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La structure hyperfine magnétique des atomes et des molécules

La structure hyperfine magnétique des atomes et des molécules PDF Author: M. C. Moser
Publisher:
ISBN:
Category : Atomic spectra
Languages : en
Pages : 448

Book Description


La structure hyperfine magnétique des atomes et des molécules

La structure hyperfine magnétique des atomes et des molécules PDF Author: M. C. Moser
Publisher:
ISBN:
Category : Atomic spectra
Languages : en
Pages : 448

Book Description


La Structure hyperfine magnétique des atomes et des molécules

La Structure hyperfine magnétique des atomes et des molécules PDF Author:
Publisher:
ISBN:
Category : Atomic spectra
Languages : en
Pages : 448

Book Description


Hyperfine Structure in 4d- and 5d-Shell Atoms

Hyperfine Structure in 4d- and 5d-Shell Atoms PDF Author: S. Büttgenbach
Publisher: Springer
ISBN: 354039477X
Category : Science
Languages : en
Pages : 105

Book Description


La structure hyperfine magnétique des atomes et des molécules, Paris, 20-24 juin 1966

La structure hyperfine magnétique des atomes et des molécules, Paris, 20-24 juin 1966 PDF Author:
Publisher:
ISBN:
Category : Electron paramagnetic resonance
Languages : en
Pages : 0

Book Description


Magnetic Atoms and Molecules

Magnetic Atoms and Molecules PDF Author: William Weltner
Publisher: Courier Corporation
ISBN: 9780486661407
Category : Science
Languages : en
Pages : 460

Book Description
This comprehensive graduate-level text by a leading researcher in atomic and molecular spectroscopy explores the electron-spin-resonance theory of randomly oriented molecules. "I recommend it highly." ? American Scientist. 119 illustrations.

Molecular Spectra and Molecular Structure

Molecular Spectra and Molecular Structure PDF Author: K. Huber
Publisher: Springer Science & Business Media
ISBN: 1475709617
Category : Science
Languages : en
Pages : 729

Book Description
Since the publication in 1950 of Vol. I, Spectra of Diatomic Molecules of Molecular Spectra and Molecular Structure, much progress has been made in the field. While there have been some important refinements in the theory of diatomic molecular spectra, most of the advances have been in the further exploration of individual spectra. Not only has the number of molecules about which some spectroscopic data are available been increased by a factor of 2 to 3, but also the spectroscopic information about the molecules known in 1950 has been vastly extended. This is due to the observation of new elec tronic states (about three times as many as known before), the enormous improvements in the accuracy of the constants of the states known in 1950, and the determination of higher order constants. In view of the increasing use of spectroscopic information on diatomic molecules in other fields of physics, in chemistry, and in astrophysics, it appeared desirable to prepare an up-to-date version of the table of molecular constants in the appendix of Vol. I. This updating proved to be far more time-consuming than originally anticipated, and it is only now, 10 years that we are able to present such a table, which, instead after its initiation, of the original 80 pages (plus 30 pages of bibliography), now fills a volume of 700 pages. In the interest of economy, and unlike the original version, the new table has been produced by photo-offset from the final manuscript.

La structure hyperfine magnetique des atomes et des molecules, Paris, 20-24 Juin 1966

La structure hyperfine magnetique des atomes et des molecules, Paris, 20-24 Juin 1966 PDF Author: A. Kastler
Publisher:
ISBN:
Category :
Languages : it
Pages :

Book Description


Comprehensive Biophysics

Comprehensive Biophysics PDF Author:
Publisher: Academic Press
ISBN: 0080957188
Category : Science
Languages : en
Pages : 3533

Book Description
Biophysics is a rapidly-evolving interdisciplinary science that applies theories and methods of the physical sciences to questions of biology. Biophysics encompasses many disciplines, including physics, chemistry, mathematics, biology, biochemistry, medicine, pharmacology, physiology, and neuroscience, and it is essential that scientists working in these varied fields are able to understand each other's research. Comprehensive Biophysics, Nine Volume Set will help bridge that communication gap. Written by a team of researchers at the forefront of their respective fields, under the guidance of Chief Editor Edward Egelman, Comprehensive Biophysics, Nine Volume Set provides definitive introductions to a broad array of topics, uniting different areas of biophysics research - from the physical techniques for studying macromolecular structure to protein folding, muscle and molecular motors, cell biophysics, bioenergetics and more. The result is this comprehensive scientific resource - a valuable tool both for helping researchers come to grips quickly with material from related biophysics fields outside their areas of expertise, and for reinforcing their existing knowledge. Biophysical research today encompasses many areas of biology. These studies do not necessarily share a unique identifying factor. This work unites the different areas of research and allows users, regardless of their background, to navigate through the most essential concepts with ease, saving them time and vastly improving their understanding The field of biophysics counts several journals that are directly and indirectly concerned with the field. There is no reference work that encompasses the entire field and unites the different areas of research through deep foundational reviews. Comprehensive Biophysics fills this vacuum, being a definitive work on biophysics. It will help users apply context to the diverse journal literature offering, and aid them in identifying areas for further research Chief Editor Edward Egelman (E-I-C, Biophysical Journal) has assembled an impressive, world-class team of Volume Editors and Contributing Authors. Each chapter has been painstakingly reviewed and checked for consistent high quality. The result is an authoritative overview which ties the literature together and provides the user with a reliable background information and citation resource

Case Studies in Atomic Physics 4

Case Studies in Atomic Physics 4 PDF Author: E McDaniel
Publisher: Elsevier
ISBN: 0444601341
Category : Science
Languages : en
Pages : 467

Book Description
Case Studies in Atomic Physics IV presents a collection of six case studies in atomic physics. The first study deals with the correspondence identities associated with the Coulomb potential: the Rutherford scattering identity, the Bohr-Sommerfeld identity, and the Fock identity. The second paper reviews advances in recombination. This is followed by a three-part study on relativistic self-consistent field (SCF) calculations. The first part considers relativistic SCF calculations in general, and in particular discusses different configurational averaging techniques and various statistical exchange approximations. The second part reviews the relativistic theory of hyperfine structure. The third part makes a number of comparisons between experimental results and values obtained in different SCF schemes, with exact as well as approximate exchange. The next case study on pseudopotentials compares the results of model potential and pseudopotential calculations. The final study reviews, on a kinetic basis, the behavior of low density ion swarms in a neutral gas.

Theoretical Foundations of Electron Spin Resonance

Theoretical Foundations of Electron Spin Resonance PDF Author: John E. Harriman
Publisher: Academic Press
ISBN: 1483191664
Category : Science
Languages : en
Pages : 416

Book Description
Theoretical Foundations of Electron Spin Resonance deals with the theoretical approach to electron paramagnetic resonance. The book discusses electron spin resonance in applications related to polyatomic, probably organic, free radicals in condensed phases. The book also focuses on essentially static phenomena, that is, the description and determination of stationary-state energy levels. The author reviews the Dirac theory of the electron in which a four-component wave function is responsible for the behavior of the electron. The author then connects this theory with the nonrelativistic wave function theory. The book also addresses the relationship between spin Hamiltonian parameters and observable energy levels, as well as the expressions for specific spin Hamiltonian parameters concerning operators and wave functions. The book discusses wave- functions for open-shell systems; as well as how to extract values of spin Hamiltonian from information related to wave functions. The author then examines empirically adjusted parameters that can determine the wave function itself. This book can prove valuable for scientists involved with nuclear physics, molecular physics, and researchers in chemical physics.