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This classic, the first of three volumes, presents techniques that emphasize the unity of highenergy particle physics with electrodynamics, gravitational theory, and manyparticle cooperative phenomena. What emerges is a theory intermediate in position between operator field theory and Smatrix theory, which rejects the dogmas of each and gains thereby a calculational ease and intuitiveness that make it a worthy contender to displace the earlier formulations.
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This product may contain chemicals known to the State of California to cause cancer,
birth defects, or other reproductive harm.
Q: What is the main focus of 'Particles, Sources, and Fields: Vol. 1'?A: This book presents techniques that highlight the connection between high-energy particle physics, electrodynamics, gravitational theory, and many-particle cooperative phenomena.
Q: Who is the author of this book?A: The author of 'Particles, Sources, and Fields: Vol. 1' is Julian Schwinger, a renowned physicist.
Q: What is the condition of the book?A: The book is listed as 'New', ensuring that it is in excellent condition for readers.
Q: How many pages does this book have?A: This volume contains a total of 444 pages.
Q: What is the binding type of this book?A: The book is available in a paperback binding.
Q: When was 'Particles, Sources, and Fields: Vol. 1' published?A: The book was published on November 6, 1998.
Q: What edition is this book?A: This is the First Printing edition of 'Particles, Sources, and Fields: Vol. 1'.
Q: Is this book suitable for beginners in physics?A: While the book offers valuable insights, it is more suited for readers with some background in high-energy physics and related fields.
Q: Can this book help with understanding advanced physics concepts?A: Yes, it provides a theoretical framework that may help readers grasp complex concepts in particle physics and more.
Q: What is the significance of this book in the field of physics?A: The book is significant as it offers a unique theory positioned between operator field theory and S-matrix theory, aiming for calculational ease and intuitiveness.
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