A good introduction to this subject, even at the cost of some repetition, allows one to approach the many more advanced texts and monographs with better understanding and a deeper sense of appreciation that both students and teachers can share alike. The principles of electromagnetism, as synthesized in Maxwell's equations and the Lorentz force, have such an astonishing range of applicability. Clear departure points for further study are indicated along the way. Whether you’re celebrating a wedding, a baby, a birthday, or other memorable milestone, our wish lists will help you and your guests find the perfect gifts. Review chapters spaced throughout the text summarize the material. An extensive set of accessible problems enhances and extends the coverage. Furthermore, these lectures, although relatively concise, take one from Coulomb's law to Maxwell's equations and special relativity in a lucid and logical fashion. This introduction to electricity and magnetism, aimed at the very best students, assumes only a good course in calculus, and familiarity with vectors and Newton's laws it is otherwise self-contained. From the Back CoverThese lectures provide an introduction to a subject that together with classical mechanics, quantum mechanics, and modern physics lies at the heart of today's physics curriculum. The goal of this text is to help the reader obtain a clear working knowledge of the very useful and powerful methods of equilibrium statistical mechanics and to enhance the understanding and appreciation of the more advanced texts. The targeted audience is first-year graduate students, and advanced undergraduates, in physics, chemistry, and the related physical sciences. Some knowledge of thermodynamics is assumed, although the book starts with an appropriate review of that topic. The book assumes introductory courses in classical and quantum mechanics, as well as familiarity with multi-variable calculus and the essentials of complex analysis. An appendix provides an introduction to non-equilibrium statistical mechanics through the Boltzmann equation and its extensions. The coverage is enhanced and extended through an extensive set of accessible problems. The aim of this book is to provide a clear, logical, and self-contained treatment of equilibrium statistical mechanics starting from Boltzmann's two statistical assumptions, and to present a wide variety of applications to diverse physical assemblies. The science of statistical mechanics is concerned with defining the thermodynamic properties of a macroscopic sample in terms of the properties of the microscopic systems of which it is composed.
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