Computational methods for large systems electronic structure approaches for biotechnology and nanotechnology

"While its results normally complement the information obtained by chemical experiments, computer computations can in some cases predict unobserved chemical phenomena Electronic-Structure Computational Methods for Large Systems gives readers a simple description of modern electronic-structure t...

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Detalles Bibliográficos
Formato: Libro electrónico
Idioma:Inglés
Materias:
Acceso en línea:Acceso restringido con credenciales, usuarios UPSA
Ver en Biblioteca de la Universidad Pontificia de Salamanca:https://koha.upsa.es/cgi-bin/koha/opac-detail.pl?biblionumber=716794
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Descripción
Sumario:"While its results normally complement the information obtained by chemical experiments, computer computations can in some cases predict unobserved chemical phenomena Electronic-Structure Computational Methods for Large Systems gives readers a simple description of modern electronic-structure techniques. It shows what techniques are pertinent for particular problems in biotechnology and nanotechnology and provides a balanced treatment of topics that teach strengths and weaknesses, appropriate and inappropriate methods. It's a book that will enhance the your calculating confidence and improve your ability to predict new effects and solve new problems"--
"Provides a simple description of modern electronic-structure techniques. Shows what techniques are pertinent for particular problems in biotechnology and nanotechnology. Provides a balanced treatment of the topics that teaches strengths and weaknesses, appropriate and inappropriate methods. Provides confidence to calculators that their results are useful for predicting new effects and for interpreting newly presented problem scenarios - reference tool for industrial scientists who develop applications as well as a teaching aid for new graduate students in computational chemistry, physics, biochemistry, biotechnology, materials science and nanoscience"--
Notas:Autor/es: Reimers, Jeffrey R.
Descripción Física:1 recurso en línea xxii, 659 p. : ill. (some col.)
Acceso: Acceso restringido con credenciales, usuarios UPSA