Chemical Bonds In Semiconductors And Solids
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Author | : Academician N. N. Sirota |
Publisher | : Springer Science & Business Media |
Total Pages | : 173 |
Release | : 2012-12-06 |
Genre | : Science |
ISBN | : 1468486829 |
The present four volumes, published under the collective title of "Chemical Bonds in Solids," are the translation of the two Russian books "Chemical Bonds in Crystals" and "Chemical Bonds in Semiconductors." These contain the papers presented at the Conference on Chemical Bonds held in Minsk between May 28 and June 3, 1967, together with a few other papers (denoted by an asterisk) which have been specially incorporated. Earlier collections (also published by the Nauka i Tekhnika Press of the Belorussian Academy of Sciences) were entitled "Chemical Bonds in Semiconductors and Solids" (1965) and "Chemical Bonds in Semiconductors and Thermody namics" (1966) and are available in English editions from Consultants Bureau, New York (pub lished in 1967 and 1968, respectively). The subject of chemical bonds in crystals, including semiconductors, has recently become highly topical and has attracted the interest of a wide circle of physicists, chemists, and engineers. Until recently, the most successful description of the properties of solids (including semi conductors) has been provided by the band theory, which still dominates the physics of solids. Nevertheless, it is clear that the most universal approach is that based on the general theory of chemical bonds in crystals, in which details of the electron distributions between atoms and of the wave functions appear quite explicitly.
Author | : Akademii︠a︡ nauk SSSR. Nauchnyĭ sovet po poluprovodnikam |
Publisher | : |
Total Pages | : 312 |
Release | : 1967 |
Genre | : Chemical bonds |
ISBN | : |
Author | : Walter A. Harrison |
Publisher | : Courier Corporation |
Total Pages | : 610 |
Release | : 2012-03-08 |
Genre | : Science |
ISBN | : 0486141780 |
This text offers basic understanding of the electronic structure of covalent and ionic solids, simple metals, transition metals and their compounds; also explains how to calculate dielectric, conducting, bonding properties.
Author | : Nikolaĭ Nikolaevich Sirota |
Publisher | : |
Total Pages | : 730 |
Release | : 1972 |
Genre | : Chemical bonds |
ISBN | : |
Author | : Aaron N. Bloch |
Publisher | : |
Total Pages | : 356 |
Release | : 1981 |
Genre | : Science |
ISBN | : |
Structure and Bonding in crystals ...
Author | : N. N. Sirota |
Publisher | : |
Total Pages | : 338 |
Release | : 1972 |
Genre | : Chemical bonds |
ISBN | : |
Author | : OpenStax |
Publisher | : |
Total Pages | : 622 |
Release | : 2016-11-04 |
Genre | : Science |
ISBN | : 9781680920451 |
University Physics is a three-volume collection that meets the scope and sequence requirements for two- and three-semester calculus-based physics courses. Volume 1 covers mechanics, sound, oscillations, and waves. Volume 2 covers thermodynamics, electricity and magnetism, and Volume 3 covers optics and modern physics. This textbook emphasizes connections between between theory and application, making physics concepts interesting and accessible to students while maintaining the mathematical rigor inherent in the subject. Frequent, strong examples focus on how to approach a problem, how to work with the equations, and how to check and generalize the result. The text and images in this textbook are grayscale.
Author | : |
Publisher | : |
Total Pages | : 414 |
Release | : 1972 |
Genre | : Chemical bonds |
ISBN | : |
Author | : Anders Nilsson |
Publisher | : Elsevier |
Total Pages | : 533 |
Release | : 2011-08-11 |
Genre | : Science |
ISBN | : 0080551912 |
Molecular surface science has made enormous progress in the past 30 years. The development can be characterized by a revolution in fundamental knowledge obtained from simple model systems and by an explosion in the number of experimental techniques. The last 10 years has seen an equally rapid development of quantum mechanical modeling of surface processes using Density Functional Theory (DFT). Chemical Bonding at Surfaces and Interfaces focuses on phenomena and concepts rather than on experimental or theoretical techniques. The aim is to provide the common basis for describing the interaction of atoms and molecules with surfaces and this to be used very broadly in science and technology. The book begins with an overview of structural information on surface adsorbates and discusses the structure of a number of important chemisorption systems. Chapter 2 describes in detail the chemical bond between atoms or molecules and a metal surface in the observed surface structures. A detailed description of experimental information on the dynamics of bond-formation and bond-breaking at surfaces make up Chapter 3. Followed by an in-depth analysis of aspects of heterogeneous catalysis based on the d-band model. In Chapter 5 adsorption and chemistry on the enormously important Si and Ge semiconductor surfaces are covered. In the remaining two Chapters the book moves on from solid-gas interfaces and looks at solid-liquid interface processes. In the final chapter an overview is given of the environmentally important chemical processes occurring on mineral and oxide surfaces in contact with water and electrolytes. - Gives examples of how modern theoretical DFT techniques can be used to design heterogeneous catalysts - This book suits the rapid introduction of methods and concepts from surface science into a broad range of scientific disciplines where the interaction between a solid and the surrounding gas or liquid phase is an essential component - Shows how insight into chemical bonding at surfaces can be applied to a range of scientific problems in heterogeneous catalysis, electrochemistry, environmental science and semiconductor processing - Provides both the fundamental perspective and an overview of chemical bonding in terms of structure, electronic structure and dynamics of bond rearrangements at surfaces
Author | : N. N. Sirota |
Publisher | : Springer |
Total Pages | : 294 |
Release | : 1995-12-31 |
Genre | : Science |
ISBN | : 9780306107795 |