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How To Calculate The Circumference Of A Circle

A 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 ...

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CircumferenceOfACircle
Biology

Synchronicity

There's something called synchronicity that we've probably all experienced at one time or another. Some people prefer the term 'meaningful coincidence.' You're thinking about your friend from high ... Continue reading

Sinchronicity
Biology

Beware -- Red Tide!

Red tides occur in oceans. They are not caused by herbicides or pollutants, but by a microscopic alga. Karenia brevis, when in higher than normal concentrations, causes a red tide. This bacterium ... Continue reading

BewareRedTide
Chemistry

Carbon Dating

As isotopes break down, or decay they give off radiation. Materials that decompose in this way are said to have a 'half-life'. As the quantity of material present decreases, so does the actual rate at ... Continue reading

CarbonDating
Medicine

Eating Disorders

Eating is controlled by many factors, including appetite, food availability, family, peer, and cultural practices, and attempts at voluntary control. Dieting to a body weight leaner than needed for ... Continue reading

EatingDisorders

Ultrasound In Medicine

UltrasoundInMedicineIn medical testing, ultrasound equipment is used to produce a sonogram, or a picture of organs inside the body. Ultrasound scanners do not use X-rays. They use waves of such high frequency that they cannot be heard. (Frequency is the number of sound wave cycles per second. The highest frequency humans can hear is 20 thousand Hertz. The sound waves used for ultrasound exams have a frequency of one to seven million Hertz.) The amount of energy they contain is low. The sound waves are made in a device called a transducer. It contains one or more quartz crystals that vibrate in response to an electrical current. This vibration changes electrical energy into the mechanical energy of sound.

When sound waves from the transducer enter the body, they travel through different materials at different speeds. When they hit a boundary between one kind of tissue and another--such as bone and muscle, or fluid and membrane--some bounce back, like an echo. The transducer receives those that bounce back, and the crystals work in reverse. They convert the mechanical energy of sound into an electrical current. A computer translates the electrical signals into a picture on a monitor. The picture is called a sonogram.

Ultrasound exams can yield several different kinds of information. Still pictures show individual structures inside the body. The pictures can be saved, enlarged, or printed just like any other photograph. Or, they can be viewed in rapid sequence, showing movement. Another type of sonogram is the Doppler. It works because sound waves bounce back to the transducer at a slightly different frequency than they had when they left it. The frequency shift can be used to produce colored images of problems such as clots in blood vessels or weaknesses in artery walls. Doppler techniques provide data on heart rate and blood flow.