ScienceIQ.com

Knocking the NOx Out of Coal

Nitrogen is the most common part of the air we breathe. In fact, about 80% of the air is nitrogen. Normally, nitrogen atoms float around joined to each other like chemical couples. But when air is heated in a coal boiler's flame, for example these nitrogen atoms break apart and join with oxygen. This forms 'nitrogen oxides' or, as it is sometimes ...

Continue reading...

KnockingtheNOxOutofCoal
Geology

Distant Mountains Influence River Levels 50 Years Later

Rainfall in the mountains has a major influence on nearby river levels, and its effects can be seen as much as 50 years after the rain has fallen, according to hydrologists funded by the National ... Continue reading

RiverLevels
Mathematics

What Is The Pythagorean Theorem?

Pythagoras was a famous Greek mathematician. He was particularly interested in the properties of triangles, and discovered a simple, fundamental relationship between the lengths of the sides of right ... Continue reading

PythagoreanTheorem
Geology

Diamonds Improved by Irradiation?

Besides hardness and texture, probably the most fascinating aspect of gems is their color. There are so many different and wonderful clear and foggy gems with colors that span almost the complete ... Continue reading

IrradiationDiamond
Geology

Glaciers: Rivers of Ice

Glaciers are massive sheets of ice that occur on every continent of the world except Australia. These giant ice slabs have a humble beginning, as the tiny snowflakes in winter precipitation that ... Continue reading

Glaciers

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!