Rebound by LibraryThis book has hardback covers.Ex-library,With usual stamps and markings,In fair condition, suitable as a study copy.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
The Equation of Motion Spatial motion of free quantum particles is described by the Schrödinger wave equation. Typical solutions of this equation show an unlimited growth of the wave packet width. If the particle is illuminated then the scattered light will show the trajectory of the quantum particle. If a single photon of incoming wave number has scattered with the final wave number then the scatterer's wave function obtains a unitary factor. where the scattering angle between incoming wave number and the final wave number, respectively, is distributed according to the modulus square of the scattering amplitude. These processes interrupt the otherwise deterministic evolution of the wave function. We shall assume a certain diffuse light of different wave number. Then the scattering processes will occur randomly at a given rate. To get an easy insight into the resulting stochastic process, we shall assume that the wave length is much bigger than the wave packet width and, furthermore, that the repetition frequency of scatterings is big as compared to the time scale of the free dynamics of the particle. What follows will describe the dynamics of the illuminated particle. The particle's motion is influenced by the random force which is a certain stationary white noise. Hence, the linear stochastic might not be suitable to represent the experienced trajectory of the quantum particle. The jumps of the wave function assumes a particular classification of the photon states. Indeed, the final states as well as the initial ones have been classified according to their momenta. Obviously, trajectories can not be observed via the scattering angles of the photons. They are only observed by identifying the position where the scattered light has emerged. One might think of a lense inserted on the path of each scattered photon, making an optical map of the scatterer particle. Here we introduce the mathematical model of the above set up by the special Fourier transform of the scattering amplitude to present the influence of a single scattering process on the particle's wave function. This jump differs very much from the previous one in a sense that is non-linear; In the same approximation that we assumed for the previous process, this nonlinear one leads to the following counterpart of a henomenological equation. To make a formal comparison of this last procedure to the ordinary Schrödinger, The main difference would be the lack of the imaginary factor in the second term as if the random force had become pure imaginary. The third term then comes in just to restore normalization of the wave function. By allowing only one electron to get excited out of the ground state configuration, we might be able to strongly reduce the complexity of solving the Eqation of motion. A suitable way to achieve this goal is by exploiting the configuration interaction language and describing the N-Body wave function in terms of the Hartree-Fock ground state. The Hamiltonian operator is the residual electron-electron interaction, that go beyond the mean-field potential. The vector and dual vector with respect to the symmetric inner product required because of the non-hermiticity of Hamiltonian operator. The dipole interaction between singly-excited configurations reduces to transitions between states of the excited electron and transitions between ionic states. From the full N-Body wave function one can construct the ion density matrix by tracing over the excited electron. A CAP is placed far away from the atom such that an electron so far out does not affect the ion, esp. the ionic states. Therefore, the absorption of an electron by the CAP results only in an artificial loss of norm Spin-Orbit Splitting In order to include the effect of spin-orbit splitting in the occupied orbitals we account for spin-orbit splitting with degenerate-state perturbation theory within the (n,l) orbital manifold. Notes: Dr Lajos Diosi
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Vendeur : ThriftBooks-Atlanta, AUSTELL, GA, Etats-Unis
Hardcover. Etat : Fair. No Jacket. Missing dust jacket; Readable copy. Pages may have considerable notes/highlighting. ~ ThriftBooks: Read More, Spend Less. N° de réf. du vendeur G0137478739I5N01
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Vendeur : Zubal-Books, Since 1961, Cleveland, OH, Etats-Unis
Etat : Very Good. 1958 printing; ix, 646 pp., original blue cloth (hardcover), previous owner's name to front free endpaper, light wear to spine and cover edges else text clean & binding tight (lacks dust jacket). - If you are reading this, this item is actually (physically) in our stock and ready for shipment once ordered. We are not bookjackers. Buyer is responsible for any additional duties, taxes, or fees required by recipient's country. N° de réf. du vendeur ZB1335490
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Vendeur : Alplaus Books, Alplaus, NY, Etats-Unis
hardcover. Etat : Fair. Third printing, 1952. Waterstaining at lower forecorners. Gentle wear, aging. No markings noted. N° de réf. du vendeur 82154a
Quantité disponible : 1 disponible(s)
Vendeur : Solr Books, Lincolnwood, IL, Etats-Unis
Etat : acceptable. This book is in Acceptable condition. All pages are intact, but may have lots of notes, water damage or other issues and be ex library. N° de réf. du vendeur BCV.0137478739.A
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Vendeur : Solr Books, Lincolnwood, IL, Etats-Unis
Etat : good. This book is in Good condition. There may be some notes and highligting but otherwise the book is in overall good condition. N° de réf. du vendeur BCV.0137478739.G
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Vendeur : Alien Bindings, BALTIMORE, MD, Etats-Unis
Hardcover. Etat : Fair. No Jacket. First Edition. Quantum Theory by David Bohm, 5th printing (January 1956) of the original 1951 First Edition. Part of the Prentice Hall Physics Series, edited by Donald H. Menzel, this classic text is a valuable addition to any collection, though its condition makes it more suitable as a reading copy.The book is bound in blueish-gray cloth with gold lettering on the front cover and spine. The spine lettering has faded and is now barely visible. The edges show heavy wear, with the cloth splitting and fraying along the front shoulder, and the spine caps have completely worn off. Additionally, the corners are worn to the point where the underlying boards are exposed. Despite these flaws, the binding remains intact, and the interior pages, aside from a very small blue ink line at the bottom of the front edge of the text block and sparse markings on fewer than five pages, are clean and unmarked.David Bohm's "Quantum Theory" is widely regarded as one of the best expositions of the Copenhagen interpretation of quantum mechanics, penned by one of the most radical and influential theoretical physicists of the last century. Written during his tenure at Princeton before political circumstances led him to leave the United States, Bohm's work emerged during a time when the scientific community was deeply divided over quantum mechanics' foundational concepts. This book seeks to clarify the often ambiguous ideas presented by Bohr and Heisenberg, using the mathematical frameworks of de Broglie and Schroedinger, particularly emphasizing wave mechanics that challenge classical views of reality.Bohm explores the idea that quantum objects and their properties are inherently tied to their interactions, a concept that eventually led to his theory of the 'Implicate Order,' where the universe operates as a fundamentally interconnected whole. His aim was to present quantum theory in a way that doesn't rely solely on abstract mathematics, making the subject accessible to those willing to grapple with its challenging concepts. The book delves into the paradoxes of quantum theory, such as wave-particle duality, where particles can exist both as localized objects and as waves extending across space.While Bohm acknowledges that understanding quantum mechanics requires a shift in our conceptual framework beyond classical mechanics and everyday language, he endeavors to make these ideas comprehensible and engaging. This work is essential for students, researchers, and enthusiasts who wish to explore the deeper implications of quantum theory, offering insights that challenge the more simplified mathematical approaches that have since become the norm in the field.For your peace of mind, the book will be carefully packaged for shipment, with a USPS electronic tracking number issued free of charge. If you have further inquiries or wish to see more information or pictures regarding the book, feel free to contact us. N° de réf. du vendeur 16532
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Vendeur : Alien Bindings, BALTIMORE, MD, Etats-Unis
Hardcover. Etat : Good. No Jacket. First Edition. "Quantum Theory" by David Bohm offers an advanced exploration of quantum mechanics, presenting a qualitative and imaginative formulation beyond classical theory. This hardcover edition, originally published in 1951, is the 11th impression dated June 1964. It is in Good condition without a dust jacket. The matte gray cloth-covered boards feature gold lettering along the spine and front cover, maintaining a classic aesthetic. The covers show moderate wear, with rubbing along the edges, corners, and spine ends. There are small spots where the cloth has worn through at the corners, and a ¼-inch split in the cloth at the head of the rear spine shoulder. The spine caps are indented and worn, and faint spotting is visible along the front edge of the text block. The binding has some give and is slightly gapped at the head of the spine from standing upright on a shelf, though the hinges remain uncracked. There is a half-inch diameter light spot stain to the rear paste-down and rear flyleaf; otherwise, the interior pages are clean and free from mustiness, with mild tanning due to age. Bohm's work is intended for advanced undergraduate students, providing a rigorous yet accessible treatment of quantum mechanics. It covers a wide range of applications in considerable mathematical detail, while also exploring the relationship between quantum and classical concepts. The text offers a deep theoretical foundation for those seeking to understand the philosophical and conceptual implications of quantum theory. David Bohm, a distinguished physicist known for his radical views on quantum mechanics, presents an interpretation of the subject that challenges conventional thinking. His book attempts to clarify the Copenhagen Interpretation, offering a perspective that integrates the ideas of Bohr, Heisenberg, Schrödinger, Einstein, and de Broglie. Bohm's approach requires a fundamental shift in conceptual understanding, making this work an essential read for those interested in the foundations of quantum mechanics. To ensure safe delivery, the book will be carefully packaged with bubble wrap and placed in a sturdy carton box. A USPS electronic tracking number will be issued free of charge. Feel free to contact us for additional information or pictures of the book. N° de réf. du vendeur 16874
Quantité disponible : 1 disponible(s)
Vendeur : Alien Bindings, BALTIMORE, MD, Etats-Unis
Hardcover. Etat : Good. No Jacket. First Edition. Quantum Theory by David Bohm. This sought-after early 3rd printing (September 1952) of the original 1951 First Edition is part of the Prentice Hall Physics Series, edited by Donald H. Menzel. The book is in Good+ condition, making it a valuable addition to any collection, though its condition makes it more suitable as a reading copy.The book is bound in blue cloth with gold lettering on the front cover and spine, which appears to have been protected by a clear varnish that has left a glossy touch to the lettering, preserving it from fading. The edges show light wear from shelf rubbing. Corners and spine caps are lightly bumped, with a hint of fraying to the upper corners. There is light undulation and faint discoloration to the front edge of the text block. A small, light abrasion is visible on the front paste-down (inside the front cover) and the upper corner of the front flyleaf. Despite these flaws, the binding remains intact, and the interior pages are clean and unmarked.David Bohm's *Quantum Theory* provides a comprehensive and accessible exploration of quantum mechanics, written during his tenure at Princeton before political circumstances led him to leave the United States. It clarifies the often-ambiguous ideas of Bohr and Heisenberg, utilizing the mathematical frameworks of de Broglie and Schrödinger with an emphasis on wave mechanics. Bohm challenges classical views of reality, exploring the inherent interconnectedness of quantum objects and their properties through interactions.The book introduces readers to Bohm's revolutionary thinking, including the groundwork for his later development of the 'Implicate Order' theory, where the universe is fundamentally interconnected. It tackles paradoxes such as wave-particle duality and makes the abstract concepts of quantum mechanics engaging and comprehensible, while also presenting the foundational shifts required to move beyond classical frameworks.Essential for students, researchers, and enthusiasts, Bohm's work offers an in-depth perspective on quantum mechanics' implications, going beyond simplified mathematical approaches to address the conceptual foundations and mysteries of the quantum world.The book will be carefully packaged for shipment, ensuring protection during transit. A USPS electronic tracking number will be issued free of charge. If you have any questions or would like additional information or pictures, please feel free to contact us. N° de réf. du vendeur 16604
Quantité disponible : 1 disponible(s)