An Introduction to Mechanics

An Introduction to Mechanics

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  • Author: Daniel Kleppner
  • Publisher: Cambridge University Press
  • ISBN: 0521198119
  • Category : Science
  • Languages : en
  • Pages : 563

This second edition is ideal for classical mechanics courses for first- and second-year undergraduates with foundation skills in mathematics.


Introduction to the Principles of Mechanics

Introduction to the Principles of Mechanics

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  • Author: Walter Hauser
  • Publisher:
  • ISBN:
  • Category : Science
  • Languages : en
  • Pages : 536


Physics from Planet Earth - An Introduction to Mechanics

Physics from Planet Earth - An Introduction to Mechanics

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  • Author: Joseph C. Amato
  • Publisher: CRC Press
  • ISBN: 1498752152
  • Category : Science
  • Languages : en
  • Pages : 604

Expose Your Students to the Elegant World of Physics in an Enticing WayPhysics from Planet Earth - An Introduction to Mechanics provides a one-semester, calculus-based introduction to classical mechanics for first-year undergraduate students studying physics, chemistry, astronomy, or engineering. Developed from classroom-tested materials refined an


An Introduction to Mechanics

An Introduction to Mechanics

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  • Author: John William Campbell
  • Publisher:
  • ISBN:
  • Category : Mathematics
  • Languages : en
  • Pages : 400


Mechanics of Sport

Mechanics of Sport

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  • Author: Karen Sprunt
  • Publisher: Coachwise 1st4sport
  • ISBN: 9781902523347
  • Category : Biomechanics
  • Languages : en
  • Pages : 220


An Introduction to the History of Structural Mechanics

An Introduction to the History of Structural Mechanics

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  • Author: Edoardo Benvenuto
  • Publisher: Springer Science & Business Media
  • ISBN: 1461229820
  • Category : Technology & Engineering
  • Languages : en
  • Pages : 324

This book is one of the finest I have ever read. To write a foreword for it is an honor, difficult to accept. Everyone knows that architects and master masons, long before there were mathematical theories, erected structures of astonishing originality, strength, and beauty. Many of these still stand. Were it not for our now acid atmosphere, we could expect them to stand for centuries more. We admire early architects' visible success in the distribution and balance of thrusts, and we presume that master masons had rules, perhaps held secret, that enabled them to turn architects' bold designs into reality. Everyone knows that rational theories of strength and elasticity, created centuries later, were influenced by the wondrous buildings that men of the sixteenth, seventeenth, and eighteenth centuries saw daily. Theorists know that when, at last, theories began to appear, architects distrusted them, partly because they often disregarded details of importance in actual construction, partly because nobody but a mathematician could understand the aim and func tion of a mathematical theory designed to represent an aspect of nature. This book is the first to show how statics, strength of materials, and elasticity grew alongside existing architecture with its millenial traditions, its host of successes, its ever-renewing styles, and its numerous problems of maintenance and repair. In connection with studies toward repair of the dome of St. Peter's by Poleni in 1743, on p.


Mechanics of Granular Materials: An Introduction

Mechanics of Granular Materials: An Introduction

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  • Author: K. Iwashita
  • Publisher: CRC Press
  • ISBN: 9789054104612
  • Category : Technology & Engineering
  • Languages : en
  • Pages : 408

This textbook compiles reports written by about 35 internationally recognized authorities, and covers a range of interests for geotechnical engineers. Topics include: fundamentals for mechanics of granular materials; continuum theory of granular materials; and discrete element approaches.


Introduction to Mechanics of Solid Materials

Introduction to Mechanics of Solid Materials

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  • Author: Lallit Anand
  • Publisher: Oxford University Press
  • ISBN: 0192866079
  • Category : Science
  • Languages : en
  • Pages : 593

Introduction to Mechanics of Solid Materials is concerned with the deformation, flow, and fracture of solid materials. This textbook offers a unified presentation of the major concepts in Solid Mechanics for junior/senior-level undergraduate students in the many branches of engineering - mechanical, materials, civil, and aeronautical engineering among others. The book begins by covering the basics of kinematics and strain, and stress and equilibrium, followed by a coverage of the small deformation theories for different types of material response: (i) Elasticity; (ii) Plasticity and Creep; (iii) Fracture and Fatigue; and (iv) Viscoelasticity. The book has additional chapters covering the important material classes of: (v) Rubber Elasticity, and (vi) Continuous-fiber laminated composites. The text includes numerous examples to aid the student. A substantial companion volume with example problems is available free of charge on the book's companion website.


Introduction to Mechanics and Symmetry

Introduction to Mechanics and Symmetry

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  • Author: J.E. Marsden
  • Publisher: Springer Science & Business Media
  • ISBN: 9780387986432
  • Category : Science
  • Languages : en
  • Pages : 610

A development of the basic theory and applications of mechanics with an emphasis on the role of symmetry. The book includes numerous specific applications, making it beneficial to physicists and engineers. Specific examples and applications show how the theory works, backed by up-to-date techniques, all of which make the text accessible to a wide variety of readers, especially senior undergraduates and graduates in mathematics, physics and engineering. This second edition has been rewritten and updated for clarity throughout, with a major revamping and expansion of the exercises. Internet supplements containing additional material are also available.


Introduction to Soliton Theory: Applications to Mechanics

Introduction to Soliton Theory: Applications to Mechanics

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  • Author: Ligia Munteanu
  • Publisher: Springer Science & Business Media
  • ISBN: 1402025777
  • Category : Mathematics
  • Languages : en
  • Pages : 325

This monograph is planned to provide the application of the soliton theory to solve certain practical problems selected from the fields of solid mechanics, fluid mechanics and biomechanics. The work is based mainly on the authors’ research carried out at their home institutes, and on some specified, significant results existing in the published literature. The methodology to study a given evolution equation is to seek the waves of permanent form, to test whether it possesses any symmetry properties, and whether it is stable and solitonic in nature. Students of physics, applied mathematics, and engineering are usually exposed to various branches of nonlinear mechanics, especially to the soliton theory. The soliton is regarded as an entity, a quasi-particle, which conserves its character and interacts with the surroundings and other solitons as a particle. It is related to a strange phenomenon, which consists in the propagation of certain waves without attenuation in dissipative media. This phenomenon has been known for about 200 years (it was described, for example, by the Joule Verne's novel Les histoires de Jean Marie Cabidoulin, Éd. Hetzel), but its detailed quantitative description became possible only in the last 30 years due to the exceptional development of computers. The discovery of the physical soliton is attributed to John Scott Russell. In 1834, Russell was observing a boat being drawn along a narrow channel by a pair of horses.