ScienceIQ.com

Why Do Leaves Change Color In The Fall?

Every fall the leaves of many trees turn magnificent colors. One of the great benefits of the season is looking at the fall foliage, with its bright reds, oranges and purples, before the leaves fall off for winter. How exactly do the vibrant green leaves turn so many different colors, and why? ...

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WhyDoLeavesChangeColorInTheFall
Engineering

Infrared Headphones

Infrared headphones use infrared light to carry an information signal from a transmitter to a receiver. Sounds simple enough, but the actual process is very complicated. The human ear gathers sound as ... Continue reading

InfraredHeadphones
Astronomy

Live Fast, Blow Hard, and Die Young

Massive stars lead short, yet spectacular lives. And, they usually do not go quietly, instead often blowing themselves apart in supernova explosions. Astronomers are curious about the details of the ... Continue reading

LiveFastBlowHardDieYoung
Engineering

Barn Yard Aeronauts

The word aeronaut is derived from the Greek terms 'aero' meaning air or atmosphere and 'nautes' meaning sailor. Originally, individuals who piloted balloons or airships (blimps or dirigibles) were ... Continue reading

BarnYardAeronauts
Biology

Genome Mapping: A Guide To The Genetic Highway We Call The Human Genome

Imagine you're in a car driving down the highway to visit an old friend who has just moved to Los Angeles. Your favorite tunes are playing on the radio, and you haven't a care in the world. You stop ... Continue reading

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Igneous Rocks, Born of Fire

IgneousRocksBornofFireRocks are naturally occurring solid mixtures of substances primarily made of minerals. There are three kinds of rock on earth - igneous, sedimentary, and metamorphic rock. Sedimentary rock forms from the break-down, movement, and deposition of particles from pre-existing rock. Metamorphic rock has been changed by high heat or pressure or both. Igneous rock forms when molten rock, either magma or lava, cools to a solid. Rock melted deep within the earth is called magma while it is beneath earth's surface. If it flows onto earth's surface, it is called lava.

Intrusive igneous rock forms from the cooling of magma. Earth's heat energy causes plates to move. Plates are large sections of the solid, upper layers of the earth. (See the ScienceIQ Geology fact on Plate Tectonics from Nov. 2002.) Plate movement can force magma to move, intruding it into other rock layers by pushing them up or by breaking through and flowing between the layers. Intrusive igneous rock is insulated by the surrounding rock and cools to a solid very slowly. It may cool only a few degrees a century. Slow cooling allows time for mineral molecules to move through the liquid and collect to form large crystals. Intrusive igneous rock is only found at the surface after erosion has removed the overlying rock. Some examples of intrusive igneous rock are dark gabbros and granites of different composition and colors. Half Dome inYosemite Valleyis an intrusive granite that became exposed at the surface and was partially removed by a glacier.

Extrusive igneous rock forms when magma is forced through to earth's surface, often as a volcano. Lava flowing over the surface hardens into a dark rock called basalt. Explosive volcanoes will form pyroclasts; these include lava globules that are blown into the air where they cool. Gas escaping from lava globules can leave holes behind in the quickly solidifying rock. This can form pumice, a rock light enough to float on water, or scoria which does not float. Huge amounts of ash (very fine rock particles) can be blown high into earth's atmosphere. Ash can blanket the area around the volcano, and some may be carried by winds to other continents. Rock formed from the consolidation of ash is called tuff. Some of the exploded lava globules cool so quickly that no crystals can form resulting in a glass mineral called obsidian. The types of minerals and the sizes of crystals found in igneous rock give geologists clues to the origins of the rock.