Quantum Mechanics

Author: Zhang Yongde
Publisher:
Publish Date: 2005-09-01
Features: 20 years of effort, the crystallization of collaboration from 30 senior professors, and the spiritual manifestation of 150 outstanding talents! "Physics Problem Dictionary" is the result of long-term joint efforts by 30 senior professors of the University of Science and Technology of China. This large-scale university physics problem-solving series originated from the renowned "Solved Problems in American Physics" series in the field of Chinese physics. "Solved Problems in American Physics" was the outcome of the CUSPEA project, primarily consisting of solutions to entrance examination questions from graduate schools of prestigious American universities. The revision work for this edition spanned nearly two years. The series continues to cover all fundamental physics content, including mechanics, thermodynamics, optics, electricity, modern physics, and the "four major forces of mechanics." Additionally, it includes topics such as nuclear physics, particle physics, condensed matter physics, plasma physics, astrophysics, laser physics, quantum optics, and quantum information physics, broadly encompassing the entire undergraduate physics curriculum in comprehensive universities. This revision incorporates recent examination questions from the United States, China, Russia, and other countries, with some problems derived from the research achievements of the editorial team.
"Physics Problem Dictionary" is guided by advanced educational concepts, emphasizing physics, interdisciplinary integration, and connection with research, making it rich in "contemporary relevance." It serves as a reference tool for physics faculty and students. "Physics Problem Dictionary" is a large-scale, comprehensive physics problem-solving series. Its content covers the entire undergraduate physics curriculum in comprehensive universities: from classical physics (mechanics, thermodynamics, optics, electricity, modern physics) to the "four major forces of mechanics," as well as nuclear physics, particle physics, condensed matter physics, plasma physics, astrophysics, laser physics, quantum optics, and quantum information. The content is innovative, emphasizing physics, interdisciplinary integration, and connection with research.
The "Quantum Mechanics" volume includes topics such as quantum mechanics fundamentals, one-dimensional stationary problems, bound-state problems in central fields, orbital and spin angular momentum, the motion of charged particles in electromagnetic fields, stationary-state approximations, scattering, time-dependent perturbation methods and transitions, few-body problems, and quantum information. This series can serve as a learning guide for undergraduate physics majors, a reference for graduate entrance examinations, and a teaching resource for physics instructors at various higher education institutions.

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