable role that mathematics plays in modern physics. Starting with the notion of vector spaces, the first half of the book develops topics as diverse as algebras, classical orthogonal polynomials, Fourier analysis, complex analysis, differential and integral equations, operator theory, and multi-dimensional Green's functions. The second half of the book introduces groups, manifolds, Lie groups and their representations, Clifford algebras and their representations, and fibre bundles and their

- Author : J. Kurzweil
- Publisher : Elsevier
- Release : 28 June 2014

The author, Professor Kurzweil, is one of the world's top experts in the area of ordinary differential equations - a fact fully reflected in this book. Unlike many classical texts which concentrate primarily on methods of integration of differential equations, this book pursues a modern approach: the topic is discussed in full generality which, at the same time, permits us to gain a deep insight into the theory and to develop a fruitful intuition. The basic framework of the theory

- Author : Gerald B. Folland
- Publisher : Princeton University Press
- Release : 26 May 2020

The description for this book, Introduction to Partial Differential Equations. (MN-17), Volume 17, will be forthcoming.

- Author : John W. Dettman
- Publisher : Courier Corporation
- Release : 05 October 2012

Excellent introductory text focuses on complex numbers, determinants, orthonormal bases, symmetric and hermitian matrices, first order non-linear equations, linear differential equations, Laplace transforms, Bessel functions, more. Includes 48 black-and-white illustrations. Exercises with solutions. Index.

- Author : Martha L. Abell,James P. Braselton
- Publisher : Brooks/Cole Publishing Company
- Release : 17 April 2021

1. Introduction to Differential Equations. Introduction. A Graphical Approach to Solutions: Slope Fields and Direction Fields. Summary. Review Exercises. 2. First Order Equations. Separable Equations. First-Order Linear Equations. Substitution Methods and Special Equations. Exact Equations. Theory of First-Order-Equations. Numerical Methods for First-Order Equations. Summary. Review Exercises. Differential Equations at Work. Modeling the Spread of a Disease. Linear Population Model with Harvesting. Logistic Model with Harvesting. Logistic Model with Predation. 3. Applications of First Order Equations. Population Growth and Decay. Newton's Law of Cooling

- Author : Stephen L. Campbell,Richard Haberman
- Publisher : Princeton University Press
- Release : 14 October 2011

Many textbooks on differential equations are written to be interesting to the teacher rather than the student. Introduction to Differential Equations with Dynamical Systems is directed toward students. This concise and up-to-date textbook addresses the challenges that undergraduate mathematics, engineering, and science students experience during a first course on differential equations. And, while covering all the standard parts of the subject, the book emphasizes linear constant coefficient equations and applications, including the topics essential to engineering students. Stephen Campbell and

- Author : James R. Brannan,William E. Boyce
- Publisher : Wiley
- Release : 02 February 2007

Differential Equations: An Introduction to Modern Methods and Applications is a textbook designed for a first course in differential equations commonly taken by undergraduates majoring in engineering or science. It emphasizes a systems approach to the subject and integrates the use of modern computing technology in the context of contemporary applications from engineering and science. Section exercises throughout the text are designed to give students hands-on experience in modeling, analysis, and computer experimentation. Optional projects at the end of each