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Titlebook: Lecture Notes in Quantum Chemistry II; European Summer Scho Björn O. Roos Book 1994 Springer-Verlag Berlin Heidelberg 1994 Computerchemie.Q

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书目名称Lecture Notes in Quantum Chemistry II
副标题European Summer Scho
编辑Björn O. Roos
视频video
丛书名称Lecture Notes in Chemistry
图书封面Titlebook: Lecture Notes in Quantum Chemistry II; European Summer Scho Björn O. Roos Book 1994 Springer-Verlag Berlin Heidelberg 1994 Computerchemie.Q
描述The first volume of Lecture Notes in Quantum Chemistry (Lecture Notes in Chemistry 58, Springer Verlag, Berlin 1992) contained a compilation of selected lectures given at the two first European Summer Schools in Quantum Chemistry (ESQC), held in southern Sweden in August 1989 and 1991, respectively. The notes were written by the teachers at the school and covered a large range of topics in ab initio quantum chemistry. After the third summer school (held in 1993) it was decided to put together a second volume with additional material. Important lecture material was excluded in the first volume and has now been added. Such added topics are: integrals and integral derivatives, SCF theory, coupled-cluster theory, relativity in quantum chemistry, and density functional theory. One chapter in the present volume contains the exercise material used at the summer school and in addition solutions to all the exercises. It is the hope of the authors that the two volumes will find good use in the scientific community as textbooks for students, who are interested in learn­ ing more about modern methodology in molecular quantum chemistry. The books will be used as teaching material in the Europea
出版日期Book 1994
关键词Computerchemie; Quantenchemie; Quantum Chemistry; Theoretische Chemie; computational chemistry; theoretic
版次1
doihttps://doi.org/10.1007/978-3-642-57890-8
isbn_softcover978-3-540-58620-3
isbn_ebook978-3-642-57890-8Series ISSN 0342-4901 Series E-ISSN 2192-6603
issn_series 0342-4901
copyrightSpringer-Verlag Berlin Heidelberg 1994
The information of publication is updating

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Coupled-cluster Methods in Quantum Chemistry,e. These methods had their origins — or, at least, were first used — in nuclear many-body theory. They were introduced into quantum chemistry in the 1960’s, but were relatively little used until the late 1970’s, perhaps in part because the original formulations used techniques, like second quantizat
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Methods of Relativistic Quantum Chemistry,m chemistry. The growing interest in relativistic methods for electronic structure calculations is strongly linked to the developments in chemistry of heavy atom compounds and their use in industry. Moreover, there is a number of chemical observations which show that for heavy atom compounds the int
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Exercises with solutions,es of these exercises are sometimes unclear; however, we gratefully acknowledge contributions, work and communications with Lars Pettersson, Jeppe Olsen, Trygve Helgaker, Peter Taylor, Björn Roos, and Nicholas Handy. To you, and to any of the inevitably forgotten problem-text authors, thank you very
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Density Functional Theory,CF calculations, thanks to the introduction of the Direct methodology by Almlöf[1]. We can also manage to work with good basis sets for such calculations, although I consider that 6–31G* are not good enough, and probably something nearer to TZ2P is required for definitive SCF calculations.
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