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Exercising In Space

What did astronaut Shannon Lucid like least about her six months on Space Station Mir? The daily exercise. 'It was just downright hard,' she wrote in Scientific American (May 1998). 'I had to put on a harness and then connect it with bungee cords to a treadmill.' The harness and cords kept her feet on the treadmill. They also provided resistance ...

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ExercisingInSpace
Geology

What is Volcanic Ash?

Small jagged pieces of rocks, minerals, and volcanic glass the size of sand and silt (less than 1/12 inch or 2 millimeters in diameter) erupted by a volcano are called volcanic ash. Very small ash ... Continue reading

VolcanicAsh
Chemistry

Spontaneous Combustion

Most of us know if we leave oily rags or papers in an enclosed area, we risk a fire. The process of burning is called oxidation. Oxidation is the same process that causes iron to rust or a banana to ... Continue reading

SpontaneousCombustion
Astronomy

Sputnik and The Dawn of the Space Age

History changed on October 4, 1957, when the Soviet Union successfully launched Sputnik I. The world's first artificial satellite was about the size of a basketball, weighed only 183 pounds, and took ... Continue reading

Sputnik
Geology

A Hurricane In Brazil?

Hurricanes are terrifying. They rip trees right out of the ground, hurl cars into the air, and flatten houses. Their winds can blow faster than 100 mph. Some hurricanes have been known to pull a wall ... Continue reading

AHurricaneInBrazil

Teeny Tiny Technology

TinyTechnologyWhat's the smallest thing you can imagine? Can you think of something extremely tiny that is also extremely strong--many times stronger than steel--and very flexible? Give up? The answer is carbon nanotubes, and nanotubes are made with nanotechnology. Now imagine those microscopic bits of technology being used to create teeny tiny machines that can travel inside the human body to attack cancer cells, or be assembled into enormous structures to fly humans into space. If this sounds like science fiction, you're half right: nanotechnology hasn't yet been refined to create these inventions, but scientists believe that before long, it will be a reality.

Nanotechnology comes from the Greek word for dwarf: nanos. Nanotechnology is technology that manipulates atoms to create something new. Humans have done that for centuries: we manipulate atoms by casting, milling, grinding, and chipping. Making stone tools and flint knives involves arranging atoms, arranging the atoms in coal yields diamonds, and rearranging the atoms in dirt, water, and air produces grass. This type of technology manipulates large groups of atoms, however, not individual ones. Nanotechnology involves manipulating much smaller bits.

To compare this to a building, current technology moves buildings from place to place to create new cities. Nanotechnology can move individual bricks in each building to change the shape and characteristics of the buildings. By moving bricks to create windows, corners, and slopes to the roof, a building can perform very differently from the original design. That's what nanotechnology does to atoms. As scientists are able to do this with greater accuracy and knowledge, we will be able to make products that are lighter, stronger, smarter, cheaper, cleaner, and more precise. By manipulating the way atoms behave to create lighter materials, for example, a car could weigh 50 kilograms (110 pounds).