Nuclear Science Abstracts
Author :
Publisher :
Page : 844 pages
File Size : 25,72 MB
Release : 1975
Category : Nuclear energy
ISBN :
Author :
Publisher :
Page : 844 pages
File Size : 25,72 MB
Release : 1975
Category : Nuclear energy
ISBN :
Author :
Publisher :
Page : 440 pages
File Size : 37,26 MB
Release : 1995
Category : Aeronautics
ISBN :
Author :
Publisher :
Page : 794 pages
File Size : 35,36 MB
Release : 2005
Category : Dissertations, Academic
ISBN :
Author :
Publisher :
Page : 834 pages
File Size : 45,75 MB
Release : 1990
Category : Power resources
ISBN :
Author :
Publisher :
Page : 348 pages
File Size : 35,68 MB
Release : 2008
Category : Dissertations, Academic
ISBN :
Author :
Publisher :
Page : 1248 pages
File Size : 31,17 MB
Release : 1994
Category : Physics
ISBN :
Author :
Publisher :
Page : 1060 pages
File Size : 21,3 MB
Release : 1975-12
Category : Chemistry
ISBN :
Author :
Publisher :
Page : 732 pages
File Size : 48,52 MB
Release : 1996
Category : Nuclear energy
ISBN :
Author : Nichigai Asoshiētsu
Publisher :
Page : 868 pages
File Size : 45,85 MB
Release : 1974
Category : Physical review
ISBN :
Author : Miron Ya. Amusia
Publisher : Springer Nature
Page : 464 pages
File Size : 47,6 MB
Release : 2021-12-02
Category : Science
ISBN : 3030851435
This book presents numerical methods for solving a wide range of problems associated with the structure of atoms and simplest molecules, and their interaction with electromagnetic radiation, electrons, and other particles. It introduces the ATOM-M software package, presenting a unified software suite, written in Fortran, for carrying out precise atomic and molecular numeric calculations. The book shows how to apply these numerical methods to obtain many different characteristics of atoms, molecules, and the various processes within which they interact. In an entirely self-sufficient approach, it teaches the reader how to use the codes provided to build atomic and molecular systems from the ground up and obtain the resulting one-electron wave functions. The computational programs presented and made available in this book allow calculations in the one-electron Hartree–Fock approximation and take into account many-electron correlations within the framework of the random-phase approximation with exchange or many-body perturbation theory. Ideal for scholars interested in numerical computation of atomic and molecular processes, the material presented in this book is useful to both experts and novices, theorists, and experimentalists.