Atkins' Molecules
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Average customer review:Product Description
This is a brand new edition of the book that was called ‘the most beautiful chemistry book ever written’. In it, we see the molecules responsible for the experiences of our everyday life - including fabrics, drugs, plastics, explosives, detergents, fragrances, tastes, and sex. With engaging prose Peter Atkins gives a non-technical account of an incredible range of aspects of the world around us, showing unexpected connections, and giving an insight into how this amazing world can be understood in terms of the atoms and molecules from which it is built. The new edition has dozens of new molecules, a completely new graphical presentation, and an even more accessible and enthralling account of the molecules themselves.
Product Details
- Amazon Sales Rank: #350198 in Books
- Published on: 2003-09-25
- Original language: English
- Number of items: 1
- Binding: Paperback
- 244 pages
Editorial Reviews
Review
‘… the book is a treasure trove, and I defy anyone not to find some new and surprising fact about a subject thought familiar.’ Chemistry & Industry
‘We need to be reminded that matter, ordinary matter, is mysterious and magical … In Atkins’ delightful book, the Cinderella of chemistry begins to look a lot like a beautiful princess.’ The Boston Globe
From reviews of the first edition: ‘This is undoubtedly the most beautiful chemistry book ever written …’ New Scientist
‘The cast list is sublimely eclectic: from corn to cannabis and from silk to civet cats; from vanilla to Viagra, and from the smell of death to the start of life … this thoroughly readable, handsomely illustrated work - less a formal textbook, more a vade-mecum of chemical diversity - should encourage many more people to fiddle with compounds. Chemists’ shelves should stock it. Chemistry World
'The author's deep enthusiasm for his discipline … is unmistakably felt throughout this beautifully produced volume.' The Chemical Educator
About the Author
P. W. Atkins is a fellow of Lincoln College, Oxford, and Professor of Physical Chemistry. His works include The Periodic Kingdom, Atoms, Electrons, and Change as well as the best-selling textbook Physical Chemistry.
Customer Reviews
Explores the molecule nature of life
This is a popular book on organic chemistry, a celebrated one at that, this being the second edition, substantially revised. The first was published in 1987. It is one of those almost legendary books of the publishing history, a technical book on a highly technical subject that somehow managed to reach something close to a large readership.
Ironically, the reason is not so much in the drawings of the molecules, but in the text. Peter Atkins covers a wide range of interesting molecules and shows how they are related, and he makes their properties semi-accessible to the general reader. I say, "semi" because, frankly for this chemistry-challenged person, seeing two-dimensional shapes of the molecules helps me to understand them only slightly. I suspect for those more conversant with chemistry, the drawings (new for this edition) will be valuable. To me, the mystery of why a certain shape and elemental composition should result in a nutritious substance whereas something else with only the slightest change should be poisonous is not dispelled.
He begins with "Simple substances," oxygen molecules, nitrogen, our air and its pollutants. He ends with the very complex DNA and RNA. Along the way he enlightens us about so many of the chemicals and foods and consumer products we use in our daily lives from soaps and gasoline to fats and oils, to painkillers and street drugs. His style is very readable and he has the welcome knack of being informative about interesting things. Here are some examples:
Baking power releases carbon dioxide to leaven baked goods in two separate bursts. "The first burst occurs at room temperature as a result of the action of the moistened tartaric acid...The second...is due to the action of the aluminum salt, and it occurs at high temperature." (p. 24)
One of the differences between synthetic and natural vanilla (vanillin) is that the natural is "weakly radioactive," the former having been made from coal tar, "from which the radioactivity has long decayed," while the latter picks up some radioactive carbon-14 atoms captured from the atmosphere during photosynthesis. (p. 154) (Of course natural vanilla is also more expensive.)
Lemons originally came from northern India and were introduced into the Mediterranean region about a thousand years ago. (p. 155)
"Initially, a young white wine may have a greenish hue from the chlorophyll...molecules that survive fermentation." (p. 176)
Window glass allows UV-A rays to pass through but blocks UV-B rays. (p. 180) I had always wondered about this because I had gotten conflicting information from different sources.
There's a Glossary and many full color illustrations and photos on glossy paper in addition to the color-coded drawings of the molecules, some of which are very beautiful. There's an Introduction in which Atkins explains the difference between elements and molecules, between atoms and compounds, and differentiates between the bonds between atoms and the forces that hold molecules together.
2nd edition better - but the molecule illustrations?
The scope of the first edition of this "classic" has been increased by including more chemicals (including new ones such as "viagra" and "prozac"!); to this extent the second edition is to be commended.
But I question the improvement of the molecule illustrations themselves. Although now produced by computer and including also stick models, the scale is smaller and the colours often hard to distinguish. For example it is often difficult to differentiate between the black of carbon atoms and the blue of nitrogen atoms.
New wine in a new bottle
Some new editions of old favourites turn out to be nothing much more than the old book in a new cover. This is different. Peter Atkins has really gone to town revising and updating this one to make it better than ever before. If you want to know what the world is made of, this is hte place to look.



