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Titlebook: Nuclear Models; Walter Greiner,Joachim A. Maruhn Book 1996 Springer-Verlag Berlin Heidelberg 1996 Kernmodelle.element.fission.neutron.nucl

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書目名稱Nuclear Models
編輯Walter Greiner,Joachim A. Maruhn
視頻videohttp://file.papertrans.cn/669/668620/668620.mp4
圖書封面Titlebook: Nuclear Models;  Walter Greiner,Joachim A. Maruhn Book 1996 Springer-Verlag Berlin Heidelberg 1996 Kernmodelle.element.fission.neutron.nucl
描述Theoretical physics has become a many-faceted science. For the young student it is difficult enough to cope with the overwhelming amount of new scientific material that has to be learned, let alone to obtain an overview of the entire field, which ranges from mechanics through electrodynamics, quantum mechanics, field theory, nuclear and heavy-ion science, statistical mechanics, thermodynamics, and solid- state theory to elementary-particle physics. And this knowledge should be acquired in just 8-10 semesters during which, in addition, a Diploma or Master‘s thesis has to be worked on or examinations prepared for. All this can be achieved only if the university teachers help to introduce the student to the new disciplines as early on as possible, in order to create interest and excitement that in turn set free essential new energy. Naturally, all inessential material must simply be eliminated. At the Johann Wolfgang Goethe University in Frankfurt we therefore confront the student with theoretical physics immediately in the first semester. Theoretical Mechanics I and II, Electrodynamics, and Quantum Mechanics I - an Introduction are the basic courses during the first two years. These
出版日期Book 1996
關(guān)鍵詞Kernmodelle; element; fission; neutron; nuclear model; nuclear models; nuclear physics; nucleon; particle ph
版次1
doihttps://doi.org/10.1007/978-3-642-60970-1
isbn_softcover978-3-540-59180-1
isbn_ebook978-3-642-60970-1
copyrightSpringer-Verlag Berlin Heidelberg 1996
The information of publication is updating

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沙發(fā)
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Electromagnetic Moments and Transitions,tionary states of the nucleus. In some cases the information may be summarized simply in terms of the electromagnetic multipole moments such as the quadrupole moment, which is more directly related to the shape of the nuclear charge distribution.
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Interplay of Collective and Single-Particle Motion,ions of both collective and single-particle character will be possible and will, in general be coupled. As a first approximation, it appears to be reasonable to regard the even-even nucleus as a . whose internal structure is not affected by the particle moving on its surface.
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Large-Amplitude Collective Motion,stitute the “inverse process” to fission, have opened the way to a much more detailed study. The theories discussed in this chapter are all devoted to large surface deformations in the sense of Chap. 6; other ways to excite the nucleus far from the ground state include high angular momenta or temperatures.
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Microscopic Models, use in Hartree-Fock and related calculations, but do not describe nucleon-nucleon scattering satisfactorily. They are thought to take into account some of the complicated correlations that characterize complex nuclei by introducing, e.g., a density dependence.
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arious disciplines such as physics, chemistry, or electrical engineering. When such transitions from one state to another take place, fluctuations, i.e., random processes, may play an im- portant role. Over the past decades it has turned out that the Fokker-Planck equation pro- vides a powerful tool
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