Atnaujintas knygų su minimaliais defektais pasiūlymas! Naršykite ČIA >>

0 Mėgstami
0Krepšelis

Theoretical Modeling of Vibrational Spectra in the Liquid Phase

-22% su kodu: BOOKS
132,12 
Įprasta kaina: 169,38 
-22% su kodu: BOOKS
Kupono kodas: BOOKS
Akcija baigiasi: 2025-03-09
-22% su kodu: BOOKS
132,12 
Įprasta kaina: 169,38 
-22% su kodu: BOOKS
Kupono kodas: BOOKS
Akcija baigiasi: 2025-03-09
-22% su kodu: BOOKS
2025-02-28 132.12 InStock
Nemokamas pristatymas į paštomatus per 11-15 darbo dienų užsakymams nuo 10,00 

Knygos aprašymas

This thesis provides a comprehensive description of methods used to compute the vibrational spectra of liquid systems by molecular dynamics simulations. The author systematically introduces theoretical basics and discusses the implications of approximating the atomic nuclei as classical particles. The strengths of the methodology are demonstrated through several different examples. Of particular interest are ionic liquids, since their properties are governed by strong and diverse intermolecular interactions in the liquid state. As a novel contribution to the field, the author presents an alternative route toward infrared and Raman intensities on the basis of a Voronoi tessellation of the electron density. This technique is superior to existing approaches regarding the computational resources needed. Moreover, this book presents an innovative approach to obtaining the magnetic moments and vibrational circular dichroism spectra of liquids, and demonstrates its excellent agreement withexperimental reference data.

Informacija

Autorius: Martin Thomas
Serija: Springer Theses
Leidėjas: Springer Nature Switzerland
Išleidimo metai: 2017
Knygos puslapių skaičius: 220
ISBN-10: 3319496271
ISBN-13: 9783319496276
Formatas: 241 x 160 x 18 mm. Knyga kietu viršeliu
Kalba: Anglų

Pirkėjų atsiliepimai

Parašykite atsiliepimą apie „Theoretical Modeling of Vibrational Spectra in the Liquid Phase“

Būtina įvertinti prekę

Goodreads reviews for „Theoretical Modeling of Vibrational Spectra in the Liquid Phase“