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Leaps and Bounds

Leap years are years with 366 days, instead of the usual 365. Leap years are necessary because the actual length of a year is 365.242 days, not 365 days, as commonly stated. Basically, leap years occur every 4 years, and years that are evenly divisible by 4 (2004, for example) have 366 days. This extra day is added to the calendar on February 29th. ...

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LeapsandBounds
Mathematics

Kepler's Conjecture

Take a bunch of oranges that are similar in size and try to pack them into a cardboard box. What is the most efficient orange arrangement so that you fit the most oranges into the box? Should you ... Continue reading

KeplersConjecture
Engineering

High Altitude

Have you ever read the directions on a box of cake mix? There are special instructions for high-altitude baking. Has anyone who visited the Rocky Mountains told you how hard it was to breathe there? ... Continue reading

HighAltitude
Chemistry

Take Two And Call Me In The Morning

Aspirin has been used for hundreds of years to relieve pain and reduce inflammation. It belongs to a group of chemicals called salicylates and was originally derived from the bark of the willow tree. ... Continue reading

Aspirin
Engineering

Cool Fuel Cells

Astronauts have been using them for power aboard spacecraft since the 1960s. Soon, perhaps, they'll be just as common on Earth--powering cars, trucks, laptop computers and cell phones. They're called ... Continue reading

CoolFuelCells

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.