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Monday, May 18, 2020 | History

2 edition of Theory of Atomic and Molecular Clusters found in the catalog.

Theory of Atomic and Molecular Clusters

With a Glimpse at Experiments

by J. Jellinek

  • 62 Want to read
  • 36 Currently reading

Published by Springer Berlin Heidelberg, Imprint, Springer in Berlin, Heidelberg .
Written in English


About the Edition

The emergence and spectacularly rapid evolution of the field of atomic and molecular clusters are among the most exciting developments in the recent history of natural sciences. The field of clusters expands into the traditional disciplines of physics, chemistry, materials science, and biology, yet in many respects it forms a cognition area of its own. This book presents a cross section of theoretical approaches and their applications in studies of different cluster systems. The contributions are written by experts in the respective areas. The systems discussed range from weakly (van der Waals) bonded, through hydrogen- and covalently bonded, to semiconductor and metallic clusters. The theoretical approaches involve high-level electronic structure computations, more approximate electronic structure treatments, use of semiempirical potentials, dynamical and statistical analyses, and illustrate the utility of both classical and quantum mechanical concepts.

Edition Notes

Statementedited by Julius Jellinek
SeriesSpringer Series in Cluster Physics, 1437-0395, Springer series in cluster physics
The Physical Object
Format[electronic resource] :
Pagination1 online resource (VIII, 429 pages 169 illustrations).
Number of Pages429
ID Numbers
Open LibraryOL27091710M
ISBN 10364258389X
ISBN 109783642583896
OCLC/WorldCa840292542

Presents a unique approach to grasping the concepts of quantum theory with a focus on atoms, clusters, and crystals Quantum theory of atoms and molecules is vitally important in molecular physics, materials science, nanoscience, solid state physics and many related fields. Introductory Quantum Mechanics with MATLAB is designed to be an accessible guide to quantum theory . Cluster physics is the foundation of the increasingly important field of nanotechnology. It includes worked examples to enable lecturers and students to gauge their understanding and progress. Atomic and Molecular Clusters describes the experimental generation, detection and interrogation of clusters and theoretical approaches developed to aid.

Add tags for "Theory of atomic and molecular clusters: with a glimpse at experiments ; with 34 tables". Be the first. Atomic and Molecular Physics by Bhas Bapat. This note covers the following topics: Hydrogen Atom, Hydrogen Atom Fine Structure, Helium Atom, Multielectron atoms, Hartree-Fock theory, Interaction with Radiation, Lineshapes, Photoelectric Effect, Introduction to Lasers, Diatomic Molecules and Scattering.

Atomic clusters, consisting of a few to a few thousand atoms, have emerged over the past 40 years as the ultimate nanoparticles, whose structure and properties can be controlled one atom at a time. One of the early motivations in studying clusters was to understand how the properties of matter evolve as a function of size, shape, and by: Coupled cluster essentially takes the basic Hartree–Fock molecular orbital method and constructs multi-electron wavefunctions using the exponential cluster operator to account for electron correlation. Some of the most accurate calculations for .


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Theory of Atomic and Molecular Clusters by J. Jellinek Download PDF EPUB FB2

The emergence and spectacularly rapid evolution of the field of atomic and molecular clusters are among the most exciting developments in the recent history of natural sciences. The field of clusters expands into the traditional disciplines of physics, chemistry, materials science, and biology, yet in many respects it forms a cognition area of its : Paperback.

The emergence and spectacularly rapid evolution of the field of atomic and molecular clusters are among the most exciting developments in the recent history of natural sciences. The field of clusters expands into the traditional disciplines of physics, chemistry, materials science, and biology, yet in many respects it forms a cognition area of its own.

Advances in the Theory of Atomic and Molecular Systems: Dynamics, Spectroscopy, Clusters, and Nanostructures (Progress in Theoretical Chemistry and Physics) Skip to main content Try Prime. Theory of Atomic and Molecular Clusters: With a Glimpse at Experiments R.

Stephen Berry (auth.), Dr. Julius Jellinek (eds.) The emergence and spectacularly rapid evolution of the field of atomic and molecular clusters are among the most exciting developments in the recent history of natural sciences. Advances in the Theory of Atomic and Molecular Systems, is a collection of contributions presenting recent theoretical and computational developments that provide new insights into the structure, properties, and behavior of a variety of atomic and molecular.

About this book. Quantum mechanics is the fundamental theory of matter on the microscopic scale. Thanks to conceptual advances and progress in computer technology, its application to the study of atomic and molecular systems, which is of relevance to chemistry, physics, biology, and materials science, is a rapidly developing research area.

Journals & Books; Help; Computational Materials Science. Supports open access. Articles and issues. About. Submit your article; Latest issue All issues.

Search in this journal. Theory of Atomic and Molecular Clusters June • Leer, Germany. E.R Hilf. Volume 2, Issues 3–4, Pages (July ) select article Theory for the.

Buy Theory of Atomic and Molecular Clusters (Springer Series in Cluster Physics) Softcover reprint of the original 1st ed. by Jellinek, Julius (ISBN: ) from Amazon's Book Store. Everyday low prices and free delivery on eligible : Julius Jellinek. Molecular Electronic-Structure Theory makes extensive use of numerical examples, designed to illustrate the strengths and weaknesses of each method treated.

In addition, statements about the usefulness and deficiencies of the various methods are supported by actual examples, not just model calculations. Atomic and Molecular Clusters describes the experimental generation, detection and interrogation of clusters and theoretical approaches developed to aid understanding of their physical properties.

It classifies clusters according to their bonding types and gives examples of present and possible future applications of clusters in electronic, optical and magnetic devices.

Quantum mechanics is the fundamental theory of matter on the microscopic scale. Thanks to conceptual advances and progress in computer technology, its application to the study of atomic and molecular systems, which is of relevance to chemistry, physics, biology, and materials science, is a rapidly developing research area.

They are formed by most of the elements of the Periodic Table, and the types of bonding and the resultant clusters are equally as varied. This book introduces atomic clusters, ranging from weakly-bonded clusters of argon to strongly-bonded carbon clusters and metal nano-particles.

Advances in the Theory of Atomic and Molecular Systems, is a collection of contributions presenting recent theoretical and computational developments that provide new insights into the structure, properties, and behavior of a variety of atomic and molecular systems.

This volume (subtitled: Conceptual and Computational Advances in Quantum Chemistry) focuses on electronic structure theory. Theory of Atomic and Molecular Clusters: with a Glimpse at Experiments / Article (PDF Available) January with Reads How we measure 'reads'Author: Julius Jellinek.

It isthe purpose of this important book - now available in paperback for the first time - to show that a theory can be developed to underpin the molecular structure hypothesis - that the atoms in a molecule are real, with properties predicted and defined by the laws of quantum mechanics can be incorporated into the resulting theory - a theory.

2'2. Fragmentation of atomic Clusters» 3. Elements of Cluster fragmentation theory» Partitions >» 3'2. Geometrical modeis» 3'3. Statistical equilibrium» 3"4. Rate equation theory» 4. Signals of scaling in Cluster fragmentation» 4'1. Critical behaviour and critical exponents» 4'2.

Finite-size. Book Title:Advances in the Theory of Atomic and Molecular Systems: Dynamics, Spectroscopy, Clusters, and Nanostructures (Progress in Theoretical Chemistry and Physics) Advances in the Theory of Atomic and Molecular Systems, is a collection of contributions presenting recent theoretical and computational developments that provide new insights into the structure, properties, and behavior of a variety of atomic and molecular.

Atom, Molecule, and Cluster Beams I: Basic Theory, Production and Detection of Thermal Energy Beams. A consistent, up-to-date description of the extremely manifold and varied experimental techniques which nowadays enable work with neutral particles.

PDF | The quasi-classical theory of matter aggregation is briefly reviewed and the guiding principles of formation of the atomic clusters are discussed. | Find, read and cite all. Making Connections: Things Great and Small—Atomic and Molecular Origin of Pressure in a Gas Figure shows a box filled with a gas.

We know from our previous discussions that putting more gas into the box produces greater pressure, and that increasing the temperature of the gas also produces a greater pressure.

Theory of atomic and molecular clusters: with a glimpse at experiments. [J Jellinek;] -- "The emergence and spectacularly rapid evolution of the field of atomic and molecular clusters are among the most exciting developments in the recent history of natural sciences.".The main goal of this book is to elucidate what kind of experiment must be performed in order to determine the full set of independent parameters which can be extracted and calculated from theory.

This book is an in-depth review of experiment and theory on electric-dipole polarizabilities. It is broad in scope, encompassing atomic, molecular, and cluster polarizabilities. Both static and dynamic polarizabilities are treated (in the absence of absorption) and a full tensor picture of the polarizability is used.