Introduction to High Energy Physics

Introduction to High Energy Physics
Author: Donald H. Perkins
Publisher: Cambridge University Press
Total Pages: 454
Release: 2000-04-13
Genre: Science
ISBN: 1139643371

This highly-regarded text provides a comprehensive introduction to modern particle physics. Extensively rewritten and updated, this 4th edition includes developments in elementary particle physics, as well as its connections with cosmology and astrophysics. As in previous editions, the balance between experiment and theory is continually emphasised. The stress is on the phenomenological approach and basic theoretical concepts rather than rigorous mathematical detail. Short descriptions are given of some of the key experiments in the field, and how they have influenced our thinking. Although most of the material is presented in the context of the Standard Model of quarks and leptons, the shortcomings of this model and new physics beyond its compass (such as supersymmetry, neutrino mass and oscillations, GUTs and superstrings) are also discussed. The text includes many problems and a detailed and annotated further reading list.

The Addison-Wesley Science Handbook

The Addison-Wesley Science Handbook
Author: Gordon J. Coleman
Publisher: Addison-Wesley Longman
Total Pages: 292
Release: 1997
Genre: Mathematics
ISBN:

Brings together a broad range of essential science information. Both fundamental and advanced concepts are presented in table, glossaries and summaries for quick memory refreshers at all levels.

Lectures On Computation

Lectures On Computation
Author: Richard P. Feynman
Publisher: Addison-Wesley Longman
Total Pages: 328
Release: 1996-09-08
Genre: Computers
ISBN:

Covering the theory of computation, information and communications, the physical aspects of computation, and the physical limits of computers, this text is based on the notes taken by one of its editors, Tony Hey, on a lecture course on computation given b

Thinking Physics for Teaching

Thinking Physics for Teaching
Author: C. Bernardini
Publisher: Springer Science & Business Media
Total Pages: 440
Release: 2012-12-06
Genre: Psychology
ISBN: 1461519217

The research in Physics Education has to do with the search of solutions to the complex problem of how to improve the learning and teaching of physics. The complexity of the problem lies in the different fields of knowledge that need to be considered in the research. In fact, besides the disciplinary knowledge in physics (which must be considered from the conceptual, the historical, and the epistemological framework), one has to take into account some basic knowledge in the context of psychology and the cognitive sciences (for the general and contextual aspects of learning) and some basic knowledge in education and comunication (for what concerns teaching skills and strategies). Looking back at the historical development of the research one may recognize that the complexity of the endeavour was not clear at first but became clear in its development, which shifted the focus of the research in the course of time from physics to learning to teaching. We may say that the research started, more than 30 years ago, with a focus on disciplinary knowledge. Physicists in different parts of the western world, after research work in some field of physics, decided to concentrate on the didactical comunication of physical knowledge.

Basic Notions Of Condensed Matter Physics

Basic Notions Of Condensed Matter Physics
Author: Philip W. Anderson
Publisher: CRC Press
Total Pages: 413
Release: 2018-03-09
Genre: Science
ISBN: 0429973748

First Published in 2018. Routledge is an imprint of Taylor & Francis, an Informa company.

Special Relativity

Special Relativity
Author: David J. Morin
Publisher:
Total Pages: 270
Release: 2017-01-20
Genre: Special relativity (Physics)
ISBN: 9781542323512

This book is written for high school and college students learning about special relativity for the first time. It will appeal to the reader who has a healthy level of enthusiasm for understanding how and why the various results of special relativity come about. All of the standard introductory topics in special relativity are covered: historical motivation, loss of simultaneity, time dilation, length contraction, velocity addition, Lorentz transformations, Minkowski diagrams, causality, Doppler effect, energy/momentum, collisions/decays, force, and 4-vectors. Additionally, the last chapter provides a brief introduction to the basic ideas of general relativity, including the equivalence principle, gravitational time dilation, and accelerating reference frames. The book features more than 100 worked-out problems in the form of examples in the text and solved problems at the end of each chapter. These problems, along with the discussions in the text, will be a valuable resource in any course on special relativity. The numerous examples also make this book ideal for self-study. Very little physics background is assumed (essentially none in the first half of the book). An intriguing aspect of special relativity is that it is challenging due to its inherent strangeness, as opposed to a heavy set of physics prerequisites. Likewise for the math prerequisite: calculus is used on a few occasions, but it is not essential to the overall flow of the book.