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Hydrogen Reaction Experiment Reaps a Surprise

Scientists got a surprise recently when a team of physical chemists at Stanford University studied a common hydrogen reaction. Scientists got a surprise recently when a team of physical chemists at Stanford University studied a common hydrogen reaction. The experiment and an associated new theory revealed behaviors completely opposed to what had ...

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HydrogenReactionExperiment
Geology

Why Don't We Try To Destroy Tropical Cyclones?

There have been numerous techniques that we have considered over the years to modify hurricanes: seeding clouds with dry ice or Silver Iodide, cooling the ocean with cryogenic material or icebergs, ... Continue reading

TropicalCyclones
Science

Inventor: George Washington Carver

George Washington Carver, born a slave in 1864 (approximately), contributed significantly to agricultural research. Although he was orphaned as an infant, endured hardship in pursuit of his education, ... Continue reading

GeorgeWashingtonCarver
Biology

Marmaduke and the Taco Bell Chihuahua Are Cousins

You would never think Marmaduke, the enormous great dane of the newspaper cartoons, and the tiny Taco Bell chihuahua are close relatives. But the fact is, ALL dogs are pretty close relatives. ... Continue reading

Marmaduke
Astronomy

What is Dark Energy?

Because he originally thought the Universe was static, Einstein conjectured that even the emptiest possible space, devoid of matter and radiation, might still have a dark energy, which he called a ... Continue reading

WhatisDarkEnergy

High Altitude

HighAltitudeHave you ever read the directions on a box of cake mix? There are special instructions for high-altitude baking. Has anyone who visited the Rocky Mountains told you how hard it was to breathe there? Have you ever wondered why pilots who fly in high-flying planes wear breathing masks? In higher altitudes, reduced air pressure makes it harder for oxygen to reach the lungs and the brain. Breathing in the mountains causes difficulties as the body adjusts to lower levels of oxygen. In more extreme situations, such as flying an airplane at high elevations, it's more serious. Hypoxia is the name for insufficient oxygen in the body's tissues. It affects the central nervous system and organs. Brain cells need oxygen. And, they begin to die within 5 minutes after the supply has been cut off. When hypoxia lasts longer, it can cause coma, seizures, and even brain death. Mild symptoms of early hypoxia include inattentiveness, poor judgment, memory loss, and decrease in coordination.

Pilots with hypoxia may not be able to recognize dangerous situations or take corrective action. This can lead to aircraft accidents and crashes. The greatest risk for hypoxia takes place in the aircraft's cabin. The cabin is the area with the pilot cockpit and passenger seating areas. Since this is where the people are, the risk of hypoxia is greatest in the cabin. The National Transportation Safety Board and the Federal Aviation Administration keep track of the number of hypoxia and cabin-pressure-related accidents. NASA has developed a device to warn pilots of dangerous conditions before hypoxia becomes a threat. It's about the size of a personal pager, and can send out a beep or a vibrating alert, just like a cell phone. A display window for text messages tells the pilot important information. It can show why the alarm is going off, what altitudes would be safer, and even when the battery needs to be replaced.

The device works by monitoring air pressure. When it detects unsafe levels, it sounds the alarm. It's called the Personal Cabin Pressure Altitude Monitor and Warning System, but is known as PCM 1000 for short. The PCM 1000 is also used on the International Space Station and the Space Shuttle. It quickly notifies crew members of any pressure changes that signal problems on the spacecraft. The cabin pressure alert is used in aviation now, but there are other possible uses for it. Hypoxia is a concern in scuba diving, skydiving, mountain climbing, meteorology, and underwater habitats. To develop the PCM 1000 for commercial use, NASA awarded a patent license to Kelly Manufacturing, of Grenola, Kansas. NASA's Technology Transfer Program encourages private enterprise to take space technology and develop it into products and services for Earth, proving that NASA cares as much about the humans that go into space as those that remain closer to home.