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Liquid Crystal Communication

The Information Age rides on beams of carefully controlled light. Because lasers form the arteries of modern communications networks, dexterous manipulation of light underpins the two definitive technologies of our times: telecommunications and the Internet. Now researchers at Harvard University have developed a new way of steering and manipulating ...

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LiquidCrystalCommunication
Chemistry

What Is pH?

Anyone who is the least bit familiar with vinegar, nausea, sodium bicarbonate, and ammonia-based cleaning solutions probably has a very good 'feel' for the different natures of acidic and basic ... Continue reading

WhatIspH
Geology

Geology Played Key Role in the End of the Civil War

Depending on your perspective, Mississippi geology was either an aiding ally or formidable foe as Union troops tried to take control of the Mighty Mississippi. It was May, 141 years ago, and Major ... Continue reading

GeologyCivilWar
Physics

The Weakest Force

Did you know that gravity is the weakest force in the universe? Well, it's true! There are four fundamental forces (that we know of) in our universe: Strong Nuclear, Electromagnetic, Weak Nuclear ... Continue reading

WeakForce
Physics

Get the Point?

The discus and javelin first appeared in ancient game competitions in 708 B.C. Javelin events included both target throwing and distance throwing using a sling. By 1780, the javelin was adopted as an ... Continue reading

DiscusJavelin

Is Earth Getting Fatter Around the Belt?

EarthBeltBesides being used for transmission of this email message to you, communication satellites are used for some neat science. By shooting a laser beam onto them and measuring how long it takes for light to bounce back, scientists at NASA measure precise orbits of a number of satellites and hence the Earth's gravitational field as a function of longitude and latitude. NASA has been making these measurements for the last 25 years and it turns out the results are quite interesting.

According to the satellite data, prior to 1998, Earth's gravitational field had been decreasing at the equator and increasing at the poles. Since Earth is shaped like a pumpkin, wider at the equator and narrower at the poles, this means that our planet was getting more spherical or thinner at the equator. This is consistent with how the melting of large ice mass from the poles since the last Ice Age would affect the Earth's shape. Namely, once the pressure from the ice was gone, the ground at the poles actually expanded outward.

Data since 1998 shows an abrupt change in this trend. Earth's gravitational field is increasing now at the equator! Is the Earth getting fatter around the belt? Only significant movement in ocean water, polar and glacial ice, or atmosphere could account for these changes. Scientists are still not sure what the answer is, but some early research findings suggest it may be the movement in ocean water. Somehow, ocean currents gather large quantities of water around the equator every once in a while. Some scientists suggest that this is a cyclic event, but data is still inconclusive.