Molecular Modeling at the Atomic Scale

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Author :
Publisher : CRC Press
ISBN 13 : 146656296X
Total Pages : 384 pages
Book Rating : 4.4/5 (665 download)

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Book Synopsis Molecular Modeling at the Atomic Scale by : Ruhong Zhou

Download or read book Molecular Modeling at the Atomic Scale written by Ruhong Zhou and published by CRC Press. This book was released on 2014-08-21 with total page 384 pages. Available in PDF, EPUB and Kindle. Book excerpt: Although molecular modeling has been around for a while, the groundbreaking advancement of massively parallel supercomputers and novel algorithms for parallelization is shaping this field into an exciting new area. Developments in molecular modeling from experimental and computational techniques have enabled a wide range of biological applications.

Atomic-Scale Modelling of Electrochemical Systems

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Author :
Publisher : John Wiley & Sons
ISBN 13 : 111960561X
Total Pages : 372 pages
Book Rating : 4.1/5 (196 download)

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Book Synopsis Atomic-Scale Modelling of Electrochemical Systems by : Marko M. Melander

Download or read book Atomic-Scale Modelling of Electrochemical Systems written by Marko M. Melander and published by John Wiley & Sons. This book was released on 2021-09-14 with total page 372 pages. Available in PDF, EPUB and Kindle. Book excerpt: Atomic-Scale Modelling of Electrochemical Systems A comprehensive overview of atomistic computational electrochemistry, discussing methods, implementation, and state-of-the-art applications in the field The first book to review state-of-the-art computational and theoretical methods for modelling, understanding, and predicting the properties of electrochemical interfaces. This book presents a detailed description of the current methods, their background, limitations, and use for addressing the electrochemical interface and reactions. It also highlights several applications in electrocatalysis and electrochemistry. Atomic-Scale Modelling of Electrochemical Systems discusses different ways of including the electrode potential in the computational setup and fixed potential calculations within the framework of grand canonical density functional theory. It examines classical and quantum mechanical models for the solid-liquid interface and formation of an electrochemical double-layer using molecular dynamics and/or continuum descriptions. A thermodynamic description of the interface and reactions taking place at the interface as a function of the electrode potential is provided, as are novel ways to describe rates of heterogeneous electron transfer, proton-coupled electron transfer, and other electrocatalytic reactions. The book also covers multiscale modelling, where atomic level information is used for predicting experimental observables to enable direct comparison with experiments, to rationalize experimental results, and to predict the following electrochemical performance. Uniquely explains how to understand, predict, and optimize the properties and reactivity of electrochemical interfaces starting from the atomic scale Uses an engaging “tutorial style” presentation, highlighting a solid physicochemical background, computational implementation, and applications for different methods, including merits and limitations Bridges the gap between experimental electrochemistry and computational atomistic modelling Written by a team of experts within the field of computational electrochemistry and the wider computational condensed matter community, this book serves as an introduction to the subject for readers entering the field of atom-level electrochemical modeling, while also serving as an invaluable reference for advanced practitioners already working in the field.

Molecular Modelling for Beginners

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Author :
Publisher : John Wiley & Sons
ISBN 13 : 1119964814
Total Pages : 369 pages
Book Rating : 4.1/5 (199 download)

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Book Synopsis Molecular Modelling for Beginners by : Alan Hinchliffe

Download or read book Molecular Modelling for Beginners written by Alan Hinchliffe and published by John Wiley & Sons. This book was released on 2011-08-17 with total page 369 pages. Available in PDF, EPUB and Kindle. Book excerpt: A concise, basic introduction to modelling and computational chemistry which focuses on the essentials, including MM, MC, and MD, along with a chapter devoted to QSAR and Discovery Chemistry. Includes supporting website featuring background information, full colour illustrations, questions and answers tied into the text,Visual Basic packages and many realistic examples with solutions Takes a hands-on approach, using state of the art software packages G03/W and/or Hyperchem, Gaussian .gjf files and sample outputs. Revised with changes in emphasis and presentation to appeal to the modern student.

Atomistic Modeling of Materials Failure

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Author :
Publisher : Springer Science & Business Media
ISBN 13 : 0387764267
Total Pages : 547 pages
Book Rating : 4.3/5 (877 download)

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Book Synopsis Atomistic Modeling of Materials Failure by : Markus J. Buehler

Download or read book Atomistic Modeling of Materials Failure written by Markus J. Buehler and published by Springer Science & Business Media. This book was released on 2008-08-07 with total page 547 pages. Available in PDF, EPUB and Kindle. Book excerpt: This is an introduction to molecular and atomistic modeling techniques applied to fracture and deformation of solids, focusing on a variety of brittle, ductile, geometrically confined and biological materials. The overview includes computational methods and techniques operating at the atomic scale, and describes how these techniques can be used to model cracks and other deformation mechanisms. The book aims to make new molecular modeling techniques available to a wider community.

Machine Learning in Chemistry

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Author :
Publisher : Royal Society of Chemistry
ISBN 13 : 1839160241
Total Pages : 564 pages
Book Rating : 4.8/5 (391 download)

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Book Synopsis Machine Learning in Chemistry by : Hugh M Cartwright

Download or read book Machine Learning in Chemistry written by Hugh M Cartwright and published by Royal Society of Chemistry. This book was released on 2020-07-15 with total page 564 pages. Available in PDF, EPUB and Kindle. Book excerpt: Progress in the application of machine learning (ML) to the physical and life sciences has been rapid. A decade ago, the method was mainly of interest to those in computer science departments, but more recently ML tools have been developed that show significant potential across wide areas of science. There is a growing consensus that ML software, and related areas of artificial intelligence, may, in due course, become as fundamental to scientific research as computers themselves. Yet a perception remains that ML is obscure or esoteric, that only computer scientists can really understand it, and that few meaningful applications in scientific research exist. This book challenges that view. With contributions from leading research groups, it presents in-depth examples to illustrate how ML can be applied to real chemical problems. Through these examples, the reader can both gain a feel for what ML can and cannot (so far) achieve, and also identify characteristics that might make a problem in physical science amenable to a ML approach. This text is a valuable resource for scientists who are intrigued by the power of machine learning and want to learn more about how it can be applied in their own field.

A Practical Introduction to the Simulation of Molecular Systems

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Author :
Publisher :
ISBN 13 : 9781107176355
Total Pages : 339 pages
Book Rating : 4.1/5 (763 download)

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Book Synopsis A Practical Introduction to the Simulation of Molecular Systems by : Martin J. Field

Download or read book A Practical Introduction to the Simulation of Molecular Systems written by Martin J. Field and published by . This book was released on 2007 with total page 339 pages. Available in PDF, EPUB and Kindle. Book excerpt: Molecular simulation is a powerful tool in materials science, physics, chemistry and biomolecular fields. This updated edition provides a pragmatic introduction to a wide range of techniques for the simulation of molecular systems at the atomic level. The first part concentrates on methods for calculating the potential energy of a molecular system, with new chapters on quantum chemical, molecular mechanical and hybrid potential techniques. The second part describes methods examining conformational, dynamical and thermodynamical properties of systems, covering techniques including geometry-optimization, normal-mode analysis, molecular dynamics, and Monte Carlo simulation. Using Python, the second edition includes numerous examples and program modules for each simulation technique, allowing the reader to perform the calculations and appreciate the inherent difficulties involved in each. This is a valuable resource for researchers and graduate students wanting to know how to use atomic-scale molecular simulations. Supplementary material, including the program library and technical information, available through www.cambridge.org/9780521852524.

Atomic-Scale Modelling of Electrochemical Systems

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Author :
Publisher : John Wiley & Sons
ISBN 13 : 1119605636
Total Pages : 372 pages
Book Rating : 4.1/5 (196 download)

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Book Synopsis Atomic-Scale Modelling of Electrochemical Systems by : Marko M. Melander

Download or read book Atomic-Scale Modelling of Electrochemical Systems written by Marko M. Melander and published by John Wiley & Sons. This book was released on 2021-09-09 with total page 372 pages. Available in PDF, EPUB and Kindle. Book excerpt: Atomic-Scale Modelling of Electrochemical Systems A comprehensive overview of atomistic computational electrochemistry, discussing methods, implementation, and state-of-the-art applications in the field The first book to review state-of-the-art computational and theoretical methods for modelling, understanding, and predicting the properties of electrochemical interfaces. This book presents a detailed description of the current methods, their background, limitations, and use for addressing the electrochemical interface and reactions. It also highlights several applications in electrocatalysis and electrochemistry. Atomic-Scale Modelling of Electrochemical Systems discusses different ways of including the electrode potential in the computational setup and fixed potential calculations within the framework of grand canonical density functional theory. It examines classical and quantum mechanical models for the solid-liquid interface and formation of an electrochemical double-layer using molecular dynamics and/or continuum descriptions. A thermodynamic description of the interface and reactions taking place at the interface as a function of the electrode potential is provided, as are novel ways to describe rates of heterogeneous electron transfer, proton-coupled electron transfer, and other electrocatalytic reactions. The book also covers multiscale modelling, where atomic level information is used for predicting experimental observables to enable direct comparison with experiments, to rationalize experimental results, and to predict the following electrochemical performance. Uniquely explains how to understand, predict, and optimize the properties and reactivity of electrochemical interfaces starting from the atomic scale Uses an engaging “tutorial style” presentation, highlighting a solid physicochemical background, computational implementation, and applications for different methods, including merits and limitations Bridges the gap between experimental electrochemistry and computational atomistic modelling Written by a team of experts within the field of computational electrochemistry and the wider computational condensed matter community, this book serves as an introduction to the subject for readers entering the field of atom-level electrochemical modeling, while also serving as an invaluable reference for advanced practitioners already working in the field.

Modeling Electrochemical Energy Storage at the Atomic Scale

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Author :
Publisher : Springer
ISBN 13 : 3030005933
Total Pages : 145 pages
Book Rating : 4.0/5 (3 download)

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Book Synopsis Modeling Electrochemical Energy Storage at the Atomic Scale by : Martin Korth

Download or read book Modeling Electrochemical Energy Storage at the Atomic Scale written by Martin Korth and published by Springer. This book was released on 2018-11-30 with total page 145 pages. Available in PDF, EPUB and Kindle. Book excerpt: The series Topics in Current Chemistry Collections presents critical reviews from the journal Topics in Current Chemistry organized in topical volumes. The scope of coverage is all areas of chemical science including the interfaces with related disciplines such as biology, medicine and materials science. The goal of each thematic volume is to give the non-specialist reader, whether in academia or industry, a comprehensive insight into an area where new research is emerging which is of interest to a larger scientific audience. Each review within the volume critically surveys one aspect of that topic and places it within the context of the volume as a whole. The most significant developments of the last 5 to 10 years are presented using selected examples to illustrate the principles discussed. The coverage is not intended to be an exhaustive summary of the field or include large quantities of data, but should rather be conceptual, concentrating on the methodological thinking that will allow the non-specialist reader to understand the information presented. Contributions also offer an outlook on potential future developments in the field. The chapters “Assessment of Simple Models for Molecular Simulation of Ethylene Carbonate and Propylene Carbonate as Solvents for Electrolyte Solutions” and “Elucidating Solvation Structures for Rational Design of Multivalent Electrolytes—A Review” are available open access under a CC BY 4.0 License via link.springer.com.

A Practical Introduction to the Simulation of Molecular Systems

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Author :
Publisher : Cambridge University Press
ISBN 13 : 1139465813
Total Pages : 294 pages
Book Rating : 4.1/5 (394 download)

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Book Synopsis A Practical Introduction to the Simulation of Molecular Systems by : Martin J. Field

Download or read book A Practical Introduction to the Simulation of Molecular Systems written by Martin J. Field and published by Cambridge University Press. This book was released on 2007-07-19 with total page 294 pages. Available in PDF, EPUB and Kindle. Book excerpt: Molecular simulation is a powerful tool in materials science, physics, chemistry and biomolecular fields. This updated edition provides a pragmatic introduction to a wide range of techniques for the simulation of molecular systems at the atomic level. The first part concentrates on methods for calculating the potential energy of a molecular system, with new chapters on quantum chemical, molecular mechanical and hybrid potential techniques. The second part describes methods examining conformational, dynamical and thermodynamical properties of systems, covering techniques including geometry-optimization, normal-mode analysis, molecular dynamics, and Monte Carlo simulation. Using Python, the second edition includes numerous examples and program modules for each simulation technique, allowing the reader to perform the calculations and appreciate the inherent difficulties involved in each. This is a valuable resource for researchers and graduate students wanting to know how to use atomic-scale molecular simulations. Supplementary material, including the program library and technical information, available through www.cambridge.org/9780521852524.

Molecular Modeling and Multiscaling Issues for Electronic Material Applications

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Author :
Publisher : Springer Science & Business Media
ISBN 13 : 1461417287
Total Pages : 260 pages
Book Rating : 4.4/5 (614 download)

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Book Synopsis Molecular Modeling and Multiscaling Issues for Electronic Material Applications by : Nancy Iwamoto

Download or read book Molecular Modeling and Multiscaling Issues for Electronic Material Applications written by Nancy Iwamoto and published by Springer Science & Business Media. This book was released on 2012-01-18 with total page 260 pages. Available in PDF, EPUB and Kindle. Book excerpt: Molecular Modeling and Multiscaling Issues for Electronic Material Applications provides a snapshot on the progression of molecular modeling in the electronics industry and how molecular modeling is currently being used to understand material performance to solve relevant issues in this field. This book is intended to introduce the reader to the evolving role of molecular modeling, especially seen through the eyes of the IEEE community involved in material modeling for electronic applications. Part I presents the role that quantum mechanics can play in performance prediction, such as properties dependent upon electronic structure, but also shows examples how molecular models may be used in performance diagnostics, especially when chemistry is part of the performance issue. Part II gives examples of large-scale atomistic methods in material failure and shows several examples of transitioning between grain boundary simulations (on the atomistic level)and large-scale models including an example of the use of quasi-continuum methods that are being used to address multiscaling issues. Part III is a more specific look at molecular dynamics in the determination of the thermal conductivity of carbon-nanotubes. Part IV covers the many aspects of molecular modeling needed to understand the relationship between the molecular structure and mechanical performance of materials. Finally, Part V discusses the transitional topic of multiscale modeling and recent developments to reach the submicronscale using mesoscale models, including examples of direct scaling and parameterization from the atomistic to the coarse-grained particle level.

Molecular Materials with Specific Interactions - Modeling and Design

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Publisher : Springer Science & Business Media
ISBN 13 : 140205372X
Total Pages : 597 pages
Book Rating : 4.4/5 (2 download)

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Book Synopsis Molecular Materials with Specific Interactions - Modeling and Design by : W. Andrzej Sokalski

Download or read book Molecular Materials with Specific Interactions - Modeling and Design written by W. Andrzej Sokalski and published by Springer Science & Business Media. This book was released on 2007-05-06 with total page 597 pages. Available in PDF, EPUB and Kindle. Book excerpt: Design of new molecular materials is emerging as a new interdisciplinary research field. Corresponding reports are scattered in literature, and this book constitutes one of the first attempts to overview ongoing research efforts. It provides basic information, as well as the details of theory and examples of its application, to experimentalists and theoreticians interested in modeling molecular properties and putting into practice rational design of new materials.

Atomic-Scale Modeling of Nanosystems and Nanostructured Materials

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Author :
Publisher : Springer
ISBN 13 : 3642046509
Total Pages : 371 pages
Book Rating : 4.6/5 (42 download)

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Book Synopsis Atomic-Scale Modeling of Nanosystems and Nanostructured Materials by : Carlo Massobrio

Download or read book Atomic-Scale Modeling of Nanosystems and Nanostructured Materials written by Carlo Massobrio and published by Springer. This book was released on 2010-01-19 with total page 371 pages. Available in PDF, EPUB and Kindle. Book excerpt: Understanding the structural organization of materials at the atomic scale is a lo- standing challenge of condensed matter physics and chemistry. By reducing the size of synthesized systems down to the nanometer, or by constructing them as collection of nanoscale size constitutive units, researchers are faced with the task of going beyond models and interpretations based on bulk behavior. Among the wealth of new materials having in common a “nanoscale” ngerprint, one can encounter systems intrinsically extending to a few nanometers (clusters of various compo- tions), systems featuring at least one spatial dimension not repeated periodically in space and assemblies of nanoscale grains forming extended compounds. For all these cases, there is a compelling need of an atomic-scale information combining knowledge of the topology of the system and of its bonding behavior, based on the electronic structure and its interplay with the atomic con gurations. Recent dev- opments in computer architectures and progresses in available computational power have made possible the practical realization of a paradygma that appeared totally unrealistic at the outset of computer simulations in materials science. This consists inbeing able to parallel (at least inprinciple) any experimental effort by asimulation counterpart, this occurring at the scale most appropriate to complement and enrich the experiment.

Interatomic Forces in Condensed Matter

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Author :
Publisher : Oxford Series on Materials Mod
ISBN 13 : 9780198509776
Total Pages : 306 pages
Book Rating : 4.5/5 (97 download)

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Book Synopsis Interatomic Forces in Condensed Matter by : Mike Finnis

Download or read book Interatomic Forces in Condensed Matter written by Mike Finnis and published by Oxford Series on Materials Mod. This book was released on 2003 with total page 306 pages. Available in PDF, EPUB and Kindle. Book excerpt: There is a continuing growth of interest in the computer simulation of materials at the atomic scale, using a variety of academic and commercial computer programs. In all such programs there is some physical model of the inter-atomic forces, which may be based on something as simple as a pair interaction, such as the Lennard-Jones model, or as complex as a self-consistent, all-electron solution of the quantum mechanical problem. For a student or researcher, the basis of such models is often shrouded in mystery. It is usually unclear how well founded they are, since it is hard to find a discussion of the physical assumptions that have been made in their construction. The lack of clear understanding of the scope and limitations of a given model may lead to its innocent misuse, resulting either in unfair criticism of the model or in the dissemination of nonsensical results. In the present book, models of inter-atomic forces are derived from a common physical basis, namely the density functional theory. The interested reader will be able to follow the detailed derivation of pairwise potentials in simple metals, tight-binding models from the simplest to the most sophisticated (self-consistent) kind, and various ionic models. The book is self-contained, requiring no more background than provided by an undergraduate quantum mechanics course. It aims to furnish the reader with a critical appreciation of the broad range of models in current use, and to provide the tools for understanding other variants that are described in the literature. Some of the material is new, and some pointers are given to possible future avenues of model development.

Computational Chemistry and Molecular Modeling

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Author :
Publisher : Springer Science & Business Media
ISBN 13 : 3540773029
Total Pages : 405 pages
Book Rating : 4.5/5 (47 download)

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Book Synopsis Computational Chemistry and Molecular Modeling by : K. I. Ramachandran

Download or read book Computational Chemistry and Molecular Modeling written by K. I. Ramachandran and published by Springer Science & Business Media. This book was released on 2008-06-13 with total page 405 pages. Available in PDF, EPUB and Kindle. Book excerpt: The gap between introductory level textbooks and highly specialized monographs is filled by this modern textbook. It provides in one comprehensive volume the in-depth theoretical background for molecular modeling and detailed descriptions of the applications in chemistry and related fields like drug design, molecular sciences, biomedical, polymer and materials engineering. Special chapters on basic mathematics and the use of respective software tools are included. Numerous numerical examples, exercises and explanatory illustrations as well as a web site with application tools (http://www.amrita.edu/cen/ccmm) support the students and lecturers.

Molecular Modelling

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Publisher : Royal Society of Chemistry
ISBN 13 : 1788018176
Total Pages : 323 pages
Book Rating : 4.7/5 (88 download)

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Book Synopsis Molecular Modelling by : Peter Bladon

Download or read book Molecular Modelling written by Peter Bladon and published by Royal Society of Chemistry. This book was released on 2019-05-02 with total page 323 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book is a practical, easy to use guide for readers with limited experience of molecular modelling. It will provide students at the undergraduate and early postgraduate chemistry level with a similar entry to modelling. The needs of independent readers are catered for by the inclusion of instructions for acquiring and setting up a suitable computer. Unlike many other textbooks in this field, the authors avoid extensive discussion around complex mathematical foundations behind the methods, choosing instead to provide the reader with the choice of methods themselves. To further these aims of the book, compact discs are included that provide a comprehensive suite of modelling software and datasets. The continuing interest of the pharmaceutical industry in molecular modelling in early stage drug design is recognized by the inclusion of chapters Medicinal Chemistry and Drug Discovery. There is a chapter on modelling of the solid state, a subject that is also of importance for pharma, where problems due to polymorphism in the crystalline forms of drugs are often encountered in the later design stages.

Atomic-Scale Modeling of Nanosystems and Nanostructured Materials

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Author :
Publisher : Springer Science & Business Media
ISBN 13 : 3642046495
Total Pages : 382 pages
Book Rating : 4.6/5 (42 download)

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Book Synopsis Atomic-Scale Modeling of Nanosystems and Nanostructured Materials by : Carlo Massobrio

Download or read book Atomic-Scale Modeling of Nanosystems and Nanostructured Materials written by Carlo Massobrio and published by Springer Science & Business Media. This book was released on 2010-02-05 with total page 382 pages. Available in PDF, EPUB and Kindle. Book excerpt: The book covers a variety of applications of modern atomic-scale modeling of materials in the area of nanoscience and nanostructured systems. By highlighting the most recent achievements obtained within a single institute, at the forefront of material science studies, the authors are able to provide a thorough description of properties at the nanoscale. The areas covered are structural determination, electronic excitation behaviors, clusters on surface morphology, spintronics and disordered materials. For each application, the basics of methodology are provided, allowing for a sound presentation of approaches such as density functional theory (of ground and excited states), electronic transport and molecular dynamics in its classical and first-principles forms. The book is a timely collection of theoretical nanoscience contributions fully in line with current experimental advances.

Construction and Use of Atomic and Molecular Models

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Author :
Publisher : Pergamon
ISBN 13 :
Total Pages : 236 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Construction and Use of Atomic and Molecular Models by : H. Bassow

Download or read book Construction and Use of Atomic and Molecular Models written by H. Bassow and published by Pergamon. This book was released on 1968 with total page 236 pages. Available in PDF, EPUB and Kindle. Book excerpt: