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Radon, A Rare Element

To the best of our knowledge, the entire universe is constructed from just over a hundred different types of building blocks called atoms. Each has its own characteristic properties, and while there are dangers associated with each and every one of them, it seems that the rarer the element, the more serious are its effects. Such is the case with ...

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RadonARareElement
Engineering

Non-Flammable Fuel?

When we're flying high above the Earth, few of us give much thought to aircraft safety. We're usually too busy wondering when lunch is going to be served. But flying safely is a goal of NASA's Glenn ... Continue reading

NonFlammableFuel
Chemistry

The Melting Point

Physical properties of a material fall into two categories: intrinsic properties determined by the structure of the particular molecule, and bulk properties characteristic of quantities of molecules ... Continue reading

TheMeltingPoint
Astronomy

The Constellations

The random arrangement of the stars visible to the naked eye has remained essentially unchanged since the time of the first written records. One of the earliest complete lists we have was compiled in ... Continue reading

TheConstellations
Biology

Obesity: How much fat can your genes handle?

According to some experts, the popular formula for weight loss, 'eat less, and exercise more,' is not working for many Americans. Recent estimates say that about 34% of adults and 22% of preschool ... Continue reading

Obesity

Lightning Striking Again

LightningStrikeWhat's hotter than the surface of the sun, moves with incredible speed, lasts a few seconds and goes out with a bang? If you said lightning, you're right. Lightning strikes cause thousands of forest fires every year and occasionally cause the death of people. Few who have been hit by lightning live to tell the tale. Yet the process that causes lightning is not really any different than what makes static electricity jump when we walk on a carpet and touch a metal doorknob.

Within thunder clouds, air and water vapor, snow and ice crystals are in constant motion. This motion causes the accumulation of positive and negative charges within the particles of snow and ice. As the cloud continues to churn, the areas of charged particles become larger and separate, with the positively-charged particles moving upward, and heavier negatively-charged particles falling downward. This imbalance, in turn, causes the ground below the thunderstorm to become positively charged. Once this process is set in motion, it isn't long before the areas of positive and negative particles attempt to balance each other out. What we call lightning is nothing more than the process of reconciling the positive and negative charges back to a neutral state.

A common misconception is that lightning moves from the sky to the ground. Actually, the process is much more interesting. In the seconds before a lightning strike, negatively-charged air rapidly moves towards the ground. In reaction, positively-charged particles in tall objects on the ground (church steeples, trees, electrical towers) begin to flow upward toward the descending air. When the two connect, a giant rush of visible electrical energy leaps from the ground. This is what we see as lightning. And the thunderclap we hear soon after is the shockwave caused by the sudden heating of the air near the lightning bolt.