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Sunday, May 25, 2014

Halliday’s Fundamentals of Physics 10th edition by J.Walker


The 10th edition of Halliday’s Fundamentals of Physics building upon previous issues by offering several new features and additions. Examples include a new print component will revised to conform to the Version 5 design  chapter sections organized and numbered to match the Concept Modules  Learning Objectives have been added  illustrations changed to reflect (and advertise) multimedia versions available in WileyPLUS  and new problems provide a means of assigning the multimedia assets.

 The new edition offers most accurate, extensive and varied set of assessment questions of any course management program in addition to all questions including some form of question assistance – including answer specific feedback – to facilitate success. The text also offers multimedia presentations (videos and animations) of much of the material that provide an alternative pathway through the material for those who struggle with reading scientific exposition. Furthermore, the book includes math review content in both a self-study module for more in-depth review and also in just-in-time math videos for a quick refresher on a specific topic.

 The Halliday content is widely accepted as clear, correct, and complete. The end-of-chapters problems are without peer. The new design, which was introduced in 9e continues with 10e, making this new edition of Halliday the most accessible and reader-friendly book on the market.

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Le grand roman de la physique quantique (Max Planck.Albert Einstein.Niels Bohr.Werner Heisenberg.Erwin Schrodinger.Paul Dirac)


Du 24 au 29 octobre 1927 se tint à Bruxelles le cinquième congrès Solvay sur le thème « Electrons et photons ». il résume la période la plus spectaculaire de l’histoire de la physique. Avec la présence de dix-sept titulaires ou futurs lauréats du Prix Nobel sur les vingt-neuf participants, ce congrès fut l’une des plus remarquables rencontres de cerveaux qui se soient jamais tenues. Il marquera aussi la fin d’une ère de créativité en physique comparable à la révolution scientifique du XVIIe menée par Galilée et Newton.
Manjit Kuman fait revivre sous nos yeux les différentes confrontations de cette époque où la découverte de la double nature de la lumière et du rayonnement ébranla toute la communauté scientifique. Même si dès 1905, Einstein, avait déjà une idée de ce que pouvait être la mécanique quantique, il ne pouvait imaginer le chemin particulièrement nouveau qu’emprunterait Niles Bohr. Derrière les théories les plus abstraites, Kumar nous décrit l’affrontement des hommes qui, malgré leur intelligence hors norme, peuvent se comporter avec une extrême violence pour défendre leur conviction. Planck, de Broglie, Pauli, Heisenberg, Schrödinger, Dirac… Quelles visions de la réalité avaient-ils ? Certains partageaient l’esprit d’école de Copenhague et considéraient que le réalité dépendait des conditions expérimentales suivies. D’autres estimaient que « Dieu » ne jouait pas aux dés et que le fameux chat de Schrödinger était soit bien mort soit bien vivant !
Aujourd’hui encore la question n’est toujours pas réglée. C’est ce que nous raconte brillamment le livre de Manjit Kuman.

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Saturday, May 24, 2014

Particle Physics Third Edition by Brian Martin, Graham Shaw


Particle Physics: Third Edition is a revision of a highly regarded introduction to particle physics. In its two previous editions this book has proved to be an accessible and balanced introduction to modern particle physics, suitable for those students needed a more comprehensive introduction to the subject than provided by the ‘compendium’ style physics books.
In the Third Edition the standard model of particle physics is carefully developed whilst unnecessary mathematical formalism is avoided where possible. Emphasis is placed on the interpretation of experimental data in terms of the basic properties of quarks and leptons.
One of the major developments of the past decade has been the establishing of the existence of neutrino oscillations. This will have a profound effect on the plans of experimentalists. This latest edition brings the text fully up-to-date, and includes new sections on neutrino physics, as well as expanded coverage of detectors, such as the LHC detector.
  • End of chapter problems with a full set of hints for their solutions provided at the end of the book.
  • An accessible and carefully structured introduction to this demanding subject.
  • Includes more advanced material in optional ‘starred’ sections.
  • Coverage of the foundations of the subject, as well as the very latest developments. 
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Nuclear and Particle Physics: An Introduction by Brian Martin


An accessible introduction to nuclear and particle physics with equal coverage of both topics, this text covers all the standard topics in particle and nuclear physics thoroughly and provides a few extras, including chapters on experimental methods; applications of nuclear physics including fission, fusion and biomedical applications; and unsolved problems for the future. It includes basic concepts and theory combined with current and future applications. An excellent resource for physics and astronomy undergraduates in higher-level courses, this text also serves well as a general reference for graduate studies.


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Introduction to Nuclear and Particle Physics by T. Ferbel, A Das


The original edition of Introduction to Nuclear and Particle Physics was used with great success for single-semester courses on nuclear and particle physics offered by American and Canadian universities at the undergraduate level. It was also translated into German, and used overseas. Being less formal but well-written, this book is a good vehicle for learning the more intuitive rather than formal aspects of the subject. It is therefore of value to scientists with a minimal background in quantum mechanics, but is sufficiently substantive to have been recommended for graduate students interested in the fields covered in the text. In the second edition, the material begins with an exceptionally clear development of Rutherford scattering and, in the four following chapters, discusses sundry phenomenological issues concerning nuclear properties and structure, and general applications of radioactivity and of the nuclear force. This is followed by two chapters dealing with interactions of particles in matter, and how these characteristics are used to detect and identify such particles. A chapter on accelerators rounds out the experimental aspects of the field.


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Introduction to Classical Mechanics: With Problems and Solutions by David Morin


This textbook covers all the standard introductory topics in classical mechanics, including Newton's laws, oscillations, energy, momentum, angular momentum, planetary motion, and special relativity. It also explores more advanced topics, such as normal modes, the Lagrangian method, gyroscopic motion, fictitious forces, 4-vectors, and general relativity. It contains more than 250 problems with detailed solutions so students can easily check their understanding of the topic. There are also over 350 unworked exercises which are ideal for homework assignments. Password protected solutions are available to instructors at www.cambridge.org/9780521876223. The vast number of problems alone makes it an ideal supplementary text for all levels of undergraduate physics courses in classical mechanics. Remarks are scattered throughout the text, discussing issues that are often glossed over in other textbooks, and it is thoroughly illustrated with more than 600 figures to help demonstrate key concepts.

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Friday, May 23, 2014

A Guide to Physics Problems, Part 1 - Mechanics, Relativity, and Electrodynamics by Sidney B. Cahn, Boris E. Nadgorny, C.N. Yang


In order to equip hopeful graduate students with the knowledge necessary to pass the qualifying examination, the authors have assembled and solved standard and original problems from major American universities – Boston University, University of Chicago, University of Colorado at Boulder, Columbia, University of Maryland, University of Michigan, Michigan State, Michigan Tech, MIT, Princeton, Rutgers, Stanford, Stony Brook, University of Wisconsin at Madison – and Moscow Institute of Physics and Technology. A wide range of material is covered and comparisons are made between similar problems of different schools to provide the student with enough information to feel comfortable and confident at the exam. Guide to Physics Problems is published in two volumes: this book, Part 1,covers Mechanics, Relativity and ElectrodynamicsPart 2 covers Thermodynamics, Statistical Mechanics and Quantum Mechanics.
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Superstring Theory 2 by Michael B. Green


Twenty-five years ago, Michael Green, John Schwarz, and Edward Witten wrote two volumes on string theory. Published during a period of rapid progress in this subject, these volumes were highly influential for a generation of students and researchers. Despite the immense progress that has been made in the field since then, the systematic exposition of the foundations of superstring theory presented in these volumes is just as relevant today as when first published. Volume 2 is concerned with the evaluation of one-loop amplitudes, the study of anomalies and phenomenology. It examines the low energy effective field theory analysis of anomalies, the emergence of the gauge groups E8 x E8 and SO(32) and the four-dimensional physics that arises by compactification of six extra dimensions. Featuring a new Preface setting the work in context in light of recent advances, this book is invaluable for graduate students and researchers in high energy physics and astrophysics, as well as mathematicians.

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Superstring Theory Volume 1, Introduction by Michael B. Green


In recent years, superstring theory has emerged as a promising approach to reconciling general relativity with quantum mechanics and unifying the fundamental interactions. Problems that have seemed insuperable in previous approaches take on a totally new character in the context of superstring theory, and some of them have been overcome. Interest in the subject has greatly increased following a succession of exciting recent developments. This two-volume book attempts to meet the need for a systematic exposition of superstring theory and its applications accessible to as wide an audience as possible.

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Advanced Topics in Quantum Field Theory: A Lecture Course - M. Shifman



Since the advent of Yang-Mills theories and supersymmetry in the 1970s, quantum field theory - the basis of the modern description of physical phenomena at the fundamental level - has undergone revolutionary developments. This is the first systematic and comprehensive text devoted specifically to modern field theory, bringing readers to the cutting edge of current research. The book emphasizes nonperturbative phenomena and supersymmetry. It includes a thorough discussion of various phases of gauge theories, extended objects and their quantization, and global supersymmetry from a modern perspective. Featuring extensive cross-referencing from traditional topics to recent breakthroughs in the field, it prepares students for independent research. The side boxes summarizing the main results and over 70 exercises make this an indispensable book for graduate students and researchers in theoretical physics.


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