ScienceIQ.com

The Equivalence Principle

Four hundred years ago--or so the story goes--Galileo Galilei started dropping things off the Leaning Tower of Pisa: Cannon balls, musket balls, gold, silver and wood. He might have expected the heavier objects to fall faster. Not so. They all hit the ground at the same time, and so he made a big discovery: gravity accelerates all objects at the ...

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TheEquivalencePrinciple
Astronomy

Neptune: The Basics

The eighth planet from the Sun, Neptune was the first planet located through mathematical predictions rather than through regular observations of the sky. When Uranus didn't travel exactly as ... Continue reading

NeptuneTheBasics
Geology

Was That The Big One? Depends On How You Measured It.

The severity of an earthquake can be expressed in terms of both intensity and magnitude. However, the two terms are quite different, and they are often confused. Intensity is based on the observed ... Continue reading

TheBigOne
Biology

The Red-Cockaded Woodpecker

In the mid-l800s, naturalist John Audubon reported that the red-cockaded woodpecker was found abundantly in the pine forests of the southeastern United States. Historically, this woodpecker's range ... Continue reading

TheRedCockadedWoodpecker
Biology

What Are Blood Types, and Why Are They Important?

If your medical report reads A, Rh+, M, s, P1, Lua, K+, Kp(a-b+), Le(a-b+). Fy(a+), Jk(a+b+), don't run for a foreign language dictionary. The letters aren't Greek. They are simply the names given to ... Continue reading

BloodTypes

Jumping Starlight

JumpingStarlight'Twinkle, twinkle, little star, how I wonder what you are,' says the song by Jane Taylor. But stars don’t really twinkle; their light reaches the earth in a steady way. Why then do we see them flickering around in the sky? The answer is in the atmosphere.

The air in the atmosphere is turbulent. That means there are different layers of air with different temperatures; some hot, some cooler. Hot air is less dense than cooler air. The light of the stars bends when it goes from a less dense part of the atmosphere to a denser one. Think about a straw in a glass of water. The straw seems to bend when it enters the water, but actually light is bending as it goes from one medium (air) to another (water). This behavior of light is called refraction.

Little packets of air, called cells, move around in the atmosphere. Starlight bends a little each time it goes through one of these cells. When you see a star from the ground, its light has crossed hundreds of cells in the sky, refracting in random directions - so the image of the star appears to jump!