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This book is a revised and updated version, including a substantial portion of new material, of the authors' widely acclaimed earlier text "Perturbation Methods in Applied Mathematics". A new chapter dealing with regular expansions has been added, the discussion of layer-type singular perturbations has been revised, and the coverage of multiple scale and averaging methods has been significantly expanded to reflect recent advances and viewpoints. The result is a comprehensive account of the various perturbation techniques currently used in the sciences and engineering, and is suitable for a graduate text as well as a reference work on the subject.
This book is a revised and updated version, including a substantial
portion of new material, of J. D. Cole's text Perturbation Methods
in Applied Mathe matics, Ginn-Blaisdell, 1968. We present the
material at a level which assumes some familiarity with the basics
of ordinary and partial differential equations. Some of the more
advanced ideas are reviewed as needed; therefore this book can
serve as a text in either an advanced undergraduate course or a
graduate level course on the subject. The applied mathematician,
attempting to understand or solve a physical problem, very often
uses a perturbation procedure. In doing this, he usually draws on a
backlog of experience gained from the solution of similar examples
rather than on some general theory of perturbations. The aim of
this book is to survey these perturbation methods, especially in
connection with differ ential equations, in order to illustrate
certain general features common to many examples. The basic ideas,
however, are also applicable to integral equations,
integrodifferential equations, and even to_difference equations. In
essence, a perturbation procedure consists of constructing the
solution for a problem involving a small parameter B, either in the
differential equation or the boundary conditions or both, when the
solution for the limiting case B = 0 is known. The main
mathematical tool used is asymptotic expansion with respect to a
suitable asymptotic sequence of functions of B."
This book is a revised and updated version, including a substantial
portion of new material, of our text Perturbation Methods in
Applied Mathematics (Springer Verlag, 1981). We present the
material at a level that assumes some familiarity with the basics
of ordinary and partial differential equations. Some of the more
advanced ideas are reviewed as needed; therefore this book can
serve as a text in either an advanced undergraduate course or a
graduate-level course on the subject. Perturbation methods, first
used by astronomers to predict the effects of small disturbances on
the nominal motions of celestial bodies, have now become widely
used analytical tools in virtually all branches of science. A
problem lends itself to perturbation analysis if it is "close" to a
simpler problem that can be solved exactly. Typically, this
closeness is measured by the occurrence of a small dimensionless
parameter, E, in the governing system (consisting of differential
equations and boundary conditions) so that for E = 0 the resulting
system is exactly solvable. The main mathematical tool used is
asymptotic expansion with respect to a suitable asymptotic sequence
of functions of E. In a regular perturbation problem, a
straightforward procedure leads to a system of differential
equations and boundary conditions for each term in the asymptotic
expansion. This system can be solved recursively, and the accuracy
of the result improves as E gets smaller, for all values of the
independent variables throughout the domain of interest. We discuss
regular perturbation problems in the first chapter."
This book is a revised and updated version, including a substantial
portion of new material, of J. D. Cole's text Perturbation Methods
in Applied Mathe matics, Ginn-Blaisdell, 1968. We present the
material at a level which assumes some familiarity with the basics
of ordinary and partial differential equations. Some of the more
advanced ideas are reviewed as needed; therefore this book can
serve as a text in either an advanced undergraduate course or a
graduate level course on the subject. The applied mathematician,
attempting to understand or solve a physical problem, very often
uses a perturbation procedure. In doing this, he usually draws on a
backlog of experience gained from the solution of similar examples
rather than on some general theory of perturbations. The aim of
this book is to survey these perturbation methods, especially in
connection with differ ential equations, in order to illustrate
certain general features common to many examples. The basic ideas,
however, are also applicable to integral equations,
integrodifferential equations, and even to_difference equations. In
essence, a perturbation procedure consists of constructing the
solution for a problem involving a small parameter B, either in the
differential equation or the boundary conditions or both, when the
solution for the limiting case B = 0 is known. The main
mathematical tool used is asymptotic expansion with respect to a
suitable asymptotic sequence of functions of B."
The aim of this book is to provide a systematic and practical
account of methods of integration of ordinary and partial
differential equations based on invariance under continuous (Lie)
groups of trans formations. The goal of these methods is the
expression of a solution in terms of quadrature in the case of
ordinary differential equations of first order and a reduction in
order for higher order equations. For partial differential
equations at least a reduction in the number of independent
variables is sought and in favorable cases a reduction to ordinary
differential equations with special solutions or quadrature. In the
last century, approximately one hundred years ago, Sophus Lie tried
to construct a general integration theory, in the above sense, for
ordinary differential equations. Following Abel's approach for
algebraic equations he studied the invariance of ordinary
differential equations under transformations. In particular, Lie
introduced the study of continuous groups of transformations of
ordinary differential equations, based on the infinitesimal
properties of the group. In a sense the theory was completely
successful. It was shown how for a first-order differential
equation the knowledge of a group leads immediately to quadrature,
and for a higher order equation (or system) to a reduction in
order. In another sense this theory is somewhat disappointing in
that for a first-order differ ential equation essentially no
systematic way can be given for finding the groups or showing that
they do not exist for a first-order differential equation."
Have you ever heard a golfer say, "Golf is a commentary on life?"
J.D. (Jerry) Cole has taken that idea to task in The Course. The
Course is filled with golf metaphors, stories and illustrations on
golf and life. Jesus spoke of the "Sower and the Seed, "The Mustard
Seed" and the "Wheat and the Weeds" to farmers, and Jerry writes
about the "Golfer and the Course," "The Grip" and "The Scramble" to
golfers. The Course is a metaphor on life. Its ups and downs,
sorrows and joys, and its defeats and triumphs are all part of
God's course design. If life is a tapestry of stories, within these
pages are the stories of one golfer as he walked the course of life
with his friend, Savior and Lord." Experience the passion of a true
lover of the game and insights into the Christian life as Jerry
shares his experiences on the golf course and The Course of life.
J.D. Cole has experience in many ministries over the last
thirty-six years: Pastor-Teacher and Church Planter with the Next
Generation Churches, Field Staff with Young Life and Youth Pastor.
Presently, he is a Discipleship Trainer with Discipleship Training
International and an International Advocate for Haiti with Missions
Door. His life's mission has always been to simply tell people
about Jesus. The Course is an outworking of that desire. Jerry
loves the game of golf and holds a handicap index that moves over
and under 10. He considers his greatest accomplishment as helping
his wife, Susan raise their four children, Leta, Jonathan, Jessica
and Stephanie. He and Susan live in Nevada enjoying their
grandkids.
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