Solved Problems In Classical Mechanics


Download Solved Problems In Classical Mechanics PDF/ePub or read online books in Mobi eBooks. Click Download or Read Online button to get Solved Problems In Classical Mechanics book now. This website allows unlimited access to, at the time of writing, more than 1.5 million titles, including hundreds of thousands of titles in various foreign languages.

Download

Solved Problems in Classical Mechanics


Solved Problems in Classical Mechanics

Author: O.L. de Lange

language: en

Publisher: Oxford University Press

Release Date: 2010-05-06


DOWNLOAD





simulated motion on a computer screen, and to study the effects of changing parameters. --

1000 Solved Problems in Classical Physics


1000 Solved Problems in Classical Physics

Author: Ahmad A. Kamal

language: en

Publisher: Springer Science & Business Media

Release Date: 2011-03-18


DOWNLOAD





This book basically caters to the needs of undergraduates and graduates physics students in the area of classical physics, specially Classical Mechanics and Electricity and Electromagnetism. Lecturers/ Tutors may use it as a resource book. The contents of the book are based on the syllabi currently used in the undergraduate courses in USA, U.K., and other countries. The book is divided into 15 chapters, each chapter beginning with a brief but adequate summary and necessary formulas and Line diagrams followed by a variety of typical problems useful for assignments and exams. Detailed solutions are provided at the end of each chapter.

Lectures in Classical Mechanics


Lectures in Classical Mechanics

Author: Victor Ilisie

language: en

Publisher: Springer Nature

Release Date: 2020-02-05


DOWNLOAD





This exceptionally well-organized book uses solved problems and exercises to help readers understand the underlying concepts of classical mechanics; accordingly, many of the exercises included are of a conceptual rather than practical nature. A minimum of necessary background theory is presented, before readers are asked to solve the theoretical exercises. In this way, readers are effectively invited to discover concepts on their own. While more practical exercises are also included, they are always designed to introduce readers to something conceptually new. Special emphasis is placed on important but often-neglected concepts such as symmetries and invariance, especially when introducing vector analysis in Cartesian and curvilinear coordinates. More difficult concepts, including non-inertial reference frames, rigid body motion, variable mass systems, basic tensorial algebra, and calculus, are covered in detail. The equations of motion in non-inertial reference systems are derived in two independent ways, and alternative deductions of the equations of motion for variable mass problems are presented. Lagrangian and Hamiltonian formulations of mechanics are studied for non-relativistic cases, and further concepts such as inertial reference frames and the equivalence principle are introduced and elaborated on.