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
Medicine

What Is A Cerebral Aneurysm?

A cerebral aneurysm is the dilation, bulging or ballooning out of part of the wall of a vein or artery in the brain. The disorder may result from congenital defects or from other conditions such as ... Continue reading

WhatIsACerebralAneurysm
Biology

What Causes Wrinkles?

Elastin and collagen are proteins in the skin's underlying layers that give it firmness and elasticity. As we age, skin begins to lose its elastin fibers. The fibers start to tangle in disorganized ... Continue reading

WhatCausesWrinkles
Chemistry

Nitrogen Gas and Compounds

Nitrogen is a very interesting element. It is the seventh element of the periodic table, with seven electrons in its atoms. The somewhat unique combination of electronic structure and small atomic ... Continue reading

NitrogenGasandCompounds
Geology

What Is The Most Damaging Hazard From A Hurricane?

The greatest potential for loss of life and property related to a hurricane is from the storm surge—water pushed ashore by the force of the winds accompanying a hurricane. Although hurricanes are ... Continue reading

Hurricane

Moore's Law

MooresLawIntel is the corporate giant known for manufacturing semiconductors, also called computer chips or integrated circuits (ICs), and its Pentium Processor. But Intel is also known for laying down the law. In 1965, just a few years before he would go on to co-found Intel, Gordon Moore set out an observation that has since become known as 'Moore's Law.'

Simply stated, Moore's Law holds that the number of transistors packed into an integrated circuit will double every year, a trend that in fact has loosely held up since the late 60s. Transistors store information on chips by holding or releasing electrical charges that flow through the chips. More transistors equal more data storage. Many in the computer industry expect Moore's Law to hold for at least another 10 years. To get an idea of just how amazing Moore's law turns out to be, consider this. In 1971 Intel released the 4004, the world's first single chip microprocessor - only .118 by .157 inches, (3 by 4 mm) in size, but containing 2,240 transistors. That was as much power as the original ENIAC computer which was 80 ft. (24m) long and 10 ft. high (3m). In 2000, Intel's Pentium 4 processor, not all that much bigger than the original 4004, contained an amazing 42,000,000 transistors.

Will Moore's Law fail? Yes and no. As silicon chips shrink to just a few nanometers of thickness, it will become harder, and finally impossible to control the flow of electrons. But don't count out transistors made from something other than silicon. There are many promising candidates hoping to extend the life of Moore's Law indefinitely.