VD01-38-3 |
Combinatorial Optimization, Vol. 3: Applications of Combinatorial Optimization. |
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Paschos, Vangelis Th./ 9781848211490 |
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VD01-38-2 |
Combinatorial Optimization, Vol. 2: Paradigms of Combinatorial Optimization. |
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Paschos, Vangelis Th./ 9781848211483 |
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VD01-38-1 |
Combinatorial Optimization, Vol. 1: Concepts of Combinatorial Optimization: Concepts and Fundamentals. |
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Paschos, Vangelis Th./ 9781848211476 |
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VD01-38 |
Combinatorial Optimization, 3-Vols/Set. |
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Paschos, Vangelis Th./ 9781848211469 |
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SD01-384 |
Introduction to Analysis, An. |
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Bilodeau, Gerald G./ 9780763774929 |
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Completely revised and update, the second edition of An Introduction to Analysis presents a concise and sharply focused development of the basic concepts of analysis from the development of the real numbers through uniform convergences of a sequence of functions, and includes supplementary material on the calculus of functions of several variables and differential equations. This student-friendly text maintains a cautious and deliberate pace, and examples and figures are used extensively to assist the reader in understanding the concepts and then applying them. Students will become actively engaged in learning process with a broad and comprehensive collection of problems found at the end of each section. |
SD01-381 |
Single Variable Calculus: Early Transcendentals. |
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Zill, Dennis G./ 9780763749651 |
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Dennis Zill's mathematics texts are renowned for their student-friendly presentation and robust examples and problem sets. The Fourth Edition of Calculus of a Single Variable: Early Transcendentals is no exception. This outstanding revision incorporates all of the exceptional learning tools that have made Zill's texts a resounding success. Appropriate for the first two terms in the college calculus sequence, students are provided with a solid foundation in important mathematical concepts and problem solving skills, while maintaining the level of rigor expected of a Calculus course. |
SD01-381 |
Multivariable Calculus. |
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Zill, Dennis G./ 9780763749668 |
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Appropriate for the third semester in the college calculus sequence, the Fourth Edition of Multivarible Calculus, Volume II maintains student-friendly writing style and robust exercises and problem sets that Dennis Zill is famous for. Ideal as a follow-up companion to Zill first volume, or as a stand-alone text, this exceptional revision presents the topics typically covered in the traditional third course, including Vector-valued Functions, Differential Calculus of Functions of Several Variables, Integral Calculus of Functions of Several Variables, Vector Integral Calculus, and an Introduction to Differential Equations. |
SD01-379 |
Discrete Structures, Logic, and Computability. |
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Hein, James L./ 9780763772062 |
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Thoroughly updated, the new Third Edition of Discrete Structures, Logic, and Computability introduces beginning computer science and computer engineering students to the fundamental techniques and ideas used by computer scientists today, focusing on topics from the fields of mathematics, logic, and computer science itself. Dr. Hein provides elementary introductions to those ideas and techniques that are necessary to understand and practice the art and science of computing. The text contains all the topics for discrete structures in the reports of the IEEE/ACM Joint Task Force on Computing Curricula for computer science programs and for computer engineering programs. |
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Precalculus: A Functional Approach to Graphing and Problem Solving. |
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Smith, Karl J./ 9780763751777 |
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Precalculus: A Functional Approach to Graphing and Problem Solving prepares students for the concepts and applications they will encounter in future calculus courses. In far to many texts, process is stressed over insight and understanding, and students move on to calculus ill equipped to think conceptually about its essential ideas. This text provides sound development of the important mathematical underpinings of caculus, stimulating problems and exercises, and a well-developed, engaging pedagogy. Students will leave with a clear understanding of what lies ahead in their future calculus courses. Instructors will find that Smith's straightfoward, student-friendly presentation provides exactly what they have been looking for in a text! |
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Calculus: Early Transcendentals. |
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Zill, Dennis G./ 9780763759957 |
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Appropriate for the traditional 3-term college calculus course, Calculus: Early Transcendentals, Fourth Edition provides the student-friendly presentation and robust examples and problem sets for which Dennis Zill is known. This outstanding revision incorporates all of the exceptional learning tools that have made Zill's texts a resounding success. He carefully blends the theory and application of important concepts while offering modern applications and problem-solving skills. |
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Basic Real Analysis. |
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Howland, James S./ 9780763773182 |
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Ideal for the one-semester undergraduate course, Basic Real Analysis is intended for students who have recently completed a traditional calculus course and proves the basic theorems of Single Variable Calculus in a simple and accessible manner. It gradually builds upon key material as to not overwhelm students beginning the course and becomes more rigorous as they progresses. Optional appendices on sets and functions, countable and uncountable sets, and point set topology are included for those instructors who wish include these topics in their course. The author includes hints throughout the text to help students solve challenging problems. An online instructor's solutions manual is also available. |
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Applied Functional Analysis. |
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Siddiqui, A.H./ 9781848290266 |
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The area of functional analysis plays a central role in the technical sciences as the fundamental framework for modelling and analysis for a broad range of problems in classical disciplines and newer areas of inter-disciplinary nature. The methods of functional analysis have helped solve diverse real-world problems in optimisation, modelling, analysis, numerical approximation and computer simulation. With a comprehensive presentation of functional analysis results surfacing repeatedly in scientific and technological applications, this book expertly presides over the most current analytical and numerical methods in infinite-dimensional spaces. It introduces recent results in wavelet and Gabor analysis as applied in partial differential equations and signal and image processing. The main objective of this book is to present all those results of functional analysis which have been frequently applied in emerging areas of science and technology. The book is self-contained and provides examples, updated references and application in diverse fields. The set problems are thought provoking and many lead to new results and applications.
The book is intended to be a textbook for senior undergraduate and graduate students in mathematics. It will also be useful for an advanced course in systems engineering, computer engineering and management sciences. |
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Introduction to Wavelet Analysis with Applications. |
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Ahmad, Khalil/ 9781848290273 |
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This book is intended to serve as a textbook for graduate students of mathematics. It will also prove useful for the students of applied mathematics, industrial mathematics, statistics, operations research, computer science, engineering and biomedical sciences. The text begins with the introduction of Hilbert spaces, orthonormal systems and Fourier series. It is followed by Fourier transform, Gabor transform, Zak transform, wavelet transform, multiresolution analysis, construction of orthonormal financial mathematics, statistics, neural networks and biomedical sciences. |
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Introduction to Algebraic Geometry And Commutative Algebra. |
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Patil, D. P./ 9781904798637 |
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This book provides a gateway into the difficult two fields of algebraic geometry and commutative algebra. Algebraic geometry is in essence the study of the solution of equations. It is the backbone of the discipline of pure mathematics. Commutative algebra is a fundamental part of algebraic geometry, and is the study of commutative rings.
The authors have made a selection from the wealth of material in the discipline and have written concise, clear definitions and synopses.
The book will prove to be an ideal introductory text for graduate courses in pure mathematics involving algebraic geometry and algebraic number theory. |
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Functional Analysis. |
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Jain, P.K./ 9781906574673 |
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Functional Analysis is based on the lecture notes of distinguished authors and is designed to cater to the needs of students who are yet to be exposed to the subject, as well as senior undergraduate- and graduate-level students at universities the world over.
The text begins with a preliminary chapter that establishes uniform notations and covers background material in real analysis, linear algebra, and metric spaces. It is followed by chapters on Normed and Banach Spaces, Bounded Linear Operators and Bounded Linear Functionals. This text also deals with the concept and specific geometry of Hilbert Spaces, Functionals and Operators on Hilbert Spaces, and an Introduction to Spectral Theory. The appendix provides an introduction to Schauder Bases.
This is a second edition, written in a more simple and lucid language and illustrated with familiar examples. It is an ideal textbook for easy comprehension of the subject. The clear explanations, numerous examples, problems and illustrative figures also make the text invaluable for self-study and as a reference book. |
SD01-379 |
Mathematical Modeling with Excel. |
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Albright, Brian/ 9780763765668 |
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Mathematical modeling is the use of applying mathematics to real-world problems and investigating important questions about their outcomes. Mathematical Modeling with Excel presents various methods used to build and analyze mathematical models in a format that students can quickly comprehend. Excel is used as a tool to accomplish this goal of building and analyzing the models. Ideal for math and secondary math education majors, this text presents a wide variety of common types of models, as well as some new types, and presents each in a unique, easy-to-understand format. End-of-chapter exercises ask students to modify or refine the existing model, analyze it further, or adapt it to similar scenarios. |
SD01-376 |
Optimization Techniques. |
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Mohan, Chander/ 9781906574215 |
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The book titled `Optimization Techniques` is based on optimization techniques and O.R. related courses for undergraduate and postgraduate engineering and mathematics students of various universities as well as for researchers working on optimization problems.
The main objective of the book is to acquaint and familiarize the readers with different types of optimization techniques, solving optimization problems, implementing computational techniques, abstracting mathematical results and proofs etc.
The book gives a clear appreciation and good grasp over most of the currently available optimization techniques. Each method developed has been illustrated with solved examples. A set of exercises for self practice is given at the end of each chapter. A set of brief answer review questions relating to the finer detail of the topics discussed in each chapter preceding the set of exercises has been added to facilitate learning and enhance the value of the book. |
SD01-374 |
Reliability Methods for Finite Element Models. |
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Rajabalinejad, Mohammadreza/ 9781586039912 |
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For the reliability analysis of engineering structures a variety of methods is known, of which Monte Carlo simulation is widely considered to be among the most robust and most generally applicable. The absence of systematic errors and the fact that its error analysis is well-understood are properties that many competing methods lack. A drawback is the often large number of runs needed, particularly in complex models, where each run may entail a finite element analysis or other time consuming procedure. Variance reduction methods may be applied to reduce simulation cost. Reliability Methods for Finite Element Models describes methods to reduce the simulation cost even further, while retaining the accuracy of Monte Carlo, by taking into account widely-present monotonicity in limit state equations or other prior information. This publication focuses on problems where a highly accurate estimate of the failure probability is required, but an explicit expression for the limit state equation is unavailable and the limit state equation can only be evaluated without loss of accuracy via finite element analysis or some other time consuming process. |
SD01-372 |
Mathematical Analysis. |
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Malik, S. C./ 9781906574116 |
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This book is intended to serve as a text in mathematical analysis for undergraduate and postgraduate students. It opens with a brief outline of the essential properties of rational numbers using Dedekind's cut, and the properties of real numbers are established. This foundation supports the subsequent chapters. The material of some of topics-real sequences and series, continuity, functions of several variables, elementary and implicit functions, Riemann and Riemann-Stieltjes integrals, Lebesgue integrals, line and surface Integrals, double and triple integrals are discussed in details. Uniform convergence, Power series, Fourier series, and Improper integrals have been presented in a simple and lucid manner. A large number of solved examples taken mostly from lecture notes make the book useful for the students.
A chapter on Metric Spaces discussing completeness, compactness and connectedness of the spaces and two appendices discussing Beta-Gamma functions and Cantor's theory of real numbers add glory to the contents of the book. |
SD01-370 |
First Course in Complex Analysis with Applications, A. |
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Zill, Dennis G./ 9780763757724 |
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The new Second Edition of A First Course in Complex Analysis with Applications is a truly accessible introduction to the fundamental principles and applications of complex analysis. Designed for the undergraduate student with a calculus background but no prior experience with complex variables, this text discusses theory of the most relevant mathematical topics in a student-friendly manor. With Zill's clear and straightforward writing style, concepts are introduced through numerous examples and clear illustrations. Students are guided and supported through numerous proofs providing them with a higher level of mathematical insight and maturity. Each chapter contains a separate section on the applications of complex variables, providing students with the opportunity to develop a practical and clear understanding of complex analysis. |
SD01-370 |
Precalculus with Calculus Previews. |
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Zill, Dennis G./ 9780763766313 |
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Building off the success of Zill and Dewar's popular Precalculus with Calculus Previews, Fourth Edition, the new Expanded Volume includes all the outstanding features and learning tools found in the original text while incorporating additional coverage that some courses may require. With a continued aim to keep the text complete, yet concise, the authors added three additional chapters making the text a clear choice for many mainstream courses. New chapters include: Triangle Trigonometry, Systems of Equations and Inequalities, and Sequences and Series.
This student-friendly, four-color text offers numerous exercise sets and examples to aid in students' learning and understanding, and graphs and figures throughout serve to better illuminate key concepts. The exercise sets include engaging problems that focus on algebra, graphing, and function theory, the sub-text of so many calculus problems. The authors are careful to use the terminology of calculus in an informal and comprehensible way to facilitate the student's successful transition into future calculus courses.
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SD01-369 |
Numerical Methods with VBA Programming. |
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Hiestand, James W./ 9780763749644 |
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Numerical Methods with VBA Programming provides a unique and unified treatment of numerical methods and VBA computer programming, topics that naturally support one another within the study of engineering and science. This engaging text incorporates real-world scenarios to motivate technical material, helping students understand and retain difficult and key concepts. Such examples include comparing a two-point boundary value problem to determining when you should leave for the airport to catch a scheduled flight.
Numerical examples are accompanied by closed-form solutions to demonstrate their correctness. Within the programming sections, tips are included that go beyond language basics to make programming more accessible for students. A unique section suggest ways in which the starting values for non-linear equations may be estimated. Flow charts for many of the numerical techniques discussed provide general guidance to students without revealing all of the details. Useful appendices provide summaries of Excel and VBA commands, Excel functions accessible in VBA, basics of differentiation, and more! |
SD01-367 |
Essentials of Discrete Mathematics. |
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Hunter, David J./ 9780763748920 |
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Essentials of Discrete Mathematics is the ideal text for the one-semester discrete mathematics course geared towards computer science majors as well as students from a wide range of other disciplines including biology, sociology, linguistics, physics, chemistry and economics. The material is organized around five types of mathematical thinking: logical, relational, recursive, quantitative, and analytical, which results in a coherent presentation that steadily builds upon mathematical sophistication. Graphs are introduced early and referred to throughout the text, providing a richer context for examples and applications. Students will encounter algorithms near the end of the text, after they have built up enough skills and sophistication to analyze them properly. Clear and Concise, Essentials of Discrete Mathematics presents a unified and complete picture of discrete math that instructors can move actually through in a single semester! |
SD01-367 |
Geometry with an Introduction to Cosmic Topology. |
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Hitchman, Michael P./ 9780763754570 |
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Geometry with an Introduction to Cosmic Topology is motivated by questions that have ignited the imagination of stargazers since antiquity. What is the shape of the universe? Does the universe have an edge? Is it infinitely big? Dr. Hitchman aims to clarify this fascinating area of mathematics and focuses on the mathematical tools used to investigate the shape of the universe. The text follows the Erlangen Program, which develops geometry in terms of a space and a group of transformations of that space. This approach to non-Euclidean geometry provides excellent material by which students can learn the more sophisticated modes of thinking necessary in upper-division mathematics courses. |
SD01-365 |
Foundations of Topology. |
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Patty, C. W./ 9780763742348 |
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Topology is a branch of pure mathematics that deals with the abstract relationships found in geometry and analysis. Written with the mature student in mind, Foundations of Topology, Second Edition, provides a user-friendly, clear, and concise introduction to this fascinating area of mathematics. The author introduces topics that are well-motivated with thorough proofs, that make them easy to follow. Historical comments are dispersed throughout the text, and exercises, varying in degree of difficulty, are found at the end of each chapter. Foundations of Topology is an excellent text for teaching students how to develop the skills for writing clear and precise proofs. |
SD01-365 |
Elementary Course in Partial Differential Equations, An. |
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Amaranath, T./ 9780763762445 |
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An Elementary Course in Partial Differential Equations is a concise, 1-term introduction to partial differential equations for the upper-level undergraduate/graduate course in Mathematics, Engineering and Science. Divided into two accessible parts, the first half of the text presents first-order differential equations while the later half is devoted to the study of second-order partial differential equations. Numerous applications and exercises throughout allow students to test themselves on key material discussed. |
SD01-357 |
Linear Algebra: Theory and Applications. |
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Cheney, Ward/ 9780763750206 |
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Motivated by their desire for a single text that meets the various requirements found in linear algebra courses, renowned writing team Ward Cheney and David Kincaid have developed this multi-faceted introduction to linear algebra. Focusing on a comprehensive blend between theory and application, this text guides theoretically-oriented mathematics students as they devise proofs and deal with abstractions. Likewise, this unique blend appeals to applications-oriented science and engineering students with its numerous problem sets that focus on understanding and learning vector spaces, matrices, linear transformations, and other tools of applied linear algebra. With its flexible design, Linear Algebra: Theory and Application is an ideal text for instructors who wish to make their own choice of what material to emphasize, and includes over 3100 problems and homework assignments of great variety to highlight that choice. |
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Advanced Engineering Mathematics. |
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Dennis Zill/ 9780763779665 |
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Now with a full-color design, the new Fourth Edition of Zill's Advanced Engineering Mathematics provides an in-depth overview of the many mathematical topics necessary for students planning a career in engineering or the sciences. A key strength of this text is Zill's emphasis on differential equations as mathematical models, discussing the constructs and pitfalls of each. The Fourth Edition is comprehensive, yet flexible, to meet the unique needs of various course offerings ranging from ordinary differential equations to vector calculus. New modern applications and projects, coupled with a new resource CD-ROM included with the text makes Zill's classic text a must-have text and resource for Engineering Math students! |
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Linear Algebra With Applications. |
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Williams, Gareth/ 9780763782481 |
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Revised and edited, Linear Algebra with Applications, Seventh Edition is designed for the introductory course in linear algebra and is organized into 3 natural parts. Part 1 introduces the basics, presenting systems of linear equations, vectors and subspaces of Rn, matrices, linear transformations, determinants, and eigenvectors. Part 2 builds on this material, introducing the concept of general vector spaces, discussing properties of bases, developing the rank/nullity theorem and introducing spaces of matrices and functions. Part 3 completes the course with many of the important ideas and methods of numerical linear algebra, such as ill-conditioning, pivoting, and LU decomposition. Offering 28 core sections, the Seventh Edition successfully blends theory, important numerical techniques, and interesting applications making it ideal for engineers, scientists, and a variety of other majors. |
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Introduction to Fuzzy Set Theory and Fuzzy Logic, An. |
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Mohan, Chander/ 9781848290259 |
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There are several books available on Fuzzy Set Theory and Fuzzy Logic, however most of them are written by engineers and scientists with a specialised set of readers in mind. However this book has been written with a general type of reader in mind who, to begin with, does not have any specific applications of the subject in mind while starting to study the subject as a scientific discipline in its own right.
The book presents the basic rudiments of fuzzy set theory and fuzzy logic in a manner in which other topics of basic mathematics, such as set theory, algebra and calculus etc are usually presented. No specialised knowledge of any engineering discipline or other subject is expected of the reader. Effort has been made to tread the middle path, which avoids the extremes of abstract mathematical proofs and the specialised technical details of the areas of application. The author has taught this subject to undergraduate and postgraduate engineering and mathematics students for many years and has also used it in his research work related to the development of computational algorithms for solving real life optimisation problems. |