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Snakebots Coming Your Way

Early robots were stiff, clumsy machines that plodded in straight lines. More modern robots can be radio controlled and move with much more grace and precision. Snakebots, though, can weave through narrow passageways, inspect hard-to-reach areas, coil around pipes, and climb from one structure to another. In rugged terrains where wheels would be ...

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Snakebots
Chemistry

What Is A Half-life?

When isotopes break down, or decay, they usually split apart into two smaller atoms. Excess neutrons and protons are often sent flying off through space, taking the excess energy of the atoms with ... Continue reading

WhatIsAHalflife
Astronomy

Look, Up in the Sky. It's A Bird. No It's A Meteorite!

Most folks probably think of swallows and the ringing of the Mission bells when the words San Juan Capistrano are heard or seen. This is a popular tradition that celebrates the return of cliff ... Continue reading

MeteoriteSky
Astronomy

Two Face? Absolutely!

During the Viking missions to Mars in the mid 1970s, the planet was imaged from orbit by the Viking 1 and 2 Orbiters. These spacecraft returned images of regions of the planet that, while similar to ... Continue reading

TwoFaceAbsolutely
Geology

What Is The Most Damaging Hazard From A Hurricane?

The greatest potential for loss of life and property related to a hurricane is from the storm surge—water pushed ashore by the force of the winds accompanying a hurricane. Although hurricanes are ... Continue reading

Hurricane

What Makes a Frisbee Fly?

FrisbeeIf you have ever been to the park or the beach, you've probably seen one of these plastic discs flying through the air. We're not talking about a UFO, we're talking about the Frisbee, more commonly known as the flying disc. What makes a Frisbee fly? Just like a bird's wing or the wing of an airplane, shape plays a large part in influencing the flying ability of the Frisbee.

If we take a look at the Frisbee from the side, we can see that the rounded edges of the Frisbee look similar to the front edge of an aircraft wing. We know that the curved upper surface of the wing is what generates (causes) lift. The same principle applies to the Frisbee. As air passes over the curved upper surface of the Frisbee it speeds up, creating a low pressure region on top of the Frisbee. Below the Frisbee, air passes more slowly, creating a high pressure region. The difference in pressure gives the Frisbee lift. The shape of the Frisbee generates lift, but it needs more than that for flight.

Try throwing a Frisbee without spinning it. Notice how it wobbles and tumbles. The shape of the Frisbee may be generating lift, but the Frisbee is unstable. It cannot stay upright and eventually stalls (falls). All flying things must have something that makes them stable during flight; airplanes and birds have tails, rockets have fins. For a Frisbee, it is the spinning motion generated from the Frisbee throw that stabilizes the Frisbee as it flies.