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Titlebook: Low-Energy Electron Diffraction; Experiment, Theory a Michel A. Hove,William H. Weinberg,Chi-Ming Chan Textbook 1986 Springer-Verlag Berlin

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0931-5195 ate physics and chemistry. The atomic-scale structure is one of the most important aspects in the understanding of the behavior of surfaces in such widely diverse fields as heterogeneous catalysis, microelectronics, adhesion, lubrication, cor­ rosion, coatings, and solid-solid and solid-liquid inter
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Methods of Surface Crystallography by LEED,ed for the determination of surface structures through the interpretation of intensity data. (The interpretation of the LEED pattern has been discussed extensively in Chap. 3.) These methods fall into two classes: the kinematic and the dynamical methods.
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Two-Dimensional Order-Disorder Phase Transitions, chapter is concerned with the first topic, while the latter two topics are treated in Chaps. 9 and 10, respectively. In particular, order-disorder phase transitions in chemisorbed overlayers will be considered explicitly here due to their theoretical and practical importance.
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The Future of LEED,ntion they deserve, even though the technique can already be applied to them. For example, oxides, magnetic materials, alloys, disordered structures, and phase transitions present many unanswered questions that can be studied with the present state of the art.
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The Relevance and Historical Development of LEED,solid. Even more than this, it is one of the most fundamentally important properties of a solid since the bulk of the solid “communicates” inevitably with its environment via its surface. Furthermore, there is an increasing trend in a myriad of technologically important areas to maximize the ratio of the surface area of a material to its volume.
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Springer Series in Surface Scienceshttp://image.papertrans.cn/l/image/588864.jpg
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