N2O2

N2O2

Author: American Academy of Underwater Sciences

Publisher:

Published: 1991

Total Pages: 26

ISBN-13:

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Elements of Physical Chemistry

Elements of Physical Chemistry

Author: Peter Atkins

Publisher: Macmillan

Published: 2009-01-09

Total Pages: 612

ISBN-13: 9781429218139

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This revision of the introductory textbook of physical chemistry has been designed to broaden its appeal, particularly to students with an interest in biological applications.


Chemistry3

Chemistry3

Author: Andrew Burrows

Publisher: Oxford University Press

Published: 2017

Total Pages: 1433

ISBN-13: 0198733801

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Chemistry3 establishes the fundamental principles of all three strands of chemistry; organic, inorganic and physical. By building on what students have learned at school, using carefully-worded explanations, annotated diagrams and worked examples, it presents an approachable introduction to chemistry and its relevance to everyday life.


Chemistry³

Chemistry³

Author: Andrew Burrows

Publisher: Oxford University Press, USA

Published: 2013-03-21

Total Pages: 1431

ISBN-13: 0199691851

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New to this Edition:


Chemistry

Chemistry

Author: Richard S. Moog

Publisher: John Wiley & Sons

Published: 2014-01-13

Total Pages: 400

ISBN-13: 1118640047

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Chemistry: A Guided Approach 6th Edition follows the underlying principles developed by years of research on how readers learn and draws on testing by those using the POGIL methodology. This text follows inquiry based learning and correspondingly emphasizes the underlying concepts and the reasoning behind the concepts. This text offers an approach that follows modern cognitive learning principles by having readers learn how to create knowledge based on experimental data and how to test that knowledge.


A Life Scientist's Guide to Physical Chemistry

A Life Scientist's Guide to Physical Chemistry

Author: Marc R. Roussel

Publisher: Cambridge University Press

Published: 2012-04-05

Total Pages: 457

ISBN-13: 1107006783

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Demonstrates how the tools of physical chemistry can be applied to biological questions, with numerous exercises and clearly-worked examples.


Molecular Interaction Fields

Molecular Interaction Fields

Author: Peter W. Atkins

Publisher: John Wiley & Sons

Published: 2006

Total Pages: 1154

ISBN-13: 3527318070

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This unique reference source, edited by the world's most respected expert on molecular interaction field software, covers all relevant principles of the GRID force field and its applications in medicinal chemistry. Entire chapters on 3D-QSAR, pharmacophore searches, docking studies, metabolism predictions and protein selectivity studies, among others, offer a concise overview of this emerging field. As an added bonus, this handbook includes a CD-ROM with the latest commercial versions of the GRID program and related software.


Bioinorganic Chemistry of Copper

Bioinorganic Chemistry of Copper

Author: K.D. Karlin

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 510

ISBN-13: 940116875X

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Bioinorganic Chemistry of Copper focuses on the vital role of copper ions in biology, especially as an essential metalloenzyme cofactor. The book is highly interdisciplinary in its approach--the outstanding list of contributors includes coordination chemists, biochemists, biophysicists, and molecular biologists. Chapters are grouped into major areas of research interest in inorganic copper chemistry, spectroscopy, oxygen chemistry, biochemistry, and molecular biology. The book also discusses basic research of great potential importance to pharmaceutical scientists. This book is based on the first Johns Hopkins University Copper Symposium, held in August 1992. Researchers in chemistry, biochemistry, molecular biology, and medicinal chemistry will find it to be an essential reference on its subject.


High Resolution EPR

High Resolution EPR

Author: Graeme Hanson

Publisher: Springer Science & Business Media

Published: 2009-06-19

Total Pages: 666

ISBN-13: 0387848568

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Metalloproteins comprise approximately 30% of all known proteins, and are involved in a variety of biologically important processes, including oxygen transport, biosynthesis, electron transfer, biodegradation, drug metabolism, proteolysis, and hydrolysis of amides and esters, environmental sulfur and nitrogen cycles, and disease mechanisms. EPR spectroscopy has an important role in not only the geometric structural characterization of the redox cofactors in metalloproteins but also their electronic structure, as this is crucial for their reactivity. The advent of x-ray crystallographic snapshots of the active site redox cofactors in metalloenzymes in conjunction with high-resolution EPR spectroscopy has provided detailed structural insights into their catalytic mechanisms. This volume was conceived in 2005 at the Rocky Mountain Conference on Analytical Chemistry (EPR Symposium) to highlight the importance of high-resolution EPR spectroscopy to the structural (geometric and electronic) characterization of redox active cofactors in metalloproteins. We have been fortunate to have enlisted internationally recognized experts in this joint venture to provide the scientific community with an overview of high-resolution EPR and its application to metals in biology. This volume, High-Resolution EPR: Applications to Metalloenzymes and Metals in Medicine, covers high-resolution EPR methods, iron proteins, nickel and copper enzymes, and metals in medicine. An eloquent synopsis of each chapter is provided by John Pilbrow in the Introduction. A second volume, Metals in Biology: Applications of High-Resolution EPR to Metalloenzymes, will appear later this year covering the complement of other metalloproteins. One of the pioneers in the development of pulsed EPR and its application to metalloproteins was Arthur Schweiger, whose contribution we include in this volume. Unfortunately, he passed away suddenly during the preparation of this volume. The editors and coauthors are extremely honored to dedicate this volume to the memory of Arthur Schweiger in recognition of his technical advances and insights into pulsed EPR and its application to metalloproteins. Arthur was extremely humble and treated everyone with equal respect. He was a gifted educator with an ability to explain complex phenomena in terms of simple intuitive pictures, had a delightful personality, and continues to be sadly missed by the community. It is an honor for the editors to facilitate the dissemination of these excellent contributions to the scientific community. Suggestions for future volumes are always appreciated.