ScienceIQ.com

Cool Fuel Cells

Astronauts have been using them for power aboard spacecraft since the 1960s. Soon, perhaps, they'll be just as common on Earth--powering cars, trucks, laptop computers and cell phones. They're called fuel cells. By combining hydrogen fuel with oxygen, fuel cells can produce plenty of electric power while emitting only pure water as exhaust. They're ...

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CoolFuelCells
Biology

The Handsome Betta Fish

The Betta fish is possibly the most handsome tropical fish out there. We say handsome because the male of the species is the bigger and more exotic one. Referred to as the jewel of the Orient, Betta ... Continue reading

BettaFish
Astronomy

N81

NASA's Hubble Space Telescope has taken a 'family portrait' of young, ultra-bright stars nested in their embryonic cloud of glowing gases. The celestial maternity ward, called N81, is located 200,000 ... Continue reading

N81
Biology

The Limbic System

The limbic (meaning 'ring') system is virtually identical in all mammals. It sits above the brain stem, resembling a bagel with a finger (the brain stem) passing through it. This limbic 'system' ... Continue reading

LimbicSystem
Mathematics

What Are Squares And Square Roots?

The mathematical term 'square' comes from the two-dimensional shape of the same name. A square shape has the two dimensions of length and width, both exactly the same and at angles of 90 to each ... Continue reading

SquaresAndSquareRoots

Respect Your Nose

NoseScienceOur language seems to indicate that we think of the world as divided up into things that 'smell' and things that don't. Garbage smells. Groceries don't. A dirty sock smells. A clean one doesn't. That way of talking doesn't give much respect to odors, or to our olfactory system. Once you appreciate the delicacy of our olfactory system's design, you're likely to give it a little more of the respect it deserves.

At the top of your nasal passages, just behind the bridge of your nose and where the passages are closest to your brain, there are five million smell receptor cells concentrated in two small patches no bigger than a dime, one for each nostril. There are about a thousand different types of receptor, each one of which allows a different odor molecule to 'dock' in it. That in turn triggers that receptor's neuron to fire and send a signal to the olfactory bulb, which relays the signal to several destinations in the brain.

Think of each receptor type as a different letter of an alphabet, and think of how many different words there are in your vocabulary. Now, think of an alphabet not of 26 letters but of a thousand. That gives you some idea of the potential complexity of the odor codes that can be sent to your brain. Impressive, isn't it!