ScienceIQ.com

How Biological Clocks Work

Anyone who has traveled has experienced jet lag—that groggy realization that while your day is beginning in Washington, DC, the night you just left in San Francisco is hardly over. Jet lag is an inconvenient reminder that the body is set to a 24-hour clock, known by scientists as circadian rhythms, from the Latin circa dies, 'about one day.' An ...

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HowBiologicalClocksWork
Astronomy

The Sun’s Corona

The White-Light Corona - The Corona is the Sun's outer atmosphere. It is visible during total eclipses of the Sun as a pearly white crown surrounding the Sun. The corona displays a variety of features ... Continue reading

TheSunCorona
Physics

Does Your Brain Do Flips?

You may not be aware of it, but when you look at the world, the image projected on your retina is upside down. This is due to the optics used by our eyes. Our brain compensates for this upside down ... Continue reading

BrainFlips
Biology

What is Garlic Mustard?

If someone told you that they were going to look for garlic mustard, you would probably think they were making dinner. Garlic Mustard, or Alliaria petiolata, is actually a plant native to Europe. It ... Continue reading

WhatisGarlicMustard
Biology

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 ... Continue reading

BloodClots

How To Calculate The Circumference Of A Circle

CircumferenceOfACircleA circle is what you get if you take a straight line and bend it around so that its ends touch. You can demonstrate this by taking a piece of stiff wire and doing just that: bring the ends of the wire together end a circle shape will be formed. A true circle has a center, and every point on the line that got bent around to make the circle is exactly the same distance from this central point. That distance is called the radius of the circle. If you were to measure across the center of the circle from one edge to the other, you would be measuring the diameter of the circle. The diameter of a circle is exactly twice the length of the radius of the circle.

Because the length of the line that got bent around to make the circle is a very exact value and doesn't change, it will only make a circle of a certain size. The distance around the edge of the circle is called the circumference, and it can only be the same as the length of that line. There must therefore be a relation between the radius of a circle and the length of that line. The diameter of a circle is related to the circumference through a simple ratio: the value of 2p. If you were to take the original straight line and cut it into pieces so that each piece is as long as the radius of the circle, you would find in the end that you would have six equal pieces and one shorter piece. The circumference of a circle, then, is calculated by the general formula C = 2pr or C = pd.

As an example of how to use this formula, suppose you want to lay out a circular path in a garden to make a flower bed that will be 20 feet across. The path will be made of stones and you have enough stones to make 50 feet of the pathway. Will you need more stones, and if so, how much more will you need? (use p = 3.14) Substituting these values into the formula, you find that your path will be C = p X d. So C equals 3.14 X 20, or 62.8 feet long. Go get more stones.