Book Description
Crystallography Made Crystal Clear makes crystallography accessible to readers who have no prior knowledge of the field or its mathematical basis. This is the most comprehensive and concise reference for beginning Macromolecular crystallographers, written by a leading expert in the field. Rhodes' uses visual and geometric models to help readers understand the mathematics that form the basis of x-ray crystallography. He has invested a great deal of time and effort on World Wide Web tools for users of models, including beginning-level tutorials in molecular modeling on personal computers. Rhodes' personal CMCC Home Page also provides access to tools and links to resources discussed in the text. Most significantly, the final chapter introduces the reader to macromolecular modeling on personal computers-featuring SwissPdbViewer, a free, powerful modeling program now available for PC, Power Macintosh, and Unix computers. This updated and expanded new edition uses attractive four-color art, web tool access for further study, and concise language to explain the basis of X-ray crystallography, increasingly vital in today's research labs.
* Helps readers to understand where models come from, so they don't use them blindly and
inappropriately
* Provides many visual and geometric models for understanding a largely mathematical method
* Allows readers to judge whether recently published models are of sufficiently high quality and detail to be useful in their own work
* Allows readers to study macromolecular structure independently and in an open-ended fashion on their own computers, without being limited to textbook or journals illustrations
* Provides access to web tools in a format that will not go out of date. Links will be updated and added as existing resources change location or are added
Customer Reviews:
Crystal Clear.......2007-01-17
The delivery was prompt and in the item was in an excellent condition
Clear, but lack depth and practice problem.......2006-12-07
Crystallography Made Crystal Clear does clearly explain the principles of X-ray Crystallography. I used this book for a graduate class in introductory x-ray crystallography when I deemed that the assigned book for the class, Principles of Protein X-Ray Crystallography, unhelpful.
Crystallography Made Crystal Clear presents the theory behind crystallography in the most straightforward way possible. Whenever possible, concepts are explained in words and by examples instead of with equations. This elimates derivations that are not necessary to understand key concepts.
Although explanations in the book are clear, they are often too brief. The book also does not have any practice problems, which is a major drawback. If you are taking a crystallography class, I would take a look at this book but focus more heavily on the lecture notes and problems from class. Honestly, I haven't found a really good crystallography book, but this one at least is not too confusing.
Clear as a crystal!!!!.......2005-01-30
This book is a good one. Explains every aspect I always want to know about crystallography. In my first class of biochemistry I discover that I really like the macromolecular models, but my biochemistry book doesn't content much information about this subjet. When I discover this book I bought it, and read it, and I must to say that this book explain every aspect of the process of create a molecular model.
After read this book I thinking about to become a crystallographer.
The best introduction to the subject.......2004-06-15
This is the best introduction to crystallography I have ever come across. Which is quite an achievement, because its a difficult subject to understand. In crystallography, its very rare to find a book which does not deal with either a totally descriptive approach or a totally mathematical approach. Rhodes' book bridges the gap between the two and gives the reader the right dose of jargon and explanation. He illustrates every point with plenty of figures as well as real life computer models of proteins. Before I came across this book, I was struggling and failing to understand Isomorphous Replacement, MAD, Solvent Flattening, Maps and Models, as well as the iterative refining of models. I think no other book comes even close to this book in explaining all these concepts in simple format. This, I think is as clear as it can get without becoming oversimplified. A must have for all researchers and students whose work is even remotely connected to crystallography.
"The" clearest one out there...........2003-06-04
When it comes to this field of research, you get two types of references: (1) the 2-5 page quick intro that leaves you with the most basic overview of crystallography and (2) the 'hard core' books that go into such detail as to leave you breathless. This book is, in my opinion, the best transition book.
For non-crystallographers, this book will teach enough about crystallography to allow you to read crystal structure articles and understand what is meant by all of the used statistics and such.
For apprentice crystallographers, this is a wonderful intro into the field. Master the book, then move on to harder books to master it.
Highly recommended. I still go back to it, when I teach people, to help me explain in the way that Gale Rhodes does!
Book Description
Crystal Structure Refinement is a mixture of textbook and tutorial. As A Crystallographers Guide to SHELXL it covers advanced aspects of practical crystal structure refinement, which have not been much addressed by textbooks so far. After an introduction to SHELXL in the first chapter, a brief survey of crystal structure refinement is provided. Chapters three and higher address the various aspects of structure refinement, from the treatment of hydrogen atoms to the assignment of atom types, to disorder, to non-crystallographic symmetry and twinning. One chapter is dedicated to the refinement of macromolecular structures and two short chapters deal with structure validation (one for small molecule structures and one for macromolecules). In each of the chapters the book gives refinement examples, based on the program SHELXL, describing every problem in detail. It comes with a CD-ROM with all files necessary to reproduce the refinements.
Customer Reviews:
Great for Everyone............2007-04-26
If your a beginner or intermediate this book is great for you. The Shelx manual is as hard to read as a normal manual tends to be. This book takes you through a lot of things step by step and is a good accompanying text to the manual. Its well worth the money and written by someone who knows what he is talking about....
A very good textbook.......2006-12-16
For the beginer, it's a very good textbook with lots of examples and useful refs. However, if you are like to read the SHELXL manual, you can save your money, hehe!
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International Tables for Crystallography,Volume D: Physical properties of crystals (International Tables for Crystallography)
Manufacturer: Springer
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International Tables for Crystallography,Volume C: Mathematical, physical and chemical tables (International Tables for Crystallography)
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International Tables for Crystallography: Reciprocal Space, Vol. B (International Tables for Crystallography)
ASIN: 1402007140 |
Book Description
Volume D is concerned with the influence of symmetry on the physical and tensor properties of crystals and on their structural phase transitions. This role is very important in many different disciplines of the science of materials, such as crystallography, elasticity, solid-state physics, magnetism, optics, ferroelectricity and mineralogy, and Volume D deals with all these aspects in a unified way. The book is accompanied by a CD containing two pieces of software, one which supports Chapters 1.1 and 1.2 for the determination of irreducible group representations and tensor components, and one which supports Part 3 on structural phase transitions. Part 1 introduces the mathematical properties of tensors and group representations and gives their independent components for each of the crystallographic groups. The software included in the accompanying CD enables one to determine the irreducible representations of finite point groups in three dimensions (the 32 crystallographic groups and the groups of quasicrystalline phases) and the independent components of a tensor of any rank for each of these groups. As examples, several tensor properties of crystals are described: elastic properties, thermal expansion, magnetic properties, linear and nonlinear optical properties, transport properties and atomic displacement parameters, of special interest to crystallographers. A separate chapter is devoted to the particular case of tensors in quasiperiodic structures. Part 2 is devoted to the symmetry aspects of excitations in reciprocal space: phonons, electrons, Raman scattering and Brillouin scattering. Part 3 deals with the symmetry aspects of structural phase transitions and twinning. A prominent feature is the joint description of twinning and domain structures, which are usually presented in completely separate ways in handbooks of physics and mineralogy. The theory of structural phase transitions relates the symmetry characteristics of the transitions to their physical characteristics. The application of the symmetry principles that derive from this theory is illustrated by the tables contained in the accompanying CD. The CD also contains tables of tensor properties at any group-subgroup phase transition. Volume D was recently reviewed by M. Moore (Crystallography News, No. 90, September 2004, pp. 11-12).
International Tables for personal use can be purchased at a discount. Contact Customer Service for further information and to place an order.
Book Description
This textbook gives a concise introduction to modern crystal structure determination, emphasising both its theoretical background and the way it is actually carried out. The theoretical sections are supported by many illustrations, and lay emphasis on a good understanding rather than rigorous mathematics. The most important data collection techniques, and the methods of data reduction, structure solution and refinement are discussed from a practical point of view. Many tips and insights help readers to recognise and avoid possible errors and traps, and to judge the quality of results. The second edition has been considerably updated, especially the chapter on experimental methods, which is now mainly concerned with modern data collection using area-detectors. From the reviews of the first edition: "The book provides a nice balance between describing the mathematical fundamentals and offering practical advice on how to solve a crystal structure… appropriate for an undergraduate audience (particularly in chemistry) and for graduate students or researchers who find they need a better grasp of the subject… a very helpful addition to the collection of introductory texts in X-ray crystallography. Especially for its treatment of common errors in the collection of intensity data and in the interpretation of results." Acta Crystallographica
Customer Reviews:
still uses Schonflies notation?!.......2007-06-24
For any physicist or chemist involved in finding the structure of a given crystal, this book gives a useful read. It treats the subject at a level suitable for a 3rd or 4th year undergrad, who has access to the various crystallographic equipment described in the book. Like a 3 circle goniometer, CCD collection system, and a computer for data reduction. The basic ideas often involve finding the reciprocal space of the latter, via the scattering.
There is not much quantum mechanical theory here. Much of the treatment involves classical scattering off the atoms in the crystal. A more sophisticated text would describe the QM. But it turns out that for finding structures, the book's level of analysis is quite adequate.
What could be a little surprising is that in the descriptions of the crystal classes, that Schonflies notation is also used, along with the standard international notation. In the early 80s, Schonflies notation was being phased out. Surprised to see it still in use.
The Book Doctors Recommend Most.......2005-08-14
This is the ideal book for the beginner and in my opinion a must-read. In the excellent translation by Robert O. Gould, "Crystal Structure Determination" by Werner Massa explains all the basics from symmetry in real and reciprocal space, over generation of X-rays and other practical aspects, all the way to structure solution and refinement. Massa keeps the book simple and understandable and uses mathematical formulae carefully and only when helpful or necessary.
I learned the basics of crystallography from the German original of "the Massa". Now that I am a teacher of crystallography myself, this is the book I recommend to my students.
Useful tool for all dealing with structure determination.......2001-09-12
Single crystal structure determination has become an important and extremely powerful tool not only for inorganic and structural chemists but for all kinds of chemists interested in the structures of their compounds. The major disadvantage of this method was hitherto the lack of useful introductions into it's practical use.
This gap has been filled by Massa's book.
It focuses - unlike other crystallography books - on the practical applications and enables the reader to attack own structural problems by himself. Additionally, this book will provide the necessary theoretical background to understand how X-ray diffraction works, how crystals are built, all this symmetry stuff and so on.
The absolute highlight is, however, the step-by-step explanation of a structure determination, where one can almost see the author sitting in front of his computer and struggling with one of his structures, explaining every step in detail.
Crystallography still needs heavy brain work sometimes. But this book won't cause unnecessary headaches as many other crystallography books do.
Therefore, I recommend this book warmly to my crystallography students.
Crystal Structure Determination.......2000-03-28
This review is important for me because I'm working in a Lab.
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Polymorphism in Molecular Crystals
Joel Bernstein
Manufacturer: Oxford University Press, USA
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Polymorphism: in the Pharmaceutical Industry
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Polymorphism in Pharmaceutical Solids (Drugs and the Pharmaceutical Sciences)
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From Molecules to Crystallizers (Oxford Chemistry Primers)
ASIN: 0198506058 |
Book Description
Polymorphism - the multiplicity of structures or forms - is a term that is used in many disciplines. In chemistry it refers to the existence of more than one crystal structure for a particular chemical substance. The properties of a substance are determined by its composition and by its structure. In the last two decades, there has been a sharp rise in the interest in polymorphic systems, as an intrinsically interesting phenomenon and as an increasingly important component in the development and marketing of a variety of materials based on organic molecules (e.g. pharmaceuticals, dyes and pigments, explosives, etc.). This book summarizes and brings up to date the current knowledge and understanding of polymorphism of molecular crystals, and concentrates it in one comprehensive source. The book will be an invaluable reference for students, researchers, and professionals in the field.
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Electronic Processes in Organic Crystals and Polymers
Martin Pope , and
Charles E. Swenberg
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ASIN: 0195129636 |
Book Description
The first edition of Pope and Swenberg's Electronic Processes of Organic Crystals, published in 1982, became the classic reference in the field. It provided a tutorial on the experimental and related theoretical properties of aromatic hydrocarbon crystals and included emerging work on polymers and superconductivity. This new edition contains the complete text of the first edition, plus an extensive new section, comprising nearly half of the book, which covers recent developments and applications with polymers. The book provides a unified description of what is known in almost every aspect of the field, from basic phenomena to the latest practical applications, which include LED's, photocopiers, photoconductors, batteries, transistors, liquid crystals, photorefractive devices, and sensors.
Customer Reviews:
The 2nd Edition.......2000-07-18
This new edition contains a corrected first edition as Part I. Part II focuses on technologically relavant electroactive polymers chapter by chapter as well as relevant electronic processes. This book belongs on the desk of everyone working and publishing in the field of solid state organic electronics.
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Introduction to Liquid Crystals: Chemistry and Physics (Liquid Crystals Book Series)
Peter J. Collings , and
Michael Hird
Manufacturer: CRC
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Liquid Crystals: Nature's Delicate Phase of Matter, Second Edition.
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Liquid Crystals
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Optics of Liquid Crystal Displays
ASIN: 074840483X |
Book Description
This text relies on only introductory level physics and chemistry as the foundation for understanding liquid crystal science. Liquid crystals combine the material properties of solids with the flow properties of fluids. As such they have provided the foundation for a revolution in low- power, flat-panel display technology LCDs. In this book, the essential elements of liquid crystal science are introduced and explained from the perspectives of both the chemist and the physicist.; The text begins with an historical account of the discovery of liquid crystals and continues with a description of how different phases are generated and how different molecular architectures affect liquid crystalline properties. The rest of the book is concerned with understanding and explaining the properties of the various types of liquid crystals, and in the final part of the book, the technology of LCDs is discussed and illustrated.
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Advances in Crystal Growth Inhibition Technologies
Manufacturer: Springer
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ASIN: 0306464993 |
Book Description
In this book, academic researchers and technologists will find important information on the interaction of polymeric and non-polymeric inhibitors with a variety of scale forming crystals such as calcium phosphates, calcium carbonate, calcium oxalates, barium sulfate, calcium pyrophosphates, and calcium phosphonates. Moreover, the book delivers information to plant managers and formulators who would like to broaden and deepen their knowledge about processes involved in precipitation of sparingly soluble salts and learn more about the inhibitory aspects of various commercially available materials. Furthermore, experienced researchers will obtain fruitful and inspiring ideas from the easily accessible information about overlapping research areas, which will promote discoveries of new inhibitors (synthetic and/or natural) for the currently unmet challenges.
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Adsorption Phenomena and Anchoring Energy in Nematic Liquid Crystals (Liquid Crystals Book Series)
Giovanni Barbero , and
Luiz Roberto Evangelista
Manufacturer: CRC
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ASIN: 0849335841 |
Book Description
Despite the large quantity of phenomenological information concerning the bulk properties of nematic phase liquid crystals, little is understood about the origin of the surface energy, particularly the surface, interfacial, and anchoring properties of liquid crystals that affect the performance of liquid crystal devices. Self-contained and unique, Adsorption Phenomena and Anchoring Energy in Nematic Liquid Crystals provides an account of new and established results spanning three decades of research into the problems of anchoring energy and adsorption phenomena in liquid crystals. The book contains a detailed discussion of the origin and possible sources of anchoring energy in nematic liquid crystals, emphasizing the dielectric contribution to the anchoring energy in particular. Beginning with fundamental surface and anchoring properties of liquid crystals and the definition of the nematic phase, the authors explain how selective ion adsorption, dielectric energy density, thickness dependence, and bias voltage dependence influence the uniform alignment of liquid crystals and affect the performance of liquid crystal devices. They also discuss fundamental equations regulating the adsorption phenomenon and the dynamic aspects of ion adsorption phenomenon in liquid crystalline systems. Adsorption Phenomena and Anchoring Energy in Nematic Liquid Crystals serves as an excellent source of reference for graduates and researchers working in liquid crystals, complex fluids, condensed matter physics, statistical physics, chemical engineering, and electronic engineering, as well as providing a useful general introduction to and background information on the nematic liquid crystal phase.
Book Description
Photonic Crystals is the first book to address one of the newest and most exciting developments in physics--the discovery of photonic band-gap materials and their use in controlling the propagation of light. Recent discoveries show that many of the properties of an electron in a semiconductor crystal can apply to a particle of light in a photonic crystal. This has vast implications for physicists, materials scientists, and electrical engineers and suggests such possible developments as an entirely optical computer. Combining cutting-edge research with the basic theoretical concepts behind photonic crystals, the authors present to undergraduates and researchers a concise, readable, and comprehensive text on these novel materials and their applications.
The first chapters develop the theoretical tools of photonic crystals in a broad, intuitive fashion, starting from nothing more than Maxwell's equations and Fourier analysis, and include analogies to traditional solid-state physics and quantum theory. There follows an investigation of the unique phenomena that take place within photonic crystals, at defect sites, and at surfaces and interfaces. The authors offer a new treatment of the traditional multilayer film (a one-dimensional photonic crystal), which allows for the extension to higher dimensions and more complex geometries. After exploring the capabilities of photonic crystals to guide and localize light, the authors demonstrate how these notions can be put to work.
Customer Reviews:
Photonic Crystals For Beginners.......2006-05-07
Keeping in mind, I started my research in photonic crystals with my advisor referring me to this book. So, I am speaking as a first-year graduate student with basic physics background. Hopefully, you come in this category of inexperience looking for some advice on approaching a difficult subject to understand. My only suggestion is to ask around your research group for other reading materials and also get to know your library well. In any case, you can also check out my profile which has a listing of optics and photonic crystal books that can help you out as well. So, I just wanted to let you know where I am coming from since other reviewers might be educators who already have a good understanding of photonic crystals. In some ways, it pretty much assumes alot of knowledge like my advisor who assumed me to be much the same which I was not.
In this fairly thin book, Joannopoulos basically rehashes the concepts of photonic crystals from his review papers in journals. Although this book may be appropriate who have read his articles, it probably is not the best source for undergrad/grad students who want to really get the details. The book has some illustrations which may or may not get the point across to readers. For beginners, I would suggest going to "Scientific American" article which Joannopoulos writes to a general audience with little or no background in optics. This gives a wonderful explanation about total internal reflection and how it relates to fiber optics. Then, it ties into the idea of crystals trapping light. Afterwards, you can consult with an undergrad optics book (Hecht or Pedrotti) which will go into basic optics. The price of this book is also quite expensive for just a short overview. So, I would have to advise strongly against purchasing without at least borrowing/reading it ahead of time. Just ask your professor/advisor who will most likely have a copy on his bookshelf. Although this is widely used as a reference, it is decent and also the only one out there. But in my opinion, it's hard to write a book on emerging technology for budding scientists. Also, technology changes so this information will later be dated with new findings.
Excelent Introductory Book.......2006-04-13
"Photonic Crystals" is an excelent startpoint for those who want to understand how we can control and use wisely the light. The book starts with a basic introduction starting from Maxwell equations and develops the whole theory necessary to understand the propagation of light in 1D, 2D and 3D periodic structures. It is not directed for those who want to know what is being done today in the research field but rather it is an excelent introduction for beginners. Highly recommended.
An excellent text.......2002-04-12
This is a fish of a good book! The information that has come out in the last ten years about photonic band-gap materiels can be confusing and offputting. This book enables any astute reader a comprehension of the various properties that come into play when dealing with and controlling the propogation of light. I recommend it highly for use in the classroom as well as for the bedstand.
Quite an enjoyable read!.......2000-06-17
Graduate students (or advanced physics undergrads) will appreciate the beautiful analogy this book makes between solid state physics, which gave us semiconductor devices, and the newer field of photonics, which promises a revolution in optical devices. The writing is clear and consise, and the many colorful illustrations aid the reader in formulating a picture of how it all works. Just plain WELL DONE -- more physics texts should read like this one.
a brand new theory.......2000-05-14
With help of this new theory,we can turn so many things into realities which can't even be imagined several years ago. This theory urges us to look on things in a brand new way! I think miracles will come forth after our studying.
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