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What Is Polarimetry?

Polarimetry is the technique of measuring the 'polarization' of light. Most of the light we encounter every day is a chaotic mixture of light waves vibrating in all directions. Such a combination is known as 'unpolarized' light. When you turn on a lamp, for example, the light waves vibrate in all directions: up and down, side to side, or at any ...

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WhatIsPolarimetry
Physics

Ultraviolet Light

Ultraviolet light is a form of radiation which is not visible to the human eye. It's in an invisible part of the 'electromagnetic spectrum'. Radiated energy, or radiation, is given off by many ... Continue reading

UltravioletLight
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
Biology

Neurons

Until recently, most neuroscientists thought we were born with all the neurons we were ever going to have. As children we might produce some new neurons to help build the pathways - called neural ... Continue reading

Neurons
Astronomy

The Antennae

NASA's Chandra X-ray Observatory has discovered rich deposits of neon, magnesium, and silicon in a pair of colliding galaxies known as The Antennae. The deposits are located in vast clouds of hot gas. ... Continue reading

TheAntennae

The World's Largest Laser

LargestLaserIn a rural community in Northern California, in a building spanning the length of two football fields scientists are creating the world's largest laser. The National Ignition Facility project, know as NIF, is being developed by Lawrence Livermore National Laboratory for the U.S. Department of Energy.

When complete, the facility will house 192 laser beams in two bays. The beams will generate a peak power of 1000 times the electric generating power of the entire United States, although only for a few billionths of a second. When fired, the laser light from the beams will travel through tubes almost the length of the entire building, and pass through giant crystals that will covert the infrared light of the lasers to ultraviolet light. The ultraviolet light from the 192 lasers will then converge on a 10-meter diameter target chamber that looks nothing but out of this world. The ultimate target is inside this chamber; a BB-sized plastic sphere, holding fusion fuel. The hydrogen fuel will reach temperatures of 100 million degrees and will be converted to helium with the release of fusion energy.

The goal of this ambitious project is national defense and research in the areas of energy creation through fusion power, nuclear reactions, astrophysics, and material sciences.