ScienceIQ.com

How Blood Clots

Scabby knees and bruised shins are as much a part of growing up as climbing trees. Minor injuries from paper cuts to skinned elbows are nothing to worry about for most people, because the blood's natural clotting process swings into action whenever the skin is broken or a blood vessel damaged. Clotting stops bleeding. Without it, even a small ...

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BloodClots
Astronomy

Sputnik and The Dawn of the Space Age

History changed on October 4, 1957, when the Soviet Union successfully launched Sputnik I. The world's first artificial satellite was about the size of a basketball, weighed only 183 pounds, and took ... Continue reading

Sputnik
Chemistry

What Is Reduction?

Long ago, in a laboratory far, far away...before the development of the atomic theory we now use, scientists believed in a principle called animism, and that the chemistry of different materials was ... Continue reading

WhatIsReduction
Engineering

Teeny Tiny Technology

What's the smallest thing you can imagine? Can you think of something extremely tiny that is also extremely strong--many times stronger than steel--and very flexible? Give up? The answer is carbon ... Continue reading

TinyTechnology
Biology

Embryo Transfer and Cloning

Scientists use embryo transfer technology to obtain more offspring from a genetically superior animal. For instance, if a farmer owns a cow that produces excellent milk and wants more cows to produce ... Continue reading

EmbryoTransferandCloning

Brain Waves

BrainWavesYour brainwaves normally vary from a low vibrational state of about one Hz ('Hertz,' or vibrations per second) to a high of about 30 Hz. The highest-frequency vibrations, ranging from about 13 to 30 Hz, are called beta waves. When your brain is in a beta state, it's in a high state of alertness. Alpha waves are somewhat slower, from 8 to 13 Hz. If your brain moves into the alpha range, you're still awake and alert, but more relaxed. As your brain moves into the theta range, from about 4 to 7 Hz, you're entering the realm of sleep. It's in the theta range that you dream. Delta waves are the slowest, from about 0.5 to 4 Hz. That's the realm of deep sleep, which your brain needs to replenish itself for the activity of another day. Even in its low-frequency delta state, your brain is still active. What's it doing?

One recent theory about delta sleep is that it's a period when your brain is carrying on a quiet internal dialog, during which the hippocampus (a brain structure crucially involved in learning and memory) sorts through the day's flotsam and jetsam of experiences, selecting out the important lessons from the day and relaying them to the cortex. Then, when your brain moves into the theta state of REM sleep, it practices and rehearses its newly-learned lessons in dreams.