ScienceIQ.com

A Tickle is All in the Timing

It's often been noted that no matter how hard you might try, you can't tickle yourself. Why not? Whether it's your finger or someone else's, a prod in the ribs is a prod in the ribs. Why should only one of two objectively identical stimuli evoke a tickle response? The answer lies in the fact that it's your brain that creates the sensations of a ...

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Tickle
Astronomy

What Is Polarimetry?

Polarimetry is the technique of measuring the 'polarization' of light. Most of the light we encounter every day is a chaotic mixture of light waves vibrating in all directions. Such a combination is ... Continue reading

WhatIsPolarimetry
Mathematics

Eratosthenes Measured Earth’s Circumference—Centuries Before Columbus Sailed

Eratosthenes (c. 276 – 194 BC) was born more than 2200 years ago in the Greek city of Cyrene, now a city in the North African country of Libya. (The Greek Empire surrounded much of the Mediterranean ... Continue reading

EratosthenesEarthCircumference
Mathematics

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 ... Continue reading

CircumferenceOfACircle
Geology

What is Haze?

Haze is caused when sunlight encounters tiny pollution particles in the air. Some light is absorbed by particles. Other light is scattered away before it reaches an observer. More pollutants mean more ... Continue reading

Haze

Does Your Brain Do Flips?

BrainFlipsYou 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 view and everything seems perfectly normal to us.

Don't believe it? Do this simple experiment. Take a metal straight pin with a head, just like the one shown in the picture, and poke a hole in a 3x5 index card. Hold the hole in the index card very close to your eye and look through it. While looking through the hole, position the head of the pin very close to the card so you can see it through the hole. Can you see it? Isn't the pin upside down? Voila! What you are seeing is a shadow of the pin on your retina. Normally, when we see an object, light passes through our cornea and an image is formed on the retina. When you look at the pin through the pinhole, your cornea cannot focus the image because it's not designed to work over such short distances. You merely see a shadow image that appears on your retina right side up. Since your brain is trained to flip things you see, it flips the shadow of the pin upside down.

Interestingly enough, if you wear special glasses that invert the images you see, within a few days your brain will compensate and the world will appear right side up again!