Computational Chemistry Methods

Computational Chemistry Methods
Author :
Publisher : Walter de Gruyter GmbH & Co KG
Total Pages : 227
Release :
ISBN-10 : 9783110629927
ISBN-13 : 3110629925
Rating : 4/5 (27 Downloads)

Synopsis Computational Chemistry Methods by : Ponnadurai Ramasami

This book reviews a variety of methods in computational chemistry and their applications in different fields of current research. Ab initio methods and regression analyses are discussed with special focus on their application to investigate chemical structures as for example dyes or drug compounds. Further topics are the use of computational methods in the modeling of spectroscopic data or to study reaction mechanisms.

Theory and Applications of Computational Chemistry

Theory and Applications of Computational Chemistry
Author :
Publisher : Elsevier
Total Pages : 1336
Release :
ISBN-10 : 9780080456249
ISBN-13 : 0080456243
Rating : 4/5 (49 Downloads)

Synopsis Theory and Applications of Computational Chemistry by : Clifford Dykstra

Computational chemistry is a means of applying theoretical ideas using computers and a set of techniques for investigating chemical problems within which common questions vary from molecular geometry to the physical properties of substances. Theory and Applications of Computational Chemistry: The First Forty Years is a collection of articles on the emergence of computational chemistry. It shows the enormous breadth of theoretical and computational chemistry today and establishes how theory and computation have become increasingly linked as methodologies and technologies have advanced. Written by the pioneers in the field, the book presents historical perspectives and insights into the subject, and addresses new and current methods, as well as problems and applications in theoretical and computational chemistry. Easy to read and packed with personal insights, technical and classical information, this book provides the perfect introduction for graduate students beginning research in this area. It also provides very readable and useful reviews for theoretical chemists.* Written by well-known leading experts * Combines history, personal accounts, and theory to explain much of the field of theoretical and compuational chemistry* Is the perfect introduction to the field

Computational Techniques for Analytical Chemistry and Bioanalysis

Computational Techniques for Analytical Chemistry and Bioanalysis
Author :
Publisher : Royal Society of Chemistry
Total Pages : 383
Release :
ISBN-10 : 9781788014618
ISBN-13 : 1788014618
Rating : 4/5 (18 Downloads)

Synopsis Computational Techniques for Analytical Chemistry and Bioanalysis by : Philippe B. Wilson

This work will serve as a definitive overview of the field of computational simulation as applied to analytical chemistry and biology, drawing on recent advances as well as describing essential, established theory for graduates and postgraduate researchers.

Computational Organic Chemistry

Computational Organic Chemistry
Author :
Publisher : John Wiley & Sons
Total Pages : 653
Release :
ISBN-10 : 9781118291924
ISBN-13 : 1118291921
Rating : 4/5 (24 Downloads)

Synopsis Computational Organic Chemistry by : Steven M. Bachrach

The Second Edition demonstrates how computational chemistry continues to shed new light on organic chemistry The Second Edition of author Steven Bachrach’s highly acclaimed Computational Organic Chemistry reflects the tremendous advances in computational methods since the publication of the First Edition, explaining how these advances have shaped our current understanding of organic chemistry. Readers familiar with the First Edition will discover new and revised material in all chapters, including new case studies and examples. There’s also a new chapter dedicated to computational enzymology that demonstrates how principles of quantum mechanics applied to organic reactions can be extended to biological systems. Computational Organic Chemistry covers a broad range of problems and challenges in organic chemistry where computational chemistry has played a significant role in developing new theories or where it has provided additional evidence to support experimentally derived insights. Readers do not have to be experts in quantum mechanics. The first chapter of the book introduces all of the major theoretical concepts and definitions of quantum mechanics followed by a chapter dedicated to computed spectral properties and structure identification. Next, the book covers: Fundamentals of organic chemistry Pericyclic reactions Diradicals and carbenes Organic reactions of anions Solution-phase organic chemistry Organic reaction dynamics The final chapter offers new computational approaches to understand enzymes. The book features interviews with preeminent computational chemists, underscoring the role of collaboration in developing new science. Three of these interviews are new to this edition. Readers interested in exploring individual topics in greater depth should turn to the book’s ancillary website www.comporgchem.com, which offers updates and supporting information. Plus, every cited article that is available in electronic form is listed with a link to the article.

Computational Methods in Lanthanide and Actinide Chemistry

Computational Methods in Lanthanide and Actinide Chemistry
Author :
Publisher : John Wiley & Sons
Total Pages : 650
Release :
ISBN-10 : 9781118688281
ISBN-13 : 1118688287
Rating : 4/5 (81 Downloads)

Synopsis Computational Methods in Lanthanide and Actinide Chemistry by : Michael Dolg

The f-elements and their compounds often possess an unusually complex electronic structure, governed by the high number of electronic states arising from open f-shells as well as large relativistic and electron correlation effects. A correct theoretical description of these elements poses the highest challenges to theory. Computational Methods in Lanthanide and Actinide Chemistry summarizes state-of-the-art electronic structure methods applicable for quantum chemical calculations of lanthanide and actinide systems and presents a broad overview of their most recent applications to atoms, molecules and solids. The book contains sixteen chapters, written by leading experts in method development as well as in theoretical investigations of f-element systems. Topics covered include: Relativistic configuration interaction calculations for lanthanide and actinide anions Study of actinides by relativistic coupled cluster methods Relativistic all-electron approaches to the study of f- element chemistry Relativistic pseudopotentials and their applications Gaussian basis sets for lanthanide and actinide elements Applied computational actinide chemistry This book will serve as a comprehensive reference work for quantum chemists and computational chemists, both those already working in, and those planning to enter the field of quantum chemistry for f-elements. Experimentalists will also find important information concerning the capabilities of modern quantum chemical methods to assist in the interpretation or even to predict the outcome of their experiments.

Introduction to Computational Chemistry

Introduction to Computational Chemistry
Author :
Publisher : John Wiley & Sons
Total Pages : 1056
Release :
ISBN-10 : 9781118825952
ISBN-13 : 1118825950
Rating : 4/5 (52 Downloads)

Synopsis Introduction to Computational Chemistry by : Frank Jensen

Introduction to Computational Chemistry 3rd Edition provides a comprehensive account of the fundamental principles underlying different computational methods. Fully revised and updated throughout to reflect important method developments and improvements since publication of the previous edition, this timely update includes the following significant revisions and new topics: Polarizable force fields Tight-binding DFT More extensive DFT functionals, excited states and time dependent molecular properties Accelerated Molecular Dynamics methods Tensor decomposition methods Cluster analysis Reduced scaling and reduced prefactor methods Additional information is available at: www.wiley.com/go/jensen/computationalchemistry3

Computational Methods in Physics, Chemistry and Biology

Computational Methods in Physics, Chemistry and Biology
Author :
Publisher : John Wiley & Sons
Total Pages : 230
Release :
ISBN-10 : 0471495638
ISBN-13 : 9780471495635
Rating : 4/5 (38 Downloads)

Synopsis Computational Methods in Physics, Chemistry and Biology by : Paul Harrison

Eine gut verständliche Einführung in moderne naturwissenschaftliche Rechenmethoden! Nur geringe physikalische Vorkenntnisse voraussetzend, vermittelt der Autor Grundlagen und komplexere Ansätze anhand vieler Beispiele und ausgesprochen praxisnaher Übungsaufgaben. Besprochen werden alle Rechenmethoden, die im Grundstudium erlernt werden sollen, hinsichtlich ihrer Leistungsfähigkeit und ihrer Anwendungsgebiete.

Mathematical Challenges from Theoretical/Computational Chemistry

Mathematical Challenges from Theoretical/Computational Chemistry
Author :
Publisher : National Academies Press
Total Pages : 143
Release :
ISBN-10 : 9780309176620
ISBN-13 : 030917662X
Rating : 4/5 (20 Downloads)

Synopsis Mathematical Challenges from Theoretical/Computational Chemistry by : National Research Council

Computational methods are rapidly becoming major tools of theoretical, pharmaceutical, materials, and biological chemists. Accordingly, the mathematical models and numerical analysis that underlie these methods have an increasingly important and direct role to play in the progress of many areas of chemistry. This book explores the research interface between computational chemistry and the mathematical sciences. In language that is aimed at non-specialists, it documents some prominent examples of past successful cross-fertilizations between the fields and explores the mathematical research opportunities in a broad cross-section of chemical research frontiers. It also discusses cultural differences between the two fields and makes recommendations for overcoming those differences and generally promoting this interdisciplinary work.

Computational Chemistry

Computational Chemistry
Author :
Publisher : Springer Science & Business Media
Total Pages : 474
Release :
ISBN-10 : 9780306483912
ISBN-13 : 0306483912
Rating : 4/5 (12 Downloads)

Synopsis Computational Chemistry by : Errol G. Lewars

Computational chemistry has become extremely important in the last decade, being widely used in academic and industrial research. Yet there have been few books designed to teach the subject to nonspecialists. Computational Chemistry: Introduction to the Theory and Applications of Molecular and Quantum Mechanics is an invaluable tool for teaching and researchers alike. The book provides an overview of the field, explains the basic underlying theory at a meaningful level that is not beyond beginners, and it gives numerous comparisons of different methods with one another and with experiment. The following concepts are illustrated and their possibilities and limitations are given: - potential energy surfaces; - simple and extended Hückel methods; - ab initio, AM1 and related semiempirical methods; - density functional theory (DFT). Topics are placed in a historical context, adding interest to them and removing much of their apparently arbitrary aspect. The large number of references, to all significant topics mentioned, should make this book useful not only to undergraduates but also to graduate students and academic and industrial researchers.

Computational Chemistry

Computational Chemistry
Author :
Publisher : John Wiley & Sons
Total Pages : 408
Release :
ISBN-10 : 9780471458432
ISBN-13 : 0471458430
Rating : 4/5 (32 Downloads)

Synopsis Computational Chemistry by : David Young

A practical, easily accessible guide for bench-top chemists, thisbook focuses on accurately applying computational chemistrytechniques to everyday chemistry problems. Provides nonmathematical explanations of advanced topics incomputational chemistry. Focuses on when and how to apply different computationaltechniques. Addresses computational chemistry connections to biochemicalsystems and polymers. Provides a prioritized list of methods for attacking difficultcomputational chemistry problems, and compares advantages anddisadvantages of various approximation techniques. Describes how the choice of methods of software affectsrequirements for computer memory and processing time.