The Molecular Theory of Gases and Liquids

The Molecular Theory of Gases and Liquids
Author: Joseph O. Hirschfelder
Publisher: John Wiley & Sons
Total Pages: 1283
Release: 1964-01-15
Genre: Science
ISBN: 0471400653

An essential cross-disciplinary reference for molecular interactions Molecular Theory of Gases and Liquids offers a rigorous, comprehensive treatment of molecular characteristics and behaviors in the gaseous and fluid states. A unique cross-disciplinary approach provides useful insight for students of chemistry, chemical engineering, fluid dynamics, and a variety of related fields, with thorough derivations and in-depth explanations throughout. Appropriate for graduate students and working scientists alike, this book details advanced concepts without sacrificing depth of coverage or technical detail.

Physical Review

Physical Review
Author:
Publisher:
Total Pages: 1384
Release: 1926
Genre: Electronic journals
ISBN:

Vols. for 1903- include Proceedings of the American Physical Society.

Differential Ion Mobility Spectrometry

Differential Ion Mobility Spectrometry
Author: Alexandre A. Shvartsburg
Publisher: CRC Press
Total Pages: 322
Release: 2008-12-24
Genre: Science
ISBN: 9781420051070

Over the last decade, scientific and engineering interests have been shifting from conventional ion mobility spectrometry (IMS) to field asymmetric waveform ion mobility spectrometry (FAIMS). Differential Ion Mobility Spectrometry: Nonlinear Ion Transport and Fundamentals of FAIMS explores this new analytical technology that separates and characterizes ions by the difference between their mobility in gases at high and low electric fields. It also covers the novel topics of higher-order differential IMS and IMS with alignment of dipole direction. The book relates the fundamentals of FAIMS and other nonlinear IMS methods to the physics of gas-phase ion transport. It begins with the basics of ion diffusion and mobility in gases, covering the main attributes of conventional IMS that are relevant to all IMS approaches. Building on this foundation, the author reviews diverse high-field transport phenomena that underlie differential IMS. He discusses the conceptual implementation and first-principles optimization of FAIMS as a filtering technique, emphasizing the dependence of FAIMS performance metrics on instrumental parameters and properties of ion species. He also explores ion reactions in FAIMS caused by field heating and the effects of inhomogeneous electric field in curved FAIMS gaps. Written by an accomplished scientist in the field, this state-of-the-art book supplies the foundation to understand the new technology of nonlinear IMS methods.

Conduction of Electricity Through Gases: Volume 1, Ionisation by Heat and Light

Conduction of Electricity Through Gases: Volume 1, Ionisation by Heat and Light
Author: J. J. Thomson
Publisher: Cambridge University Press
Total Pages: 507
Release: 2013-06-13
Genre: Science
ISBN: 110741427X

This 1933 volume is one of two books making up the third edition of a 1903 original by British physicist Sir Joseph John Thomson. The text was greatly enlarged for this edition, which resulted in its division into two parts, and incorporates numerous advances in research relating to the discharge of electricity through gases.

Swarms of Ions and Electrons in Gases

Swarms of Ions and Electrons in Gases
Author: W. Lindinger
Publisher: Springer Science & Business Media
Total Pages: 319
Release: 2012-12-06
Genre: Science
ISBN: 3709187737

Our understanding of elementary processes in plasmas has been increasing dramatically over the last few years. The development of various swarm techniques, such as the temperature variable selected ion flow tube or the selected ion flow drift tube, has provided the prerequisite for detailed investigations into ion molecule reactions both in binary and three body collisions, and the mechanisms of many reactions are now understood quite satisfactorily. This information could not have been obtained without a detailed knowledge of the transport phenomena involved. Some of these, such as the internal-energy distribution of drifting ions, have only very recently been tackled both theoretically and experimentally; a consistent model is now being developed. As the interactions between the various branches of swarm research have become more and more intense, the most obvious thing to do was putting together a review on the present state of this subject, which is the aim of this book.