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Big Boom

They sound like thunder, but they're not. They're sonic booms, concentrated blasts of sound waves created as vehicles travel faster than the speed of sound. To understand how the booms are created, look to the ocean. ...

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BigBoom
Mathematics

Picture This

What 3 dimensional shape will pass through a rectangle, triangle and circle each time filling the whole space? The answer may surprise you in it's simplicity. Before I tell you what it is, see if you ... Continue reading

PictureThis
Astronomy

Dark Energy Changes the Universe

Dark energy has the cosmoslogists scratching their heads. Observations taken by NASA's Hubble Space Telescope and future space telescopes will be needed in order to determine the properties of dark ... Continue reading

DarkEnergyChangestheUniverse
Medicine

What is Asthma?

In many people, asthma appears to be an allergic reaction to substances commonly breathed in through the air, such as animal dander, pollen, or dust mite and cockroach waste products. The catch-all ... Continue reading

WhatisAsthma
Chemistry

Knocking the NOx Out of Coal

Nitrogen is the most common part of the air we breathe. In fact, about 80% of the air is nitrogen. Normally, nitrogen atoms float around joined to each other like chemical couples. But when air is ... Continue reading

KnockingtheNOxOutofCoal

Benjamin Franklin, Science Founding Father

BenjaminFranklinWhile popularly known for his role as one of the United States' founding fathers, Benjamin Franklin was also a renowned scientist who made a number of substantial contributions in the field of Earth science. Affectionately known as Dr. Franklin (even though he never received his Ph.D.), he published numerous scientific papers--mostly on electricity. Franklin became a scientist because he was insatiably curious about the world around him. He wanted to know how things worked and figure out ways to make them better. In 1743, Franklin compared weather observations in letters he received from friends in other colonies. He was one of the first to observe that North American storms tend to move from west to east, and predicted that a storm's course could be plotted. He even made some of the first-recorded weather forecasts in his Poor Richard's Almanac, a 25-year publication that Franklin first published in 1732 under the pseudonym of Richard Saunders.

In 1752, Franklin, along with his son William, performed his famous kite-flying experiment which proved that lightning is a naturally-occurring electrical phenomenon. The kite was constructed with a sharp metallic wire situated on top and at the end of the kite string, and a key tied to the end of the string with a silk ribbon. When Franklin saw loose threads on the kite string stand up, he grounded the makeshift insulated conductor by touching his knuckle to the metal key on the string. Consequently, he observed a passing spark between his knuckle and the key, which presented the final proof of lightning's electrical nature. Miraculously, the charge was not strong enough to be fatal to Franklin or his son. (Under normal circumstances, a lightning strike can instantly kill any individuals bold enough to fly a kite during a thunderstorm.)

In 1763, Franklin took part in discussions with colonial scholars about the effects of deforestation on local climate. As forests were cleared for farming in the early American colonies, Franklin agreed with the other colonials that 'cleared land absorbs more heat and melts snow quicker.' However, he thought that many years of observations were necessary before any conclusive evidence could be gathered on the effects of deforestation on the local climate. In addition to his meteorological prowess, Franklin also published the first scientific chart of the North Atlantic's Gulf Stream. He hypothesized that the trade winds cause the Gulf Stream by driving warm waters into the Gulf of Mexico, from where they exit by way of the Florida Strait and proceed to form the Gulf Stream. In 1775, on his way to England, Franklin lowered a thermometer into the Atlantic and found the Gulf Stream to be 6° F warmer than the surrounding sea and, subsequently, produced the first chart of the current.