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Unit Of Luminous Intensity (candela)

Originally, each country had its own, and rather poorly reproducible, unit of luminous intensity; it was necessary to wait until 1909 to see a beginning of unification on the international level, when the national laboratories of the United States of America, France, and Great Britain decided to adopt the international candle represented by carbon ...

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Candela
Biology

A Sweaty Subject

When human body temperature rises, tiny muscles around the sweat glands in the skin contract, squeezing perspiration - better known as sweat - out through the pores. Sweat is about 99 percent water. ... Continue reading

Sweat
Biology

The Dogma of Life

Dogmas are authoritative tenets common in religion and philosophy. But in molecular biology? Molecular biology has a central dogma, proposed by Francis Crick in 1953, that says that genetic ... Continue reading

MolecularBiology
Biology

Coffee: Beverage Of Sedition

Coffee is the most popular drink in the world, consumed regularly by about one-third of the global population. Tea runs a close second. And then, of course, there's Coca-Cola. Why are coffee, tea, and ... Continue reading

CoffeeBeverageOfSedition
Biology

The Razor-sharp Surgeonfish

As any diver can tell you, the waters under the sea can be beautiful and dangerous. The oceans are full of venemous fish, sharks, stinging jellies, manta rays and an assortment of spiny urchins and ... Continue reading

RazorsharpSurgeonfish

Exploding Fertilizer

ExplodingFertilizerAtmospheric nitrogen is a diatomic molecule of just two nitrogen atoms bonded very strongly to each other. Nitrogen, in compound with other elements, is just a single nitrogen atom bonded very weakly, and thus nitrogen compounds can be very reactive. Reactions occur between materials all the time, but the major consideration in any reaction is the energy differences involved in the reaction process. The difference in energy contained within the reacting materials and the product materials from the reaction is a very important consideration.

For two molecules to react, they must come together and pass through a stage in which their atoms are dislocated from their most stable arrangements. This requires that they take in a certain amount of energy from their surroundings in order to achieve a new conformation from which the product materials can form. This 'activation energy' can be so high that a particular reaction may be discouraged even though the products are far more stable than the reacting materials. In the case of nitrogen, the activation energy for taking the nitrogen molecule apart is high, making the catalytic fixing process necessary.The difference in energy between a nitrogen molecule and two single nitrogen atoms is very high, so that two nitrogen atoms are far more stable as a molecule of nitrogen gas than they are as single atoms in other compounds. This means that any reactions in which single nitrogen atoms can be converted to nitrogen gas will be greatly favored.

The driving force represented by this energy difference can be earth shattering. A case in point is the use of the common fertilizer ammonium nitrate as an explosive. Each ammonium nitrate molecule contains two single nitrogen atoms. This definitely provides the possibility of a reaction in which nitrogen gas will be formed. When provided with a sufficient activation energy, such as aspark or sudden shock (bags of ammonium nitrate are clearly marked 'Do Not Drop'), solid ammonium nitrate will spontaneously rearrange into three gases: nitrogen, water vapour, and oxygen. The bulk transformation is almost instantaneous and is invariably accompanied by a very loud boom sound. Ammonium nitrate is used as the basis of several explosive materials, that are used in the mining industry. Unfortunately, the ready availability of ammonium nitrate as a fertilizer makes it a material of choice for terrorists and anarchists.