Further Mathematics for the Physical Sciences
Title | Further Mathematics for the Physical Sciences PDF eBook |
Author | Michael Tinker |
Publisher | John Wiley & Sons |
Pages | 758 |
Release | 2000-06-08 |
Genre | Science |
ISBN | 0471867233 |
Further Mathematics for the Physical Sciences Further Mathematics for the Physical Sciences aims to build upon the reader's knowledge of basic mathematical methods, through a gradual progression to more advanced methods and techniques. Carefully structured as a series of self-paced and self-contained chapters, this text covers the essential and most important techniques needed by physical science students. Starting with complex numbers, the text then moves on to cover vector algebra, determinants, matrices, differentiation, integration, differential equations and finally vector calculus, all within an applied environment. The reader is guided through these different techniques with the help of numerous worked examples, applications, problems, figures and summaries. The authors aim to provide high-quality and thoroughly class-tested material to meet the changing needs of science students. Further Mathematics for the Physical Sciences: * Is a carefully structured text, with self-contained chapters. * Gradually introduces mathematical techniques within an applied environment. * Includes many worked examples, applications, problems and summaries in each chapter. Further Mathematics for the Physical Sciences will be invaluable to all students of physics, chemistry and engineering, needing to develop or refresh their knowledge of basic mathematics. The book's structure will make it equally valuable for course use, home study or distance learning.
Mathematics for the Physical Sciences
Title | Mathematics for the Physical Sciences PDF eBook |
Author | Herbert S Wilf |
Publisher | Courier Corporation |
Pages | 304 |
Release | 2013-01-18 |
Genre | Mathematics |
ISBN | 0486153347 |
Topics include vector spaces and matrices; orthogonal functions; polynomial equations; asymptotic expansions; ordinary differential equations; conformal mapping; and extremum problems. Includes exercises and solutions. 1962 edition.
Mathematics for the Physical Sciences
Title | Mathematics for the Physical Sciences PDF eBook |
Author | Laurent Schwartz |
Publisher | Courier Dover Publications |
Pages | 369 |
Release | 2008-04-21 |
Genre | Mathematics |
ISBN | 0486466620 |
Concise treatment of mathematical entities employs examples from the physical sciences. Topics include distribution theory, Fourier series, Laplace transforms, wave and heat conduction equations, and gamma and Bessel functions. 1966 edition.
Basic Mathematics for the Physical Sciences / Further Mathematics for the Physical Sciences Set
Title | Basic Mathematics for the Physical Sciences / Further Mathematics for the Physical Sciences Set PDF eBook |
Author | Robert Lambourne |
Publisher | Wiley |
Pages | 0 |
Release | 2013-06-24 |
Genre | Science |
ISBN | 9780470741313 |
Provides high-quality and thoroughly class-tested basic mathematics for the physical sciences This book set provides a thorough introduction to the essential mathematical techniques needed in the physical sciences. Carefully structured as a series of self-paced and self-contained chapters, it covers the basic techniques on which more advanced material is built. Starting with arithmetic and algebra, Basic Mathematics for the Physical Sciences then moves on to cover basic elements of geometry, vector algebra, differentiation and finally integration, all within an applied environment. The book handily guides readers through these different techniques with the help of numerous worked examples, applications, problems, figures, and summaries.
Mathematics for Physical Science and Engineering
Title | Mathematics for Physical Science and Engineering PDF eBook |
Author | Frank E. Harris |
Publisher | Academic Press |
Pages | 787 |
Release | 2014-05-24 |
Genre | Mathematics |
ISBN | 0128010495 |
Mathematics for Physical Science and Engineering is a complete text in mathematics for physical science that includes the use of symbolic computation to illustrate the mathematical concepts and enable the solution of a broader range of practical problems. This book enables professionals to connect their knowledge of mathematics to either or both of the symbolic languages Maple and Mathematica. The book begins by introducing the reader to symbolic computation and how it can be applied to solve a broad range of practical problems. Chapters cover topics that include: infinite series; complex numbers and functions; vectors and matrices; vector analysis; tensor analysis; ordinary differential equations; general vector spaces; Fourier series; partial differential equations; complex variable theory; and probability and statistics. Each important concept is clarified to students through the use of a simple example and often an illustration. This book is an ideal reference for upper level undergraduates in physical chemistry, physics, engineering, and advanced/applied mathematics courses. It will also appeal to graduate physicists, engineers and related specialties seeking to address practical problems in physical science. - Clarifies each important concept to students through the use of a simple example and often an illustration - Provides quick-reference for students through multiple appendices, including an overview of terms in most commonly used applications (Mathematica, Maple) - Shows how symbolic computing enables solving a broad range of practical problems
Mathematics for the Physical Sciences
Title | Mathematics for the Physical Sciences PDF eBook |
Author | James B. Seaborn |
Publisher | |
Pages | 260 |
Release | 2014-09-01 |
Genre | |
ISBN | 9781468492804 |
Basic Mathematics for the Physical Sciences
Title | Basic Mathematics for the Physical Sciences PDF eBook |
Author | Robert Lambourne |
Publisher | John Wiley & Sons |
Pages | 694 |
Release | 2000-04-07 |
Genre | Science |
ISBN | 0471852074 |
This textbook provides a thorough introduction to the essential mathematical techniques needed in the physical sciences. Carefully structured as a series of self-paced and self-contained chapters, this text covers the basic techniques on which more advanced material is built. Starting with arithmetic and algebra, the text then moves on to cover basic elements of geometry, vector algebra, differentiation and finally integration, all within an applied environment. The reader is guided through these different techniques with the help of numerous worked examples, applications, problems, figures, and summaries. The authors provide high-quality and thoroughly class-tested material to meet the changing needs of science students. The book: * Is a carefully structured text, with self-contained chapters. * Gradually introduces mathematical techniques within an applied environment. * Includes many worked examples, applications, problems, and summaries in each chapter. This text is an essential resource for all students of physics, chemistry and engineering, needing to develop or refresh their knowledge of basic mathematics. The book's structure makes it equally valuable for course use, home study or distance learning.