Customer Reviews:
Very clear about concepts.......2007-08-17
The book was very clear in the concepts it introduced. Laid out clearly the derivations and especially appreciated the topic sentence on the side of each paragraph. Although the book is clear in the text, I wish the summaries at the end of each chapter would list the assumptions that it makes for each equation so you don't have to look back to the rest of the chapter.
Absolutely worth buying.......2004-11-26
This book is good not only as a text book because of the simple way it presents the subject, the problems, and the complementary examples on the CD. It is also a great reference, because it has every chapter sumarized by the end, with the formulas. It includes multiple examples both on the book and the Cd, and allows full use of computational tools applied on the problem solving.
Excellent Book.......2004-05-10
Best book by far that I have had as undergrad. Highly recommended. We all love it at the University of Utah.
Great Book.......2004-03-01
This has been the best chemical engineering book in my undergraduate education, BY FAR. Not only does the book rpesent concepts that are easy to understand, but they are also reinforced continually with plenty of example problems from the accompanying CD. The CD also has a few modules and "games" to help out. All in all, from the standpoint of an undergraduate dealing with this course material, the book is excellent in helping students with different learning styles learn the material. I have no knowledge whether the depth of the subject is thorough enough for real world applications, but I suspect it is.
Excellent Book.......2003-05-15
In contrast with what my fellow Ann Arbor reviewer (and most likely UM ChE student), I tended to think that Fogler's book was an excellent way by which to learn the principles of Chemical Reaction Engineering. The book is well organized and while the chapters may skip some, the principle chapters (1-6 in the sixth printing) are the recommended starting chapters. Once passing through chapters 1 - 6, the topics do deviate some, but the fundamental principles necessary to understand any of the topics in chapters 7 and beyond are well established prior to engaging the later material. While my colleague from Ann Arbor may be correct in noting that there are several different printings of the third edition text, Fogler provides adequate typo errors on the text website. In terms of POLYMATH, Fogler does rely on this computer software to show many of the examples in his book. For a good bulk of the examples and homework problems, however, the operation of POLYMATH is extremely easy. If one knows how to type equations into a table and press a 'calculate' button, one can easily run POLYMATH. Fogler provides the program on the CD that accompanies the text. It makes solving differential equations (and their solution curves) much easier than doing so by hand.
I must say that this is the best Chemical Engineering textbook I've had as a student (Geankopolis was a close second). Fogler establishes the principles of CRE well, and the language of the text is not above and beyond reading comprehension. The style Fogler uses is very algorithmic, which, after utilizing the algorithm over and over again, makes reactor design problems much easier to deal with.
Having been one of Fogler's students, I will agree that he tries very hard to relate to students. He is the only professor I've had that tries to learn each student's name. While there might be a few interesting (cheesy) examples and illustrations in the book, they do at times provide some comical relief from the rigors of Chemical Reaction Engineering. Not to mention, the additional material (Interactive Computer Modules, Real World Examples, Chaper Notes, Self Tests) that Fogler provides on the text CD an website are available to further enrich the mind of a struggling learner.
This book, at least from a student's perspective, is wonderful!
Book Description
Chemical reaction engineering is concerned with the exploitation of chemical reactions on a commercial scale. It's goal is the successful design and operation of chemical reactors. This text emphasizes qualitative arguments, simple design methods, graphical procedures, and frequent comparison of capabilities of the major reactor types. Simple ideas are treated first, and are then extended to the more complex.
Customer Reviews:
PRETTY GOOD.......2007-07-23
This book is gokay for introduction of Chemical Reactors and all that. However, I would highly recommend that you purchase a used one. It just not worth buying a new copy.
Worst Chem E book ever.......2003-11-15
I think this is the worest Chem E book ever. too bad its one of the only aviablable books for reaction engineering since levenspeil was the first to do alot of these things back in the 50s and 60s. there are numerous mistakes in every chapter. Be weary when using this book to study from.
A decent undergraduate book.......2001-06-26
CRE is not a bad book. The author does a good job of explaining reactor design fundamentals, from simple kinetic models to complex reactor systems involving heat/material transfer or multiple reaction contents. He lays the groundwork well early on be using simple, clear examples. There are numerous typos (mostly in the text, though, not the problems. The text itself is in large and legible type. In addition, the book is not overcrowded-like a lot of life science books-with meaningless pictures, text, history, etc (but it might take the boredom meter to a new level for some readers). Although not a big deal, Levenspiel uses some language that makes you kinda wonder what planet he came from. Also, the author puts all the variable nomenclature at the beginning of the book, which is really annoying because you have to flip back and forth until you memorize each character variable. Other than that, it should be adequate to get you through the course w/o a great deal of trouble.
Too detailed.......2001-01-18
As a final year undergraduate, I find that this book is fairly useless. Although the information is in there, it is nigh on impossible to find. It would probably be of use to someone who is working on research in that field, but to a student who has not yet done such detailed work, don't bother. Save your money and spend it on beer.
A good book at higher level.......2000-06-28
I used this book as a textbook in my undergraduate. In an undergraduate study, it is necessary to have new concepts explained to you in a unified manner so that ones sees where all the chemical engineering subjects are heading to. Chemical reaction engineering (CRE) basically deals with energy and material balance applied to chemical reactors to achieve a given purpose. The book tells you all the fundamentals about the chemical reaction engineering, the underlying principles but fails to draw this message straight that CRE is nothing but application of energy and material balance. And at undergraduate level, I could not draw this inference on my own and learned it in the graduate class when I took the advanced level course. The book also does not deal with the modern tools of solving reactor design problems with computers. We used Fogler's text book for first few classes in Graduate school. I would recommend this book which could be used as an undergraduate as well as graduate text/reference book. If you need to go to the earlier work and want to pursue research in this field, then Levenspiel is good as it has some original work references ( I believe this is an old book on CRE). Once you have the feel for the subject than the use of this book is undisputed. But if you are using this book to study CRE first time then I would recommend you use some good text book.
Additional comments 6 years later: I am currently using this books to solve some real industry problems and it has become clear to me how good this book is. Though I stick to my earlier comments which were written when I was fresh in to my graduate school for two reasons: how I felt about this book in my undergrad class and how much I learned from Fogler in Graduate level class. But Levenspiel does good justice to all the concepts in chemical reaction engineering and would definitely recommend it as a reference book. It provides many ways to analyze a chemical data and interpret it to determine the kinetics.
Book Description
All food is, of course, made of chemicals, and cooking can be thought of as a series of chemical reactions in which changes occur to some of these chemicals. The aims of cooking are several:
⢠to kill microorganisms and denature enzymes that might bring about undesirable changes in food
⢠to maintain or enhance the nutritional value of the food
⢠to improve the texture of the food
⢠to improve the appearance of the food
⢠to improve the flavour of the food
⢠to improve the aroma of the food.
The material presented here looks at various aspects of the chemistry of food and the cooking process. It consists of activities of a variety of types â class practical, demonstration experiments, reading comprehension and paper-based activities â at a variety of levels. The index table will allow users to select an activity of an appropriate topic, type and level. Each activity deals with an aspect of the chemistry of food and/or cooking. Although the chemistry of food and cooking is not directly part of most curricula, it can often be used to show familiar chemistry in a context that may be stimulating for many students. The material also allows teachers to reinforce the idea that everything is made of chemicals and that there is no difference between â~man-madeâ and â~naturalâ chemicals. In particular there are a number of activities on which experimental investigations can be based. Some of the paper-based or comprehension activities could be used as revision lessons or in the case of teacher absence.
The material is presented as teacherâs notes and student worksheets. The worksheets are available on the CDROM accompanying this book or may be downloaded free from the website for this book as colour or black and white pdf files, or as Microsoft® Office Word documents (which can be edited by the teacher if required). Also included on the CDROM and website are video clips related to some of the material. These may be played to start off a lesson or stimulate discussion. However, all the lessons can be tackled without the use of the video clips for those who prefer not to use them. In every case, material is given that the teacher can use to start the lesson by discussion.
The video clips are taken from the Discovery Channel TV series, Kitchen Chemistry, featuring Heston Blumenthal. Heston is a chef and proprietor of The Fat Duck, a Michelin three-star restaurant in Bray, Berkshire, UK. He is noted for his scientific approach to food and cooking and for the fact that he will not take for granted the accepted wisdom without scientifically investigating it for himself. He also makes use of scientific equipment in the kitchens of the Fat Duck â temperature probes, desiccators and reflux apparatus, for example.
Average customer rating:
- Excellent undergraduate introduction!
|
Chemical Kinetics (3rd Edition)
Keith J. Laidler
Manufacturer: Prentice Hall
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Physical and Chemical Kinetics (TOPICS IN PHYSICAL CHEMISTRY)
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ASIN: 0060438622 |
Customer Reviews:
Excellent undergraduate introduction!.......1999-02-23
Laidler's is a superb introduction to the general field of chemical kinetics. The subject is well presented and clearly explained - the best text on the subject that I've found.
Average customer rating:
- Heterogeneous Hydrogenation Made Accesible
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Heterogeneous Catalysis In Organic Chemistry
Gerard V. Smith
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ASIN: 0126516456 |
Book Description
The features of this book which will be of special interest to academic organic chemists are the introduction (Chapter 1), which presents a short course on the concepts and language of heterogeneous catalysis, covers organic reaction mechanisms of hydrogenation (Chapter 2), hydrogenolysis (Chapter 4), and oxidation (Chapter 6), a presents problems and solutions specific for running heterogeneous catalytic organic reactions in solution. These materials can supplement advanced chemistry courses.
Most synthetic organic chemists use a variety of "protecting groups" which they attach to functional groups (reactive groups of atoms) while some reaction is being conducted on another part of the molecule. These protecting groups prevent reactions of the functional groups during other reactions and are removed later by a heterogeneous catalytic method called hydrogenolysis. One unique feature of this book, not found in other books on catalysis, is an exhaustive chapter (Chapter 4) on hydrogenolysis, which is dredged from the recent synthetic literature published by modern organic chemists. Academic organic chemists should find this chapter extremely useful and may wish to adopt the book as a supplement for advanced organic chemistry courses designed for seniors and for graduate students. It will also be useful for professors and their research groups engaged in synthetic organic chemistry.
Many academic organic chemists are not aware of recent advances in heterogeneous enantioselective catalysis (Chapter 3) or in selective low temperature, liquid phase heterogeneous catalytic oxidations by hydrogen peroxide (Chapter 6). These specialty topics are timely and may be new to academic organic chemists and can be used to supplement their advanced courses.
Several features of this book will also be of special interest to industrial chemists who are unfamiliar with heterogeneous catalysis. Many good organic chemists are hire by industry. They synthesize a new compound using standard organic synthetic techniques but are informed by their supervisor that they must convert some of their synthetic steps into heterogeneous catalytic steps. They may not have been exposed to heterogeneous catalysis and have few places to turn. This book offers them a crash course in heterogeneous catalysis as well as many examples of reactions and conditions with which they can start their search.
Those industrial organic chemists already familiar with heterogeneous catalysis will find this book useful as a reference to many examples in the recent literature. They will find recent surface science discoveries correlated with heterogeneous catalysis or organic reactions and mechanistic suggestions designed to stimulate innovative nontraditional thinking about organic reactions on surfaces.
Key Features
* Written by organic chemists for organic chemists
* Introduces heterogeneous catalysis concepts and language
* Presents a comprehensive compilation of protecting group removal procedures
* Covers liquid-phase hydrogenations, hydrogenolysis, and oxidations
* Addresses heterogeneous methods for producing pure enantiomers of chiral products
* Examines the emerging field of heterogenized homogeneous catalysts
* Mixes practical applications with mechanistic interpretations
Customer Reviews:
Heterogeneous Hydrogenation Made Accesible.......2000-04-08
For the advanced organic chemistry researcher who is entering the wonderful world of heterogeneous catalysis in general - and heterogeneous hydrogenation in particular - there is no single resource such as this to guide him. Working in the field of heterogeneous hydrogenation myself, I had felt that a modern, up-to-date, readable text was long overdue. Heterogeneous Catalysis in Organic Chemistry has all of these attributes and much much more. It will help you o brave chemist to safely navigate the enormous and often useless primary literature and reach what you were looking for. Be that experimental details for a particular transformation, current developments in the scope of the field, understanding of the underlying theory. I strongly reccomend all organic synthesis research departments obtain a copy. It will be invaluable for the whole range of staff, from the first year inexperienced graduate student nervously exploring the field, to the research group leader who wants to update his knowledge and understanding, painlesly, accurately and quickly.
Average customer rating:
- A lot of problems will be solved in later revisions
- Professor Silverman does it again!
|
The Organic Chemistry Of Enzyme-catalyzed Reactions
Richard B. Silverman
Manufacturer: Academic Press
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ASIN: 0126437319 |
Book Description
The Organic Chemistry of Enzyme-Catalyzed Reactions is not a book on enzymes, but rather a book on the general mechanisms involved in chemical reactions involving enzymes. An enzyme is a protein molecule in a plant or animal that causes specific reactions without itself being permanently altered or destroyed.
This is a revised edition of a very successful book, which appeals to both academic and industrial markets.
Illustrates the organic mechanism associated with each enzyme-catalyzed reaction
Makes the connection between organic reaction mechanisms and enzyme mechanisms
Compiles the latest information about molecular mechanisms of enzyme reactions
Accompanied by clearly drawn structures, schemes, and figures
Includes an extensive bibliography on enzyme mechanisms covering the last 30 years
Explains how enzymes can accelerate the rates of chemical reactions with high specificity
Provides approaches to the design of inhibitors of enzyme-catalyzed reactions
Categorizes the cofactors that are appropriate for catalyzing different classes of reactions
Shows how chemical enzyme models are used for mechanistic studies
Describes catalytic antibody design and mechanism
Includes problem sets and solutions for each chapter
Written in an informal and didactic style
Customer Reviews:
A lot of problems will be solved in later revisions.......2003-05-05
The index for this book .... For example, there are a fair number of examples of the epoxidation reaction, but not a single pointer toward that in the index of the book. And much the same thing for other types of reactions.
It would also be nice if there was a more clear transfer between basic organic principles and then biological applications.
He does do a good job showing this is some cases (i.e., the benzoin condensation), but a few more parallel examples would have been very useful.
Professor Silverman does it again!.......2000-06-17
This book is an excellent resource for undergraduate and graduate students studying enzyme chemistry and organic mechanisms. Prof. Silverman does a fine job of giving many different examples of enzyme mechanisms. By not focusing totally on one kind of enzyme or catalysis, he succeeds in painting a broad picture for the reader, while not sacrificing content. The only drawback to this edition is the large amount of typographical errors that appear throughout. Perhaps better editing is in order for future editions.
Book Description
A classic textbook on mechanistic organic chemistry which is characterised particularly by its clarity, careful choice of examples and its general approach that is designed to lead to a ready understanding of the subject matter. This guidebook is aimed clearly at the needs of the student, with a thorough understanding of, and provision for, the potential conceptual difficulties he or she is likely to encounter.
Customer Reviews:
This book has good sides and bad sides.......2005-08-26
The book is a condensed source of information of various different subjects relating to organic chemistry. In saying so it is a general overview of practical organic chemistry. Sykes is clear in his explanation and elucidation on various reaction mechanisms and as he states early on, he does promote a mechanistic perspective of organic chemistry.
Sykes is particularly useful for individuals who have done introductory organic chemistry and are venturing into deeper topics of the subject, i.e. stereochemistry and synthesis as examples (a lot of universities offer courses which purely concentrate on these regions of study).
Now the greatest downfall I see about the text is the price. March's advanced organic chemistry is much more extensive, newer and my personal opinion is that the authorship is better in March's
Another downfall is the age, although a lot of the topics that have been introduced in this book have not changed significantly and therefore dont seriously affect the text's validity; I still feel it should have had an update. This book was published in the 1980's (the late era of the decade).
All I am saying is that Syke's book is a classic, one can learn a lot from it and it is a fairly good reference book, however to my understanding there are better texts of the same genre covering practically the same themes as in this book.
I would strongly recommend any individual interested in this book to have a look at March's Advanced Organic Chemistry.
Waste of Money.......2001-07-06
I have read this book. Nothing genuine about this book! The content has no difference than that of any textbooks. I threw this book in the trash can. I don't want to resell it because I don't want to waste other people's money and time.
Valuable Reference for Organic Chemistry.......2000-08-27
Peter Sykes' guidebook formats more as a reference to organic reactions such as nucleophilic substitution, electrophilic substitution, nucleophilic addition to carbonyl, elimination reactions, radical reactions and symmetry-controlled reactions such as pericyclic reactions. It is well written, clear, and succinct that undergraduate and graduate students will welcome it as a companion to an organic course. Sykes also discusses topics that are often omitted in an introductory text such as carbocations, electron-deficient species, carbanions, and linear free energy relationships. It can be thought of a compact version of Jerry March's Advanced Organic Chemistry, which is widely used as a graduate text. As a purchase guideline, I also purchased Hoffman's "Organic Chemistry: An Intermediate Text", and Bernard Miller's "Advanced Organic Chemistry", which treat the subject of electrocyclic reactions and cycloaddition more thoroughly. The portable size of Sykes makes it an excellent source of reference.
Modern classic.......1998-04-11
This book was recommended to me by a senior lecturer in Organic Chemistry at a Scottish university: A very fine example of a British gentleman - and a very good recommendation he made.
I have always prized this book and return to it again and again, although my current scientific work involves little organic chemistry. The presentation is very considerate to beginners and sympathetic of their problems. Even advanced chemists will appreciate its clear and insightful presentation of the logic behind organic reaction mechanisms.
Peter Sykes' book is certainly a model of clarity and to my mind perhaps the best book ever written on this vast subject. It is certainly my favorite organic chemistry book: All the explanations are clear and helpful; one is never (or very rarely) left dangling at the end of a presentation wondering just what in the world is going on, as seems to happen too often in other texts.
Sykes starts at the basic level of structure and reactivity, proceeds to acid/base equilibria, and addresses subsequent chapters to electrophilic, nucleophilic, radical, carbanion/carbocation reactions, Hammett plots, etc.
Really a wonderful read and an outstanding short reference. Certainly an excellent investment for anyone interested in organic chemistry. How odd most Americans are unfamiliar with it.
(If you value Sykes' presentation, the Royal Society of Chemistry used to have several audio cassettes of his presentations on organic chemistry.)
Book Description
A range of alternative mechanisms can usually be postulated for most organic chemical reactions, and identification of the most likely requires detailed investigation. Investigation of Organic Reactions and their Mechanisms will serve as a guide for the trained chemist who needs to characterise an organic chemical reaction and investigate its mechanism, but who is not an expert in physical organic chemistry.Such an investigation will lead to an understanding of which bonds are broken, which are made, and the order in which these processes happen. This information and knowledge of the associated kinetic and thermodynamic parameters are central to the development of safe, efficient, and profitable industrial chemical processes, and to extending the synthetic utility of new chemical reactions in chemical and pharmaceutical manufacturing, and academic environments.Written as a coherent account of the principal methods currently used in mechanistic investigations, at a level accessible to academic researchers and graduate chemists in industry, the book is highly practical in approach. The contributing authors, an international group of expert practitioners of the techniques covered, illustrate their contributions by examples from their own research and from the relevant wider chemical literature. The book covers basic aspects such as product analysis, kinetics, catalysis, and investigation of reactive intermediates. It also includes material on significant recent developments, e.g. computational chemistry, calorimetry, and electrochemistry, in addition to topics of high current industrial relevance, e.g. reactions in multiphase systems, and synthetically useful reactions involving free radicals and catalysis by organometallic compounds.
Book Description
Provides a basic introduction to frontier orbital theory with a review of its applications in organic chemistry. Assuming the reader is familiar with the concept of molecular orbital as a linear combination of atomic orbitals the book is presented in a simple style, without mathematics making it accessible to readers of all levels.
Customer Reviews:
Great!.......2005-04-28
Excellent book - I used this with Carey and Sunberg's book Part A and it correlated well.
The FMO Bible.......2001-12-12
Provides an outstanding introduction to the concepts of molecular orbital interaction in organic chemistry. Presents the topic such that an organic chemist without a strong background in group theory or math can still follow the discussion.
A classic!!!!.......1998-03-09
This is a classic book about frontier orbitals. This book should be required reading for any serious chemistry student.
Book Description
This text provides a uniform and consistent approach to diversified problems encountered in the study of dynamical processes in condensed phase molecular systems. Given the broad interdisciplinary aspect of this subject, the book focuses on three themes: coverage of needed background material, in-depth introduction of methodologies, and analysis of several key applications. The uniform approach and common language used in all discussions help to develop general understanding and insight on condensed phases chemical dynamics. The applications discussed are among the most fundamental processes that underlie physical, chemical and biological phenomena in complex systems. The first part of the book starts with a general review of basic mathematical and physical methods (Chapter 1) and a few introductory chapters on quantum dynamics (Chapter 2), interaction of radiation and matter (Chapter 3) and basic properties of solids (chapter 4) and liquids (Chapter 5). In the second part the text embarks on a broad coverage of the main methodological approaches. The central role of classical and quantum time correlation functions is emphasized in Chapter 6. The presentation of dynamical phenomena in complex systems as stochastic processes is discussed in Chapters 7 and 8. The basic theory of quantum relaxation phenomena is developed in Chapter 9, and carried on in Chapter 10 which introduces the density operator, its quantum evolution in Liouville space, and the concept of reduced equation of motions. The methodological part concludes with a discussion of linear response theory in Chapter 11, and of the spin-boson model in chapter 12. The third part of the book applies the methodologies introduced earlier to several fundamental processes that underlie much of the dynamical behaviour of condensed phase molecular systems. Vibrational relaxation and vibrational energy transfer (Chapter 13), Barrier crossing and diffusion controlled reactions (Chapter 14), solvation dynamics (Chapter 15), electron transfer in bulk solvents (Chapter 16) and at electrodes/electrolyte and metal/molecule/metal junctions (Chapter 17), and several processes pertaining to molecular spectroscopy in condensed phases (Chapter 18) are the main subjects discussed in this part.
Customer Reviews:
Excellent for beginners.......2006-10-07
I am a Grad starting some reaserch in ET field. This book saved me a lot from struggling to understanding basic conceptions, assumptions, models, and theories. It is written so decently and much easier to be understood compared with those original papers.
A tour de force!.......2006-08-30
When I was asked by JACS to write a review of this book, I expected a good concise overview of Prof. Nitzan's many contributions to the field of quantum chemical dynamics. When I received a >700 page text I knew I had my work as a reviewer cut out for me. This book is a milestone in the field. It lays out the foundations of quantum condensed phase dynamics: quantum mechanics, statistical mechanics, liquid theory, condensed matter theory, stochastic processes, and spectroscopy, and then builds upon these to present a clear and precise picture of how chemical physicists
and physical chemists view chemical reactions. Most of the results and ideas are from the recent literature--many from Prof. Nitzan's own work over the past 30 odd years. What I really like is the crystal clear pedagogy and development of the topics presented. I am sure that this will be one of the first books I'll turn in doing my own research.
This is really a very specialized book aimed at researchers and graduate students in physical chemistry and chemical physics. However, I think that the presentation is general enough that it will have broader appeal to other areas of physics.
While aimed a a theoretical audience, this will have appeal for experimental researchers. I highly recommend this as a text for an advanced graduate course or as a convenient reference text for researchers in all areas of chemical dynamics.
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