Author: Lánczos Kornél
Publisher:
ISBN:
Category :
Languages : en
Pages : 307
Book Description
The Variational Principles of Mechanics
An Epitome of the Elementary Principles of Mechanical Philosophy, Divested of Mathematical Demonstrations ... Second Edition ... Augmented and ... Illustrated by ... Woodcuts, and ... Tables
Elementary Principles in Statistical Mechanics
Author: Josiah Willard Gibbs
Publisher:
ISBN:
Category : Statistical mechanics
Languages : en
Pages : 238
Book Description
Publisher:
ISBN:
Category : Statistical mechanics
Languages : en
Pages : 238
Book Description
Finding List
Brief Subject Catalogue of the William B. Stephens Memorial Library
Author: William B. Stephens Memorial Library, Philadelphia
Publisher:
ISBN:
Category :
Languages : en
Pages : 182
Book Description
Publisher:
ISBN:
Category :
Languages : en
Pages : 182
Book Description
On the Principles of Elementary Quantum Mechanics
Author: Hilbrand Johannes Groenewold
Publisher: Springer
ISBN: 9401760659
Category : Science
Languages : en
Pages : 69
Book Description
Publisher: Springer
ISBN: 9401760659
Category : Science
Languages : en
Pages : 69
Book Description
Elementary Mechanics
Author: John G. Papastavridis
Publisher:
ISBN: 9789814619615
Category : Mechanics
Languages : en
Pages :
Book Description
Publisher:
ISBN: 9789814619615
Category : Mechanics
Languages : en
Pages :
Book Description
Classified Catalogue of the Carnegie Library of Pittsburgh
Author: Carnegie Library of Pittsburgh
Publisher:
ISBN:
Category : Classified catalogs (Dewey decimal)
Languages : en
Pages : 1306
Book Description
Publisher:
ISBN:
Category : Classified catalogs (Dewey decimal)
Languages : en
Pages : 1306
Book Description
Catalogue of All Books in the Circulating and Reference Departments of the Public School Library, Columbus ...
Author: Columbus (Ohio). Public School Library
Publisher:
ISBN:
Category : Bibliography
Languages : en
Pages : 1204
Book Description
Publisher:
ISBN:
Category : Bibliography
Languages : en
Pages : 1204
Book Description
Basic Physics: Principles and Concepts
Author: Avijit Lahiri
Publisher: Avijit Lahiri
ISBN:
Category : Science
Languages : en
Pages : 1990
Book Description
‘Basic Physics: Principles and Concepts’ is a book meant for students of physics from the late school to college levels, covering both general and advanced course materials. It is a great text on basic concepts in physics over a wide range of topics with a truly broad coverage, which makes it a source-book of unique value to students of physics – one that will be of use for teachers of the subject too. Students and teachers in related subjects like chemistry, biology, and the various engineering disciplines will also benefit greatly from it. The book is completely modern in approach, and is exhaustive and authentic. The presentation is exceptionally lucid, and captures the essential charm of physics. All the concepts are developed from elementary considerations, and are built up to quite advanced levels without loss of coherence, simplicity, or elegance. The mathematics is essentially at the high school level, and relatively advanced mathematical ideas have all been built up in a self-contained manner. What is the principle of similitude? What are polar and axial vectors? What is a wrench? How are sliding and rolling friction explained? What is an anharmonic oscillator? What is tidal force? How are the principal components of strain and stress defined? How does the time period of angular oscillations of a floating body depend on the metacentric height? What is boundary layer separation? What is the entropy principle? How does the Döppler formula look in the case of accelerated motion of the source and the observer? What is the relevance of diffraction in image formation? What is electrostatic shielding? What is the pathway of energy flow in an electrical circuit? What is ferromagnetism? What is back-EMF in a DC motor? What are metamaterials? What are the basic features of Rayleigh scattering? What is population inversion in laser operation? How are harmonic oscillators relevant in the explanation of the black body spectrum? What is relativistic aberration? What is spin-orbit coupling? What are the features of an op-amp? What is a SR flip-flop? For answers to all these and to a host of other relevant questions, you have to turn to the pages of this book. It has nineteen meticulously written chapters, systematically divided into sections and subsections, and a moderate number of well chosen problems with hints for their solution.
Publisher: Avijit Lahiri
ISBN:
Category : Science
Languages : en
Pages : 1990
Book Description
‘Basic Physics: Principles and Concepts’ is a book meant for students of physics from the late school to college levels, covering both general and advanced course materials. It is a great text on basic concepts in physics over a wide range of topics with a truly broad coverage, which makes it a source-book of unique value to students of physics – one that will be of use for teachers of the subject too. Students and teachers in related subjects like chemistry, biology, and the various engineering disciplines will also benefit greatly from it. The book is completely modern in approach, and is exhaustive and authentic. The presentation is exceptionally lucid, and captures the essential charm of physics. All the concepts are developed from elementary considerations, and are built up to quite advanced levels without loss of coherence, simplicity, or elegance. The mathematics is essentially at the high school level, and relatively advanced mathematical ideas have all been built up in a self-contained manner. What is the principle of similitude? What are polar and axial vectors? What is a wrench? How are sliding and rolling friction explained? What is an anharmonic oscillator? What is tidal force? How are the principal components of strain and stress defined? How does the time period of angular oscillations of a floating body depend on the metacentric height? What is boundary layer separation? What is the entropy principle? How does the Döppler formula look in the case of accelerated motion of the source and the observer? What is the relevance of diffraction in image formation? What is electrostatic shielding? What is the pathway of energy flow in an electrical circuit? What is ferromagnetism? What is back-EMF in a DC motor? What are metamaterials? What are the basic features of Rayleigh scattering? What is population inversion in laser operation? How are harmonic oscillators relevant in the explanation of the black body spectrum? What is relativistic aberration? What is spin-orbit coupling? What are the features of an op-amp? What is a SR flip-flop? For answers to all these and to a host of other relevant questions, you have to turn to the pages of this book. It has nineteen meticulously written chapters, systematically divided into sections and subsections, and a moderate number of well chosen problems with hints for their solution.