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Titlebook: Equilibrium Statistical Physics; Phases of Matter and Marc Baus,Carlos F. Tejero Textbook 20081st edition Springer-Verlag Berlin Heidelberg

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書目名稱Equilibrium Statistical Physics
副標(biāo)題Phases of Matter and
編輯Marc Baus,Carlos F. Tejero
視頻videohttp://file.papertrans.cn/314/313484/313484.mp4
概述Unique and consistent mathematical disquisition.All equations and deductions included.Problems and solutions
圖書封面Titlebook: Equilibrium Statistical Physics; Phases of Matter and Marc Baus,Carlos F. Tejero Textbook 20081st edition Springer-Verlag Berlin Heidelberg
描述The purpose of this textbook is to introduce the student to a basic area of mac- scopic physics, namely the statistical mechanical study of the different phases of matter, as well as the phase transitions between them. Although many books on statistical physics, for both equilibrium and non-equilibrium systems, are already available, they largely differ in contents. This generally re ects not only the diff- ent interests of their authors, but also the epoch in which they were written. For instance, the early books did usually devote much space to problems of the solid state, whereaslater ones do include, moreover,several aspects of the liquid state. At present, however, the main emphasis in physics is on soft matter (e. g. liquid cr- tals, colloids, polymers), and therefore these particular states of matter have also been includedin this volume. The main purposeof this textbookwill consist, hence, in providing its students with a rst introduction, within the general framework of equilibrium statistical physics, to a much larger variety of phases and phase tran- tions than was previously the case for textbooks of statistical mechanics. Many of these novel topics do, of course, deser
出版日期Textbook 20081st edition
關(guān)鍵詞Helium-Atom-Streuung; PED; Phase Transitions; STEM; Statistical Mechanics; Theoretical Physics; phase Tran
版次1
doihttps://doi.org/10.1007/978-3-540-74632-4
isbn_ebook978-3-540-74632-4
copyrightSpringer-Verlag Berlin Heidelberg 2008
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Canonical Ensembleentropy is the thermodynamic potential associated to this ensemble. The microcanonical ensemble presents two types of difficulties. The first one is mathematical since, even in the simplest systems, determining the entropy is not a trivial issue. The second difficulty is that the systems studied in
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Critical Phenomenaous (second-order) or where the order parameter of a continuous phase transition vanishes (Fig. 10.1). Such a thermodynamical state is called a critical state, or a critical point (CP), and its variables will be distinguished here by a subscript c. In the immediate vicinity of a CP, there occur a nu
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Interfacesquilibrium. In the various examples of coexistence considered in Sects. 9.1 and 9.2, the average densities of the phases are uniform, i.e., the conditions of mechanical equilibrium and chemical equilibrium at a given temperature have been derived from the free energy of each bulk phase (in the therm
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Topological Defects been considered to be perfect although, in practice, many bulk phases exhibit defects, i.e., domains where this order departs from the one originally postulated. Such defects are usually very stable, because the free energy cost to remove them easily exceeds the thermal energy, and prevent the syst
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