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The First Starlight

Imagine being able to see our Universe 14 billion years ago when it was just a baby. If we had a time machine, we could go back and watch how its infant features emerged after the Big Bang. There are many questions about that early time: Which came first, stars or galaxies? Did stars appear one at a time, or in massive flurries of simultaneous ...

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FirstStarlight
Medicine

Is Heartburn a Heart Burn?

Heartburn is a bad name for a complaint that has nothing to do with the heart. TV ads call it acid indigestion. It's a burning sensation that begins under the breastbone and moves up into the throat. ... Continue reading

IsHeartburnaHeartBurn
Geology

Haleakala Crater

Modern geology indicates that the Hawaiian Islands are situated near the middle of the Pacific Plate, one of a dozen thin, rigid structures covering our planet like the cracked shell of an egg. Though ... Continue reading

HaleakalaCrater
Geology

Lightning Striking Again

What's hotter than the surface of the sun, moves with incredible speed, lasts a few seconds and goes out with a bang? If you said lightning, you're right. Lightning strikes cause thousands of forest ... Continue reading

LightningStrike
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

Metamorphic Rock

MetamorphicRockThere are three rock types on earth, named according to how the rock is formed. Igneous rock forms as it cools to a solid from molten rock. Sedimentary rock is formed from the consolidation of particles that come from other rock that has been weathered and eroded. Metamorphic rock forms when solid rock is altered by intense heat, pressure, or both. The original, unaltered rock is called the 'parent' rock and can be igneous, sedimentary, or metamorphic in origin.

Metamorphism (from the Greek terms 'meta'--to change, and 'morph'--form) can occur in several ways. 'Regional' metamorphism occurs when huge masses of magma are intruded deep within the crust over a wide area. The intrusion often occurs along converging (colliding) or diverging plate boundaries and causes high heat and high pressures. Superheated fluids circulating through rock pores and fractures are also involved in regional metamorphism. The fluids can come from the magma, from groundwater, or perhaps even from sea water entering at the plate boundary. These fluids cause 'metasomatism'--chemical changes in the rocks due to the exchange of elements between the fluids and the heated rocks. Rocks may be so altered that the parent rock cannot be identified.

'Contact' metamorphism occurs over a fairly small area when veins of magma are intruded in the upper crust. Pressures do not increase much, but high heat can cause recrystallization. 'Dynamic,' or 'cataclastic', metamorphism often occurs along faults. The rocks can be ground to a powder or may be altered by sudden high pressures at low temperatures. 'Impact' metamorphism occurs around meteor craters. The sudden impact pressure alters surface minerals producing those usually found only in the lowermost crust. Some useful metamorphic rocks are marble and slate. Profitable metal mines (copper, iron, etc.) are often found in zones of contact metamorphism or along the outer boundaries of regionally metamorphosed rock. Some other common metamorphic rocks are quartzite, micas, schist, and gneiss.