The presentation is aimed at the student who has a one-semester course in elementary strength of materials. Widely used as a classroom resource, it has also become a favorite reference and refresher on the subject among engineers everywhere. This is the first paperback edition of an equally successful text by this highly respected engineer and author.

Den hartog, wrote strength of materials, then Professor of Mechanical Engineering at Massachusetts Institute of Technology, an elementary text that still enjoys great popularity in engineering schools throughout the world. Four decades ago, J. P. The book reflects den hartog's impressive talent for making lively, and his unique ability to combine the scholarly insight of a distinguished scientist with the practical, discursive and often witty presentations of his subject, problem-solving orientation of an experienced industrial engineer.

The concepts here explored in depth include torsion, rotating disks, membrane stresses in shells, beams on elastic foundation, the two-dimensional theory of elasticity, bending of flat plates, the energy method and buckling. The book includes an especially thorough and valuable section of problems and answers which give both students and professionals practice in techniques and clear illustrations of applications.

. Advanced strength of materials takes this important subject into areas of greater difficulty, masterfully bridging its elementary aspects and its most formidable advanced reaches.

This material is presented in starred sections which may be omitted on a first reading without interrupting the flow of the presentation and includes a full treatment of the Mohr circle and its application to the determination of moments of inertia and strains as well as stresses; a lucid elementary presentation of the theory of the center of shear; and one of the few elementary presentations of the theory of the center of shear; and one of the few elementary discussions of the "Myosotis" method of calculating beam deflections, a method which often possesses considerable advantages over the more usual methods involving moment-area or the differential equation of bending.

Other material not usually found in elementary texts but which are frequently of great value to the practicing engineer are the discussions of the statically indeterminate truss, Maxwell's Reciprocal Theorem, plastic deformations, thick-walled cylinders, thick curved bars, reinforced concrete, and photoelasticity.

In all sections, both general principles and concrete applications are given. Another feature which readers have found unusually helpful is the 85-page section of 350 problems which gives the student practice in techniques and further illustrates applications. For a sound yet lucid first course in strength of materials.

Perhaps the chief reason for this is that in addition to all the customary elementary material on the subject i. E.

P. Drawing on his experience as an engineer in private industry and in the U. S. Although mathematics plays a role in the subject, Den Hartog employs the simplest possible mathematical approaches. During the life of the book, "from 1934 on, " he says, the art and science of engineering has grown at an astonishing rate and the subject of vibration has expanded with it.

Professor den hartog's constant revisions have kept his book at the forefront of this vital subject, as useful today as its earlier versions were to students of the past. In fact, the author wrote it to assist him in teaching the subject at Harvard. Numerous figures in the text enhance its value as a basic foundation in a field which Den Hartog calls "a necessary tool for almost every mechanical engineer.

The author examines such topics as the kinematics of vibration including harmonic motions and non-harmonic periodic motions, Rayleigh's method, degrees of freedom, gyroscopic effects, natural frequencies of torsional vibration, Karman vortices, relaxation oscillations, and systems with variable elasticity.

Navy's bureau of ships, den hartog applies theory to practice, discussing the effects of vibrations on turbines, electrical machines, helicopter rotors and airplane wings, diesel engines and electrical transmission lines. As a special aid to classroom work or self-study, this practical text includes an extensive selection of 233 problems and answers that test the student's mastery of every section of the book.

Chapters cover discrete coplanar forces, friction, space forces, relative motion, kinematics of a point, Dynamics of a Particle, Impulse and Momentum, Trusses and Cables, Conditions of Equilibrium, Work and Energy, Distributed Forces, Moments of Inertia, Beams, Dynamics of Plane Motion, The Method of Work, Kinematics of Plane Motion, and Gyroscopes.

On the other hand, the work is so replete with engineering applications and actual design problems that it is as valuable as a reference to the practicing engineer as it is as a text or refresher for the general engineering student. Mechanics is not a "heavy" book, despite the amount of material it covers and the clarity and exactness with which it treats this material.

Over 550 diagrams and drawings. More than 550 drawings and diagrams in the regular text and in the highly praised 112-page section of problems and answers further contribute to its lucidity and value. 334 problems, all with answers. Very thoroughly recommended to all those anxious to improve their real understanding of the principles of mechanics.

Mechanical World.

The present book is another excellent text from this series, a valuable addition to the English-language literature on Fourier series. This edition is organized into nine well-defined chapters: trigonometric fourier series, trigonometric Series with Decreasing Coefficients, Bessel Functions and Fourier-Bessel Series, Double Fourier Series and the Fourier Integral, Orthogonal Systems, Convergence of Trigonometric Fourier Series, Summation of Trigonometric Fourier Series, Operations on Fourier Series, and the Eigenfunction Method and its Applications to Mathematical Physics.

Richard silverman's excellent translation makes this book readily accessible to mathematicians and math students, as well as workers and students in the fields of physics and engineering. Silverman's series of translations of outstanding Russian textbooks and monographs is well-known to people in the fields of mathematics, physics, and engineering.

Richard A.

. Geared toward undergraduate students of applied mathematics, it will also prove valuable to physicists and engineers. In addition to many worked examples, this volume features a graded selection of problems with answers, where appropriate. This text opens with introductory chapters on matrix algebra, vectors and Cartesian tensors, and an analysis of deformation and stress.

Students who have familiarized themselves with the basic principles can go on to specialize in any of the different branches of continuum mechanics. This unified approach to the teaching of fluid and solid mechanics focuses on the general mechanical principles that apply to all materials.

The first third of the statistical analysis of experimental Data comprises a thorough grounding in the fundamental mathematical definitions, calculus, and facts underlying modern statistical theory — math knowledge beyond basic algebra, concepts, and analytic geometry is not required. Remaining chapters deal with statistics as an interpretative tool that can enable the laboratory researcher to determine his most effective methodology.

. You'll find lucid, including elements of measurement; nature of statistical analysis; design/analysis of experiments; statistics as diagnostic tool; precision and accuracy; testing statistical models; between-within classifications; two-way classifications; sampling principles, objectives, concise coverage of over 130 topics, methods; fitting of non-linear models; measurement of processes; components of variance; nested designs; the sensitivity ratio, and much more.

Also included are many examples, each worked in step-by-step fashion; nearly 200 helpful figures and tables; and concluding chapter summaries followed by references for further study. Mandel argues that, when backed by an understanding of its theoretic framework, statistics offers researchers "not only a powerful tool for the interpretation of experiments but also a task of real intellectual gratification.

The statistical analysis of Experimental Data provides the physical scientist with the explanations and models he requires to impress this invaluable tool into service.

Relevant to aspects of civil, mechanical, and aerospace engineering, this classic covers the essentials of static and dynamic instabilities. Topics range from theoretical explanations of 2- and 3-D stress and strain to practical applications such as torsion, thermal stress, bending, and wave propagation through solids.

Additional subjects include beam columns, buckling of rings, curved bars and arches, and experiments and design formulas. The best available guide to the elastic stability of large structures, this book introduces the principles and theory of structural stability. Timoshenko.

This book, a topic of profound importance in the study of physics, discusses thermodynamics, a companion to a basic textbook, in a manner which elucidates fundamental concepts and demonstrates their practical applicability. In these increasingly energy-conscious and costly times, technicians, appreciating the consequences of the laws of thermodynamics is more than a fascinating avenue of intellectual inquiry: it is a pragmatic concern imperative to all — students, politicians, as traditional energy sources are being depleted and revolutionary new sources are contemplated, engineers, scientists, businessmen, and anyone facing the energy challenges of the future.

C. Here is help understanding concepts which will prove all-important in the next century. Dr. Isbn13: 9780486632773. Van ness is a distinguished professor of chemical engineering at Rensselaer Polytechnic Institute and co-author of several textbooks on thermodynamics. Tracking provided on most orders.

Indisputably, this is a modern classic of science. Although it is assumed that the reader is familiar with the fundamental facts of thermometry and calorimetry, no advanced mathematics beyond calculus is assumed. Partial contents: thermodynamic systems, another proof of the equation of gaseous equilibria, absolute thermodynamic temperature, adiabatic transformations, thermodynamics of the reversible electric cell, p diagram, the entropy properties of cycles, the second law of thermodynamics Carnot cycle, gaseous reactions chemical equilibria in gases, thermal ionization of a gas, the distribution of a solute between 2 phases vapor pressure, thermionic effect, chemical equilibria in solutions, thermodynamic potential at constant pressure, thermodynamic potentials free energy, the entropy constant Nernst's theorem, principle of Le Chatelier, thermal engines, the thermodynamics of dilute solutions osmotic pressure, Clapeyron and Van der Waals equations, the phase rule, entropy of a system whose states can be represented on a V, Van't Hoff reaction box, the first law of thermodynamics application, boiling and freezing points, etc.

.

This text proposes to give graduate students in science and engineering a strong background in the more abstract and intellectually satisfying areas of dynamical theory. Isbn13: 9780486632773. Notes: 100% satisfaction guarantee. Tracking provided on most orders. Buy with confidence! Millions of books sold! Topics include d'alembert's principle and the idea of virtual work, the derivation of Langrange's equation of motion, special applications of Lagrange's equations, Hamilton's equations, the Hamilton-Jacobi theory, canonical transformations and an introduction to relativity.

Problems included at the end of each chapter will help the student greatly in solidifying his grasp of the principal concepts of classical dynamics. It is assumed that students are familiar with the principles of vectorial mechanics and have some facility in the use of this theory for analysis of systems of particles and for rigid-body rotation in two and three dimensions.

After a concise review of basic concepts in Chapter 1, the author proceeds from Lagrange's and Hamilton's equations to Hamilton-Jacobi theory and canonical transformations. Used book in Good Condition.

Den hartog, wrote strength of materials, then Professor of Mechanical Engineering at Massachusetts Institute of Technology, an elementary text that still enjoys great popularity in engineering schools throughout the world. Four decades ago, J. P. The book reflects den hartog's impressive talent for making lively, and his unique ability to combine the scholarly insight of a distinguished scientist with the practical, discursive and often witty presentations of his subject, problem-solving orientation of an experienced industrial engineer.

The concepts here explored in depth include torsion, rotating disks, membrane stresses in shells, beams on elastic foundation, the two-dimensional theory of elasticity, bending of flat plates, the energy method and buckling. The book includes an especially thorough and valuable section of problems and answers which give both students and professionals practice in techniques and clear illustrations of applications.

. Advanced strength of materials takes this important subject into areas of greater difficulty, masterfully bridging its elementary aspects and its most formidable advanced reaches.

## Strength of Materials Dover Books on Physics

All problems are complete with answers. As such it has also enjoyed wide popularity in engineering schools throughout the world. But the book was remarkable in a number of other ways, so that it has become one of the favorite refresher and reference works for engineers as well as a popular self-study text.This material is presented in starred sections which may be omitted on a first reading without interrupting the flow of the presentation and includes a full treatment of the Mohr circle and its application to the determination of moments of inertia and strains as well as stresses; a lucid elementary presentation of the theory of the center of shear; and one of the few elementary presentations of the theory of the center of shear; and one of the few elementary discussions of the "Myosotis" method of calculating beam deflections, a method which often possesses considerable advantages over the more usual methods involving moment-area or the differential equation of bending.

Other material not usually found in elementary texts but which are frequently of great value to the practicing engineer are the discussions of the statically indeterminate truss, Maxwell's Reciprocal Theorem, plastic deformations, thick-walled cylinders, thick curved bars, reinforced concrete, and photoelasticity.

In all sections, both general principles and concrete applications are given. Another feature which readers have found unusually helpful is the 85-page section of 350 problems which gives the student practice in techniques and further illustrates applications. For a sound yet lucid first course in strength of materials.

Perhaps the chief reason for this is that in addition to all the customary elementary material on the subject i. E.

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## Mechanical Vibrations Dover Civil and Mechanical Engineering

Den hartog, retired professor of mechanical engineering at MIT, reflects the author's unique ability to combine the scholarly insight of a distinguished scientist with the practical, problem-solving orientation of an experienced industrial engineer. His lucid explanations of complex problems are presented in a direct style and supported by illustrative models.P. Drawing on his experience as an engineer in private industry and in the U. S. Although mathematics plays a role in the subject, Den Hartog employs the simplest possible mathematical approaches. During the life of the book, "from 1934 on, " he says, the art and science of engineering has grown at an astonishing rate and the subject of vibration has expanded with it.

Professor den hartog's constant revisions have kept his book at the forefront of this vital subject, as useful today as its earlier versions were to students of the past. In fact, the author wrote it to assist him in teaching the subject at Harvard. Numerous figures in the text enhance its value as a basic foundation in a field which Den Hartog calls "a necessary tool for almost every mechanical engineer.

The author examines such topics as the kinematics of vibration including harmonic motions and non-harmonic periodic motions, Rayleigh's method, degrees of freedom, gyroscopic effects, natural frequencies of torsional vibration, Karman vortices, relaxation oscillations, and systems with variable elasticity.

Navy's bureau of ships, den hartog applies theory to practice, discussing the effects of vibrations on turbines, electrical machines, helicopter rotors and airplane wings, diesel engines and electrical transmission lines. As a special aid to classroom work or self-study, this practical text includes an extensive selection of 233 problems and answers that test the student's mastery of every section of the book.

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## Mechanics Dover Books on Physics

The emphasis is consistently on illuminating fundamental principles and in showing how they are embodied in a high number of real engineering and design problems concerning trusses, fly ball engine governors, turbines, anti-roll devices, beams, gyroscopes, propellers, hydraulic couplings, balances, pendulums, cranks, projectiles, cantilevers, jacks, springs, loaded cables, linkages, brakes, hoists, and hundreds of other mechanical systems and devices.Chapters cover discrete coplanar forces, friction, space forces, relative motion, kinematics of a point, Dynamics of a Particle, Impulse and Momentum, Trusses and Cables, Conditions of Equilibrium, Work and Energy, Distributed Forces, Moments of Inertia, Beams, Dynamics of Plane Motion, The Method of Work, Kinematics of Plane Motion, and Gyroscopes.

On the other hand, the work is so replete with engineering applications and actual design problems that it is as valuable as a reference to the practicing engineer as it is as a text or refresher for the general engineering student. Mechanics is not a "heavy" book, despite the amount of material it covers and the clarity and exactness with which it treats this material.

Over 550 diagrams and drawings. More than 550 drawings and diagrams in the regular text and in the highly praised 112-page section of problems and answers further contribute to its lucidity and value. 334 problems, all with answers. Very thoroughly recommended to all those anxious to improve their real understanding of the principles of mechanics.

Mechanical World.

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## Fourier Series Dover Books on Mathematics

He has also added a bibliography, containing suggestions for collateral and supplementary reading. 1962 edition. A total of 107 problems will be found at the ends of the chapters, including many specially added to this English-language edition, and answers are given at the end of the text. Every chapter moves clearly from topic to topic and theorem to theorem, with many theorem proofs given.The present book is another excellent text from this series, a valuable addition to the English-language literature on Fourier series. This edition is organized into nine well-defined chapters: trigonometric fourier series, trigonometric Series with Decreasing Coefficients, Bessel Functions and Fourier-Bessel Series, Double Fourier Series and the Fourier Integral, Orthogonal Systems, Convergence of Trigonometric Fourier Series, Summation of Trigonometric Fourier Series, Operations on Fourier Series, and the Eigenfunction Method and its Applications to Mathematical Physics.

Richard silverman's excellent translation makes this book readily accessible to mathematicians and math students, as well as workers and students in the fields of physics and engineering. Silverman's series of translations of outstanding Russian textbooks and monographs is well-known to people in the fields of mathematics, physics, and engineering.

Richard A.

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## Continuum Mechanics Dover Books on Physics

Succeeding chapters examine the mathematical statements of the laws of conservation of mass, momentum, and energy as well as the formulation of the mechanical constitutive equations for various classes of fluids and solids. The mechanics of fluids and the mechanics of solids represent the two major areas of physics and applied mathematics that meet in continuum mechanics, a field that forms the foundation of civil and mechanical engineering.. Geared toward undergraduate students of applied mathematics, it will also prove valuable to physicists and engineers. In addition to many worked examples, this volume features a graded selection of problems with answers, where appropriate. This text opens with introductory chapters on matrix algebra, vectors and Cartesian tensors, and an analysis of deformation and stress.

Students who have familiarized themselves with the basic principles can go on to specialize in any of the different branches of continuum mechanics. This unified approach to the teaching of fluid and solid mechanics focuses on the general mechanical principles that apply to all materials.

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## The Statistical Analysis of Experimental Data Dover Books on Mathematics

The increasing importance in laboratory situations of minutely precise measurements presents the chemist and physicist with numerous problems in data analysis. National bureau of standards statistics consultant john Mandel here draws a clear and fascinating blueprint for a systematic science of statistical analysis — geared to the particular needs of the physical scientist, with approach and examples aimed specifically at the statistical problems he is likely to confront.The first third of the statistical analysis of experimental Data comprises a thorough grounding in the fundamental mathematical definitions, calculus, and facts underlying modern statistical theory — math knowledge beyond basic algebra, concepts, and analytic geometry is not required. Remaining chapters deal with statistics as an interpretative tool that can enable the laboratory researcher to determine his most effective methodology.

. You'll find lucid, including elements of measurement; nature of statistical analysis; design/analysis of experiments; statistics as diagnostic tool; precision and accuracy; testing statistical models; between-within classifications; two-way classifications; sampling principles, objectives, concise coverage of over 130 topics, methods; fitting of non-linear models; measurement of processes; components of variance; nested designs; the sensitivity ratio, and much more.

Also included are many examples, each worked in step-by-step fashion; nearly 200 helpful figures and tables; and concluding chapter summaries followed by references for further study. Mandel argues that, when backed by an understanding of its theoretic framework, statistics offers researchers "not only a powerful tool for the interpretation of experiments but also a task of real intellectual gratification.

The statistical analysis of Experimental Data provides the physical scientist with the explanations and models he requires to impress this invaluable tool into service.

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## Theory of Elastic Stability Dover Civil and Mechanical Engineering

Particularly suitable for advanced undergraduate and graduate students of engineering, this volume is also an indispensable reference for professionals. It was co-authored by the father of modern engineering mechanics, Stephen Timoshenko, and James Gere, who updated the materials and worked closely with Dr.Relevant to aspects of civil, mechanical, and aerospace engineering, this classic covers the essentials of static and dynamic instabilities. Topics range from theoretical explanations of 2- and 3-D stress and strain to practical applications such as torsion, thermal stress, bending, and wave propagation through solids.

Additional subjects include beam columns, buckling of rings, curved bars and arches, and experiments and design formulas. The best available guide to the elastic stability of large structures, this book introduces the principles and theory of structural stability. Timoshenko.

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## Understanding Thermodynamics Dover Books on Physics

Buy with confidence! Millions of books sold! Approaching the subject for the first time may raise more queries and doubts than are usually handled in the basic, straightforward textbook. Based on a series of lectures delivered to 500 sophomore engineering students at Rensselaer Polytechnic Institute, Dr.This book, a topic of profound importance in the study of physics, discusses thermodynamics, a companion to a basic textbook, in a manner which elucidates fundamental concepts and demonstrates their practical applicability. In these increasingly energy-conscious and costly times, technicians, appreciating the consequences of the laws of thermodynamics is more than a fascinating avenue of intellectual inquiry: it is a pragmatic concern imperative to all — students, politicians, as traditional energy sources are being depleted and revolutionary new sources are contemplated, engineers, scientists, businessmen, and anyone facing the energy challenges of the future.

C. Here is help understanding concepts which will prove all-important in the next century. Dr. Isbn13: 9780486632773. Van ness is a distinguished professor of chemical engineering at Rensselaer Polytechnic Institute and co-author of several textbooks on thermodynamics. Tracking provided on most orders.

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## Thermodynamics Dover Books on Physics

Used book in Good Condition. Tracking provided on most orders. Buy with confidence! Millions of books sold! Based on a course of lectures delivered by the author at Columbia University, the text is elementary in treatment and remarkable for its clarity and organization. Isbn13: 9780486632773. Notes: 100% satisfaction guarantee.Indisputably, this is a modern classic of science. Although it is assumed that the reader is familiar with the fundamental facts of thermometry and calorimetry, no advanced mathematics beyond calculus is assumed. Partial contents: thermodynamic systems, another proof of the equation of gaseous equilibria, absolute thermodynamic temperature, adiabatic transformations, thermodynamics of the reversible electric cell, p diagram, the entropy properties of cycles, the second law of thermodynamics Carnot cycle, gaseous reactions chemical equilibria in gases, thermal ionization of a gas, the distribution of a solute between 2 phases vapor pressure, thermionic effect, chemical equilibria in solutions, thermodynamic potential at constant pressure, thermodynamic potentials free energy, the entropy constant Nernst's theorem, principle of Le Chatelier, thermal engines, the thermodynamics of dilute solutions osmotic pressure, Clapeyron and Van der Waals equations, the phase rule, entropy of a system whose states can be represented on a V, Van't Hoff reaction box, the first law of thermodynamics application, boiling and freezing points, etc.

.

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## Classical Dynamics Dover Books on Physics

An annotated bibliography at the end of each chapter, a detailed table of contents and index, and selected end-of-chapter answers complete this highly instructive text. Since lagrange laid the foundation of analytical dynamics some two centuries ago, the discipline has continued to evolve and develop, embracing the theories of Hamilton and Jacobi, Einstein's relativity theory and advanced theories of classical mechanics.This text proposes to give graduate students in science and engineering a strong background in the more abstract and intellectually satisfying areas of dynamical theory. Isbn13: 9780486632773. Notes: 100% satisfaction guarantee. Tracking provided on most orders. Buy with confidence! Millions of books sold! Topics include d'alembert's principle and the idea of virtual work, the derivation of Langrange's equation of motion, special applications of Lagrange's equations, Hamilton's equations, the Hamilton-Jacobi theory, canonical transformations and an introduction to relativity.

Problems included at the end of each chapter will help the student greatly in solidifying his grasp of the principal concepts of classical dynamics. It is assumed that students are familiar with the principles of vectorial mechanics and have some facility in the use of this theory for analysis of systems of particles and for rigid-body rotation in two and three dimensions.

After a concise review of basic concepts in Chapter 1, the author proceeds from Lagrange's and Hamilton's equations to Hamilton-Jacobi theory and canonical transformations. Used book in Good Condition.

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