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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 energy, which makes up about 70 percent of the universe. Probing dark energy, the energy in empty space causing the expanding universe to accelerate, ...

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DarkEnergyChangestheUniverse
Physics

The Early Universe Soup

In the first few millionths of the second after the Big Bang, the universe looked very different than today. In fact the universe existed as a different form of matter altogether: the quark-gluon ... Continue reading

TheEarlyUniverseSoup
Astronomy

Big Fish

The phrase 'big fish eat little fish' may hold true when it comes to planets and stars. Perhaps as many as 100 million of the sun-like stars in our galaxy harbor close-orbiting gas giant planets like ... Continue reading

BigFish
Biology

Sweet Dolphin Dreams

Imagine if your breathing wasn't an automatic response. That might work during the day. But what about when you went to sleep? You wouldn't get a good night's sleep if you had to wake up every few ... Continue reading

DolphinDreams
Biology

The Handsome Betta Fish

The Betta fish is possibly the most handsome tropical fish out there. We say handsome because the male of the species is the bigger and more exotic one. Referred to as the jewel of the Orient, Betta ... Continue reading

BettaFish

Somewhere Over Which Rainbow?

DoubleRainbowHow many rainbows are there really when we only see one during a rainstorm? The answer isn't as simple as you might think! Rainbows are formed when light enters a water droplet, reflects once inside the droplet, and is reflected back to our eyes. Each raindrop reflects and refracts the light that enters it in all possible ways. When light first hits the drop, a fraction of that light is reflected and the rest is transmitted through until it hits the backside of the drop on the inside. Again, some of that light is refracted and some is reflected. At each encounter with the surface inside the drop, some of the light is reflected and remains inside the drop, and the rest escapes. Therefore, light rays can escape after one, two, three or more internal reflections.

When you see two rainbows, the first or primary bow at 42 degrees, is brighter with red on the outside ending with violet on the inside. The secondary bow at 51 degrees is always fainter with the colors reversed due to the second reflection; violet on the outside ending with red on the inside. Isaac Newton derived a mathematical equation for the angular size of rainbows after a number (N) of reflections inside the droplet. He never solved the problem for N=3, since he decided that in the third pass there wouldn't be enough light for a person to actually see it. Edmund Halley, after whom Halley's comet was named, carried the calculations through and discovered that the tertiary rainbow would actually appear with an arc of 40 degrees and 20 seconds, and surprise! It should appear not opposite the sun but around the sun itself! For two thousand years, men had been looking for this arc in the wrong part of the sky!