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Current Trends in X-Ray Crystallography

Author : Annamalai Chandrasekaran
Publisher : BoD – Books on Demand
Page : 452 pages
File Size : 28,30 MB
Release : 2011-12-16
Category : Science
ISBN : 9533077549

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This book on X-ray Crystallography is a compilation of current trends in the use of X-ray crystallography and related structural determination methods in various fields. The methods covered here include single crystal small-molecule X-ray crystallography, macromolecular (protein) single crystal X-ray crystallography, and scattering and spectroscopic complimentary methods. The fields range from simple organic compounds, metal complexes to proteins, and also cover the meta-analyses of the database for weak interactions.

Structure Determination by X-ray Crystallography

Author : Mark Ladd
Publisher : Springer Science & Business Media
Page : 784 pages
File Size : 33,53 MB
Release : 2014-07-08
Category : Science
ISBN : 146143954X

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The advances in and applications of x-ray and neutron crystallography form the essence of this new edition of this classic textbook, while maintaining the overall plan of the book that has been well received in the academic community since the first edition in 1977. X-ray crystallography is a universal tool for studying molecular structure, and the complementary nature of neutron diffraction crystallography permits the location of atomic species in crystals which are not easily revealed by X-ray techniques alone, such as hydrogen atoms or other light atoms in the presence of heavier atoms. Thus, a chapter discussing the practice of neutron diffraction techniques, with examples, broadens the scope of the text in a highly desirable way. As with previous editions, the book contains problems to illustrate the work of each chapter, and detailed solutions are provided. Mathematical procedures related to the material of the main body of the book are not discussed in detail, but are quoted where needed with references to standard mathematical texts. To address the computational aspect of crystallography, the suite of computer programs from the fourth edition has been revised and expanded. The programs enable the reader to participate fully in many of the aspects of x-ray crystallography discussed in the book. In particular, the program system XRAY* is interactive, and enables the reader to follow through, at the monitor screen, the computational techniques involved in single-crystal structure determination, albeit in two dimensions, with the data sets provided. Exercises for students can be found in the book, and solutions are available to instructors.

An Introduction to X-ray Crystallography

Author : Michael M. Woolfson
Publisher : Cambridge University Press
Page : 422 pages
File Size : 16,97 MB
Release : 1997-01-13
Category : Medical
ISBN : 9780521423595

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A textbook for the student beginning a serious study of X-ray crystallography.

Principles of Protein X-ray Crystallography

Author : Jan Drenth
Publisher : Springer Science & Business Media
Page : 355 pages
File Size : 47,25 MB
Release : 2013-03-09
Category : Science
ISBN : 1475730926

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New textbooks at all levels of chemistry appear with great regularity. Some fields such as basic biochemistry, organic reaction mechanisms, and chemical thermodynamics are well represented by many excellent texts, and new or revised editions are published sufficiently often to keep up with progress in research. However, some areas of chemistry, especially many of those taught at the graduate level, suffer from a real lack of up to-date textbooks. The most serious needs occur in fields that are rapidly changing. Textbooks in these subjects usually have to be written by scientists actually involved in the research that is advancing the field. It is not often easy to persuade such individuals to set time aside to help spread the knowledge they have accumulated. Our goal, in this series, is to pinpoint areas of chemistry where recent progress has outpaced what is covered in any available textbooks, and then seek out and persuade experts in these fields to produce relatively concise but instructive intro ductions to their fields. These should serve the needs of one-semester or one-quarter graduate courses in chemistry and biochemistry. In some cases, the availability of texts in active research areas should help stimulate the creation of new courses. Charles R. Cantor v Preface to the Second Edition Since the publication of the previous edition in 1994, X-ray crystallography of proteins has advanced by improvements in existing techniques and by addition of new techniques.

Handbook of X-Ray Crystallography

Author : Sharon Levine
Publisher :
Page : 0 pages
File Size : 25,18 MB
Release : 2015-03-30
Category : X-ray crystallography
ISBN : 9781632382849

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X-ray Crystallography is a scientific technique used to demonstrate the arrangement of atoms of a crystalline solid in 3D space. This book is a collection of latest trends, using X-ray crystallography and related structural determination techniques in a diverse variety of spheres. The procedures emphasized in this book consist of various processes and spectroscopic complimentary methods. The spectrum ranges from basic organic compounds to metal complexes to proteins and includes meta-analyses of a host of weak connections.

Structure Determination by X-Ray Crystallography

Author : M. Ladd
Publisher : Springer Science & Business Media
Page : 404 pages
File Size : 32,21 MB
Release : 2012-12-06
Category : Science
ISBN : 1461579309

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Crystallography may be described as the science of the structure of materi als, using this word in its widest sense, and its ramifications are apparent over a broad front of current scientific endeavor. It is not surprising, therefore, to find that most universities offer some aspects of crystallography in their undergraduate courses in the physical sciences. It is the principal aim of this book to present an introduction to structure determination by X-ray crystal lography that is appropriate mainly to both final-year undergraduate studies in crystallography, chemistry, and chemical physics, and introductory post graduate work in this area of crystallography. We believe that the book will be of interest in other disciplines, such as physics, metallurgy, biochemistry, and geology, where crystallography has an important part to play. In the space of one book, it is not possible either to cover all aspects of crystallography or to treat all the subject matter completely rigorously. In particular, certain mathematical results are assumed in order that their applications may be discussed. At the end of each chapter, a short bibliog raphy is given, which may be used to extend the scope of the treatment given here. In addition, reference is made in the text to specific sources of information. We have chosen not to discuss experimental methods extensively, as we consider that this aspect of crystallography is best learned through practical experience, but an attempt has been made to simulate the interpretive side of experimental crystallography in both examples and exercises.

Advanced X-ray Crystallography

Author : Kari Rissanen
Publisher : Springer Science & Business Media
Page : 190 pages
File Size : 26,67 MB
Release : 2012-01-10
Category : Science
ISBN : 3642274072

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Computational Studies of Crystal Structure and Bonding, by Angelo Gavezzotti Cryo-Crystallography: Diffraction at Low Temperature and More, by Piero Macchi High-Pressure Crystallography, by Malcolm I. McMahon Chemical X-Ray Photodiffraction: Principles, Examples, and Perspectives, by Panče Naumov Powder Diffraction Crystallography of Molecular Solids, by Kenneth D. M. Harris

Small Angle Scattering and Diffraction

Author : Margareth Kazuyo Kobayashi Dias Franco
Publisher : BoD – Books on Demand
Page : 118 pages
File Size : 16,10 MB
Release : 2018-06-06
Category : Science
ISBN : 1789232465

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Reasoned and based on the difference between discovery and invention, according to the traditional conception, science can be distinguished between basic science and applied science. Nevertheless, we know that the sciences are inseparable. A century or more ago, Louis Pasteur said "there is no applied science, there are applications of science." With this assertion, he establishes the logic of complementarity between them. Science certainly goes beyond its own material application and brings us to issues that have intrigued humanity for a long time. During the many years that we have been working with techniques of material characterization, we observed that this complementarity was not always understood by the researchers. In line with the reasoning that the technique joined with science generates technology, the application of techniques that use x-ray and neutron sources seems to us of fundamental importance for the development of technology. In this way, we present in this book how the existing technology of material characterization can contribute to science and applied technology. The authors who contributed with this book sought to show the importance of applying the existing techniques in the development of their works.

Advances in Protein Molecular and Structural Biology Methods

Author : Timir Tripathi
Publisher : Academic Press
Page : 716 pages
File Size : 14,40 MB
Release : 2022-01-14
Category : Science
ISBN : 0323902650

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Advances in Protein Molecular and Structural Biology Methods offers a complete overview of the latest tools and methods applicable to the study of proteins at the molecular and structural level. The book begins with sections exploring tools to optimize recombinant protein expression and biophysical techniques such as fluorescence spectroscopy, NMR, mass spectrometry, cryo-electron microscopy, and X-ray crystallography. It then moves towards computational approaches, considering structural bioinformatics, molecular dynamics simulations, and deep machine learning technologies. The book also covers methods applied to intrinsically disordered proteins (IDPs)followed by chapters on protein interaction networks, protein function, and protein design and engineering. It provides researchers with an extensive toolkit of methods and techniques to draw from when conducting their own experimental work, taking them from foundational concepts to practical application. Presents a thorough overview of the latest and emerging methods and technologies for protein study Explores biophysical techniques, including nuclear magnetic resonance, X-ray crystallography, and cryo-electron microscopy Includes computational and machine learning methods Features a section dedicated to tools and techniques specific to studying intrinsically disordered proteins