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Warmer Hands (And Toes) Through Chemistry

A popular item for skiers and snowboarders, hunters and people who have to work outside in cold areas, and found in many outdoors shops, are disposable hand warmers. If you haven't used them before, you're missing out on a cool way to keep your fingers and toes nice and warm. Warmers come in various shapes and sizes but all work about the same way. ...

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WarmerHands
Biology

The Red-Cockaded Woodpecker

In the mid-l800s, naturalist John Audubon reported that the red-cockaded woodpecker was found abundantly in the pine forests of the southeastern United States. Historically, this woodpecker's range ... Continue reading

TheRedCockadedWoodpecker
Biology

Gray Wolf - Canis lupus

Historically, most Native Americans revered gray wolves, trying to emulate their cunning and hunting abilities. However, wolves became nearly extinct in the lower 48 states in the early part of the ... Continue reading

GrayWolfCanislupus
Astronomy

Astronomers Glimpse Feeding Of A Galactic Dragon

A team of radio astronomers has found a cold ring of gas around a supermassive black hole in the fiery nuclear region of quasar galaxy 'QSO I Zw 1,' the most detailed observational evidence yet that ... Continue reading

GalacticDragon
Science

NASA's First Historic Challenge

In a time of uncertainty at home and abroad, an American president proposes bold new steps in the exploration of space. He calls for 'longer strides' which 'may hold the key to our future here on ... Continue reading

NASAsFirstHistoricChallenge

The Early Universe Soup

TheEarlyUniverseSoupIn 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 plasma or QGP, a weird 'soup' of quarks and gluons buzzing around frantically at temperatures of over 1,000,000,000,000 degrees.

Quarks are tiny particles (approximately same in size to electrons) which make up protons, neutrons and other so called 'hadron' particles. Just like photons are 'force carrier' particles for the electro-magnetic force, gluons are force carrier particles for the strong force. The strong force is the strongest force in the universe and is responsible for keeping the quarks 'glued' together inside protons and neutrons. The strong force is actually so strong that no one has even succeeded in separating individual quarks, they always come in pairs of two or three.

Immediately after the Big Bang the temperature was so high that it overpowered the gluons and freed the quarks to buzz around. The result was a dense 'soup' of free quarks and gluons; the quark-gluon plasma. This plasma quickly disappeared as the universe cooled. In fact, the QGP was gone within the first hundred-thousandth of a second when the gluons started 'trapping' all the quarks into hadrons (process called hadronization). After the first second or so the first nuclei started forming from those hadrons, and it took almost a billion years for the first atoms to form. Believe it or not, humans are trying to reproduce this QGP in the laboratory! A project called Phenix at the Brookhaven National Laboratory in Long Island is trying to produce QGP by smashing particles at extreme speeds inside an accelerator called RHIC (Relativisting Heavy Ion Collider). The early universe soup may be soon served at Brookhaven, back by popular demand after being forgotten for billions and billions of years!