ScienceIQ.com

Why Doesn't Glue Get Hard In The Plastic Bottle?

Glue, in its many different forms, is a very simple-to-apply sort of thing that represents a surprisingly complex amount of chemistry and physics. On the face of it, what could be simpler? Put on the glue, press the two things together, the glue dries or gets hard, and two things that weren't joined together previously are sudden;y impossible to ...

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WhyDoesntGlueGetHard
Geology

Wetter not Necessarily Better in Amazon Basin

June through September is the dry season for the Amazon Basin of South America. Yet the basin's dry season may be getting uncharacteristically wetter, according to NASA's Goddard Space Flight Center ... Continue reading

AmazonBasin
Physics

The Early Universe Soup

In the first few millionths of the second after the Big Bang, the universe looked very different than today. In fact the universe existed as a different form of matter altogether: the quark-gluon ... Continue reading

TheEarlyUniverseSoup
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
Biology

Now You See It, Now You Don't

What we call light is simply a narrow band of electromagnetic radiation that our eyes are sensitive to. This radiation enters our eyes and is conveyed to the brain by the process we call sight. While ... Continue reading

EMRadiation

Diamonds Improved by Irradiation?

IrradiationDiamondBesides 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 spectrum. Usually it's the impurities and the way they are bound to the mineral crystals that determines the color. For example, NaAl[Si2O6] crystal becomes one type of Jade when laced with chromium, an element that reflects a green part of the light spectrum and absorbs all other colors. Similarly Beryl, which is colorless in its pure mineral form, Be3Al2[Si6O18], becomes Emerald with chromium impurities.

These impurities get absorbed naturally into the crystalline structure of the mineral inside the Earth's crust. The process is stimulated by high temperatures, pressures and sometimes a little help from naturally occurring radiation sources. Clear gems such as diamond or quartz are rarely found colored. However, sometimes these clear gems already contain impurities that can be activated, i.e., the way they bond to the crystalline matrix can be changed by irradiating and heating these gems after they have been excavated.

One can produce bright yellow, blue or green diamonds by irradiating clear diamonds with a radioactive source such as Cobalt 60. Topaz, which is naturally colorless, can be transformed into a cinnamon brown. Fully transparent Quartz can be changed into prized foggy white if it contains enough aluminum impurities or into an Amethyst if it contains enough iron impurities. The problem with gem irradiation is that the final results are not predictable. The gamma radiation from the source basically rearranges the electrons and bonds between the mineral and impurities. Exactly what impurities are present and how they will be rearranged is a probability game. Vibrant colors do however increase the price of the gem significantly, hence most jewelers are willing to take this gamble. If you ever bought a colored diamond, did you ask your jeweler if the color was natural or a result of irradiation?