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Electron Impact Phenomena

Electron Impact Phenomena PDF Author: F. H. Field
Publisher: Academic Press
ISBN: 1483275698
Category : Science
Languages : en
Pages : 577

Book Description
Electron Impact Phenomena and the Properties of Gaseous Ions, Revised Edition deals with data pertaining to electron impact and to molecular gaseous ionic phenomena. This book discusses electron impact phenomena in gases at low pressure that involve low-energy electrons, which result in ion formation. The text also describes the use of mass spectrometers in electron impact studies and the degree of accuracy obtained when measuring electron impact energies. This book also reviews relatively low speed electrons and the transitions that result in the ionization of the atomic system. This text then discusses diatomic molecules whose mass spectra can be interpreted using the Franck-Condon principle. This selection also presents some examples of ions in solution that resemble the gaseous ions formed by electron impacts. The energies of these gaseous ions can be the key to understanding the mechanisms of ionic reactions. These examples include the olefin addition reactions and catalytic cracking. This text will prove invaluable for research chemists, students, and professors in chemistry and related fields such as organic chemistry and electrochemistry.

Electron Impact Phenomena

Electron Impact Phenomena PDF Author: F. H. Field
Publisher: Academic Press
ISBN: 1483275698
Category : Science
Languages : en
Pages : 577

Book Description
Electron Impact Phenomena and the Properties of Gaseous Ions, Revised Edition deals with data pertaining to electron impact and to molecular gaseous ionic phenomena. This book discusses electron impact phenomena in gases at low pressure that involve low-energy electrons, which result in ion formation. The text also describes the use of mass spectrometers in electron impact studies and the degree of accuracy obtained when measuring electron impact energies. This book also reviews relatively low speed electrons and the transitions that result in the ionization of the atomic system. This text then discusses diatomic molecules whose mass spectra can be interpreted using the Franck-Condon principle. This selection also presents some examples of ions in solution that resemble the gaseous ions formed by electron impacts. The energies of these gaseous ions can be the key to understanding the mechanisms of ionic reactions. These examples include the olefin addition reactions and catalytic cracking. This text will prove invaluable for research chemists, students, and professors in chemistry and related fields such as organic chemistry and electrochemistry.

Electron Impact Phenomena

Electron Impact Phenomena PDF Author: Frank Henry Field
Publisher:
ISBN:
Category : Electrons
Languages : en
Pages :

Book Description


Electron Impact Phenomena and the Properties of Gaseous Ions

Electron Impact Phenomena and the Properties of Gaseous Ions PDF Author: Frank H. Field
Publisher:
ISBN:
Category :
Languages : en
Pages : 349

Book Description


Electron impact phenomena and the properties of gaseous ions

Electron impact phenomena and the properties of gaseous ions PDF Author: Frank Henry Field
Publisher:
ISBN:
Category :
Languages : es
Pages : 563

Book Description


ELECTRON IMPACT PHENOMENA AND THE PROPERTIES OF GASEOUS IONS (Volume 1).

ELECTRON IMPACT PHENOMENA AND THE PROPERTIES OF GASEOUS IONS (Volume 1). PDF Author: JL. FRANKLIN
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Physics of Ion Impact Phenomena

Physics of Ion Impact Phenomena PDF Author: Deepak Mathur
Publisher: Springer Science & Business Media
ISBN: 3642843506
Category : Science
Languages : en
Pages : 302

Book Description
During the last ten years an unprecedented effort has been directed towards study of the dynamics of ion collision phenomena in the gas phase, usually with a view to applications in diverse areas, ranging from fusion reactors and lasers to ionospheric and interstellar chemistry and gaseous electronics. The principal aim of this volume is to present a succinct overview of contemporary interests and trends in the field of low energy ion-electron and ion-atom (molecule) collision physics, with emphasis on fundamental aspects. Researchers and students will become acquainted, in a general and fairly non-specialized fashion, with recent progress in this area of continuing intense activity. The material is divided into two parts, dealing with atomic ions and molecular ions. Each of the nine chapters has been prepared by authors who are amongst the most eminent practitioners of contemporary ion collision physics. The book is dedicated to Professor J.B. Hasted, one of the pioneering workers who, in the course of his forty year career, helped establish atomic collision physics as a field in its own right.

Electron Impact Phenomena and the Properties of Gaceous Ions

Electron Impact Phenomena and the Properties of Gaceous Ions PDF Author:
Publisher:
ISBN:
Category : Electrons
Languages : en
Pages : 561

Book Description


Electron Impact Phenomena and the Properties of Gaseous Ions

Electron Impact Phenomena and the Properties of Gaseous Ions PDF Author: Frank Henry Field
Publisher:
ISBN:
Category : Electrons
Languages : en
Pages : 563

Book Description


Experimental Studies of Electron Impact Phenomena

Experimental Studies of Electron Impact Phenomena PDF Author: Isik Kanik
Publisher:
ISBN:
Category : Cross sections (Nuclear physics)
Languages : en
Pages : 370

Book Description


Atomic and Ionic Impact Phenomena on Metal Surfaces

Atomic and Ionic Impact Phenomena on Metal Surfaces PDF Author: M. Kaminsky
Publisher: Springer Science & Business Media
ISBN: 3642460259
Category : Science
Languages : en
Pages : 414

Book Description
The collisions of neutral or charged gaseous particles with solid surfaces govern many physical and chemical phenomena, as has been The gas/solid phenomena in turn depend on a recognized for a long time. great variety of processes such as the charge transfer of the gas/solid interface, adsorption and desorption, the energy transfer between an incident particle and the surface, etc. Our knowledge of these processes, however, is only fragmentary. This is partly due to the difficulty in adequately controlling the ex perimental conditions. Consequently, until recently the data were usually so complex that reliable information about a particular elementary process could not be deduced. Within the last five to ten years, however, the techniques of ultra-high vacuum and surface preparation have developed rapidly and there has been a booming and widespread interest in the role of gas/solid interactions in such diverse fields as plasma physics, thermonuclear reactions, thermionic energy conversion, ion propulsion, sputtering corrosion of the surface of satellites and ion engines, ion getter pumps, deposition of thin films, etc. This led to extensive investigations of numerous gas/solid phenomena, such as surface ionization, sputtering, emission of secondary electrons and ions from surfaces under atom and/or ion impact, ion neutralization, and the thermal accomodation of gaseous particles on surfaces. As a result, it has become possible to gather a variety of valuable information.