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Paul Dombey is a cold, unbending, pompous merchant, and a widower with two children - Paul and Florence. His chief ambition is to perpetuate the firm-name. He dreams of passing his business on to his son. Dombey dotes on his son, and neglects and mistreats his daughter.The "son" in the title of the book is incapable of ever joining the firm. A sickly and odd child, Paul dies at the age of six. Dombey pours his resentment and anger out on his daughter, whom he pushes away despite her efforts to earn her father's love.Eventually Dombey remarries, after literally acquiring his new wife from her father in a commercial transaction. Dombey is as bad a husband as he is a father and his marriage is loveless. His new bride hates Dombey and eventually runs off with Canker, his business manager. Dombey characteristically blames Florence for this reversal, and strikes her, causing Florence to run away as well.Abandoned by everyone, Dombey loses his business and goes half insane, living in his decaying house. Dombey is eventually reconciled to his daughter, who always a doormat forgives her father........
This book provides a detailed account of quantum theory with a much greater emphasis on the Heisenberg equations of motion and the matrix method. No other texts have come close to discuss quantum theory in terms of depth of coverage. The book features a deeper treatment of the fundamental concepts such as the rules of constructing quantum mechanical operators and the classical-quantal correspondence; the exact and approximate methods based on the Heisenberg equations; the determinantal approach to the scattering theory and the LSZ reduction formalism where the latter method is used to obtain the transition matrix. The uncertainty relations for a number of different observables are derived and discussed. A comprehensive chapter on the quantization of systems with nonlocalized interaction is included. Exact solvable models, and approximate techniques for solution of realistic many-body problems are also considered. The book takes a unified look in the final chapter, examining the question of measurement in quantum theory, with an introduction to the Bell's inequalities.
The scientific career of John Stewart Bell was distinguished by its breadth and its quality. He made several very important contributions to scientific fields as diverse as accelerator physics, high energy physics and the foundations of quantum mechanics.This book contains a large part of J S Bell's publications, including those that are recognized as his most important achievements, as well as others that are for no good reason less well known. The selection was made by Mary Bell, Martinus Veltman and Kurt Gottfried, all of whom were involved with John Bell both personally and professionally throughout a large part of his life. An introductory chapter has been written to help place the selected papers in a historical context and to review their significance.This book comprises an impressive collection of outstanding scientific work of one of the greatest scientists of the recent past, and it will remain important and influential for a long time to come.
This text focuses on the disagreements which existed in British political and military circles over nuclear strategy directly after World War II. Based on recently released documents, it argues that British policy in this important area was much more ambiguous than is commonly supposed.
This hands-on textbook introduces physics and nuclear engineering students to the experimental and theoretical aspects of fission physics for research and applications through worked examples and problem sets. The study of nuclear fission is currently undergoing a renaissance. Recent advances in the field create the opportunity to develop more reliable models of fission predictability and to supply measurements and data to critical applications including nuclear energy, national security and counter-proliferation, and medical isotope production. An Introduction to Nuclear Fission provides foundational knowledge for the next generation of researchers to contribute to nuclear fission physics.
Examines the Low Resistivity, High Mobility, and Zero Bandgap of GrapheneThe Graphene Science Handbook is a six-volume set that describes graphene's special structural, electrical, and chemical properties. The book considers how these properties can be used in different applications (including the development of batteries, fuel cells, photovoltaic