An Engineering Companion to the Mechanics of Materials

An Engineering Companion to the Mechanics of Materials

Author: Christopher Jenkins

Publisher: Momentum Press

Published: 2015-08-26

Total Pages: 284

ISBN-13: 1606506625

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An Engineering Companion to Mechanics of Materials is the first volume in the Momentum Press collection The Modern Engineering Companions: A Systems Approach to the Study of Engineering. In Mechanics of Materials, we apply the intuitive “systems approach” to learning, the advantages of which are several. The student first gets a broad overview of the entire subject rather than the narrow piecemeal vision afforded by the traditional “component approach” common to most engineering texts. Mechanics of Materials comes with additional features to improve student learning, including Common Confusing Concepts (C3) noted and clarii ed, indication of key concepts, side bar discussions, worked examples, and exercises for developing engineering intuition. The Companions are intended as a supplementary resource to help both undergraduate, graduate, and post-graduate students better learn and understand engineering concepts.


Mechanics of Materials Companion

Mechanics of Materials Companion

Author: Bjong Yeigh

Publisher: John Wiley & Sons

Published: 2001-11-26

Total Pages: 204

ISBN-13:

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Written to be used with your primary textbook in a first Strength of materials course ... figures and notations were adopted from a ... text by Roy Craig (Mechanics of materials, 1996).--Pref.


Mechanics of Materials in SI Units

Mechanics of Materials in SI Units

Author: Russell C. Hibbeler

Publisher:

Published: 2017-09-20

Total Pages: 896

ISBN-13: 9781292178202

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For undergraduate Mechanics of Materials courses in Mechanical, Civil, and Aerospace Engineering departments. Thorough coverage, a highly visual presentation, and increased problem solving from an author you trust. Mechanics of Materials clearly and thoroughly presents the theory and supports the application of essential mechanics of materials principles. Professor Hibbeler's concise writing style, countless examples, and stunning four-color photorealistic art program -- all shaped by the comments and suggestions of hundreds of colleagues and students -- help students visualise and master difficult concepts. The Tenth SI Edition retains the hallmark features synonymous with the Hibbeler franchise, but has been enhanced with the most current information, a fresh new layout, added problem solving, and increased flexibility in the way topics are covered in class.


The Circuit Designer's Companion

The Circuit Designer's Companion

Author: Tim Williams

Publisher: Elsevier

Published: 2004-11-06

Total Pages: 354

ISBN-13: 0080476511

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Tim Williams' Circuit Designer's Companion provides a unique masterclass in practical electronic design that draws on his considerable experience as a consultant and design engineer. As well as introducing key areas of design with insider's knowledge, Tim focuses on the art of designing circuits so that every production model will perform its specified function – and no other unwanted function - reliably over its lifetime. The combination of design alchemy and awareness of commercial and manufacturing factors makes this an essential companion for the professional electronics designer. Topics covered include analog and digital circuits, component types, power supplies and printed circuit board design. The second edition includes new material on microcontrollers, surface mount processes, power semiconductors and interfaces, bringing this classic work up to date for a new generation of designers.· A unique masterclass in the design of optimized, reliable electronic circuits· Beyond the lab - a guide to electronic design for production, where cost-effective design is imperative · Tips and know-how provide a whole education for the novice, with something to offer the most seasoned professional


A Mathematical Companion to Quantum Mechanics

A Mathematical Companion to Quantum Mechanics

Author: Shlomo Sternberg

Publisher: Courier Dover Publications

Published: 2019-03-20

Total Pages: 337

ISBN-13: 0486839826

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This original 2019 work, based on the author's many years of teaching at Harvard University, examines mathematical methods of value and importance to advanced undergraduates and graduate students studying quantum mechanics. Its intended audience is students of mathematics at the senor university level and beginning graduate students in mathematics and physics. Early chapters address such topics as the Fourier transform, the spectral theorem for bounded self-joint operators, and unbounded operators and semigroups. Subsequent topics include a discussion of Weyl's theorem on the essential spectrum and some of its applications, the Rayleigh-Ritz method, one-dimensional quantum mechanics, Ruelle's theorem, scattering theory, Huygens' principle, and many other subjects.


Engineering Materials 2

Engineering Materials 2

Author: Michael F. Ashby

Publisher: Elsevier

Published: 2014-06-28

Total Pages: 380

ISBN-13: 1483297217

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Provides a thorough explanation of the basic properties of materials; of how these can be controlled by processing; of how materials are formed, joined and finished; and of the chain of reasoning that leads to a successful choice of material for a particular application. The materials covered are grouped into four classes: metals, ceramics, polymers and composites. Each class is studied in turn, identifying the families of materials in the class, the microstructural features, the processes or treatments used to obtain a particular structure and their design applications. The text is supplemented by practical case studies and example problems with answers, and a valuable programmed learning course on phase diagrams.


Partial Differential Equations in Mechanics 1

Partial Differential Equations in Mechanics 1

Author: A.P.S. Selvadurai

Publisher: Springer Science & Business Media

Published: 2013-04-17

Total Pages: 610

ISBN-13: 3662040069

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This two-volume work focuses on partial differential equations (PDEs) with important applications in mechanical and civil engineering, emphasizing mathematical correctness, analysis, and verification of solutions. The presentation involves a discussion of relevant PDE applications, its derivation, and the formulation of consistent boundary conditions.


Mechanics of Materials

Mechanics of Materials

Author: William F. Riley

Publisher:

Published: 2007

Total Pages: 730

ISBN-13:

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This leading book in the field focuses on what materials specifications and design are most effective based on function and actual load-carrying capacity. Written in an accessible style, it emphasizes the basics, such as design, equilibrium, material behavior and geometry of deformation in simple structures or machines. Readers will also find a thorough treatment of stress, strain, and the stress-strain relationships. These topics are covered before the customary treatments of axial loading, torsion, flexure, and buckling.


Continuum Mechanics and Thermodynamics

Continuum Mechanics and Thermodynamics

Author: Ellad B. Tadmor

Publisher: Cambridge University Press

Published: 2011-12-15

Total Pages: 373

ISBN-13: 1139504827

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Continuum mechanics and thermodynamics are foundational theories of many fields of science and engineering. This book presents a fresh perspective on these fundamental topics, connecting micro- and nanoscopic theories and emphasizing topics relevant to understanding solid-state thermo-mechanical behavior. Providing clear, in-depth coverage, the book gives a self-contained treatment of topics directly related to nonlinear materials modeling. It starts with vectors and tensors, finite deformation kinematics, the fundamental balance and conservation laws, and classical thermodynamics. It then discusses the principles of constitutive theory and examples of constitutive models, presents a foundational treatment of energy principles and stability theory, and concludes with example closed-form solutions and the essentials of finite elements. Together with its companion book, Modeling Materials, (Cambridge University Press, 2011), this work presents the fundamentals of multiscale materials modeling for graduate students and researchers in physics, materials science, chemistry and engineering.