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Table Salt - It's All In The Ions

All elements are defined by their individual atoms, which are in turn identified by the number of protons in the nucleus of each atom. Since protons are carriers of positive electrical charge, there must then also be an equal number of negative electrical charge carriers in an electrically neutral atom. Sodium atoms in sodium metal and chlorine ...

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TableSaltItsAllInTheIons
Biology

Giant Cloned Monster Loose In Mediterranean Sea

Native Caulerpa taxifolia is found in and around the waters of Florida and the Caribbean. It is a smallish, yet hardy saltwater plant that grows rapidly and is ideal for use in aquariums with diverse ... Continue reading

Caulerpa
Engineering

Moore's Law

Intel is the corporate giant known for manufacturing semiconductors, also called computer chips or integrated circuits (ICs), and its Pentium Processor. But Intel is also known for laying down the ... Continue reading

MooresLaw
Biology

Pass the Iodized Salt Please

Have you ever wondered why common table salt contains iodine? It's because iodine is essential to your health. A diet lacking in sufficient quantities of iodine will lead to the production of a goiter ... Continue reading

IodizedSalt
Physics

The Fourth State of Matter

There are three classic states of matter: solid, liquid, and gas; however, plasma is considered by some scientists to be the fourth state of matter. The plasma state is not related to blood plasma, ... Continue reading

ForthState

There's No Such Thing as a Safe Suntan

SafeSuntanEvery time you step outdoors, you are bombarded by ultraviolet (UV) radiation from the sun. UV rays cause the number of free radicals in cells to increase. Free radicals are atoms or molecules that contain oxygen in a highly reactive form. They are the same kinds of compounds that cause iron to rust, stone to crumble, and paint to peel. In living cells, they damage membranes, alter DNA, and interfere with life-sustaining chemical reactions. The visible result is a suntan, which is simply the skin's less-than-adequate way of trying to protect itself from further damage. Over time, the damage adds up, and skin cancer is too often the result.

Two (and possibly three) types of UV radiation damage human skin. UVA (wavelength 320 to 400 nanometers) causes oxygen to combine with the brown pigment melanin in the skin. Melanin is the cause of the tanning response. The rays penetrate deep into the support layers under the skin's surface, causing wrinkles and skin cancers. UVA rays are strongest in summer around midday. UVB rays (280 to 320 nanometers) are strong all day long and all year round. They penetrate less deeply into the skin than UVA, but they are a thousand times more powerful. They cause skin cells to make enzymes that destroy collagen and elastin, the proteins that make skin elastic and supple. UVC rays (200 to 280 nanometers) may be the most dangerous of all. That's because the shorter the wavelength, the more energy the radiation possesses. Experts disagree about whether any UVC radiation filters through the atmosphere to the Earth's surface.

Between 1979 and 1995, deaths from malignant melanoma (the most deadly form of skin cancer) rose in the U.S. At the same time, the death rate from most other forms of cancer was declining. Experts say the best treatment for skin cancer is prevention. That means staying out of the sun whenever possible, applying sunscreens with a SPF (Sun Protection Factor) number greater than 30, and wearing protective clothing. Not just any clothing will do. If light passes through the fabric when it's held up to the sun, the clothing will let UV rays through to the skin. It's important to protect the eyes, too, with sunglasses that block all UV rays.