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How Many Cows Does It Take To String A Tennis Racquet?

How many cows does it take to string a tennis racquet? According to Professor Rod Cross of the University of Sydney, an expert on the physics and technology of tennis, the answer is 3. Many top professional tennis players still prefer to string their racquets with natural gut instead of synthetics due to natural gut's soft feel, high elasticity and ...

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Astronomy

Look, Up in the Sky. It's A Bird. No It's A Meteorite!

Most folks probably think of swallows and the ringing of the Mission bells when the words San Juan Capistrano are heard or seen. This is a popular tradition that celebrates the return of cliff ... Continue reading

MeteoriteSky
Biology

The Journey of the Monarchs

The life of Monarch butterflies is an amazing one. They develop as caterpillars from the roughly 400 eggs each mother lays on the underside of milkweed plant leaves. Then they spend their brief lives ... Continue reading

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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
Astronomy

The Strange Spin of Uranus

Directional terms like north and south make sense here on Earth. The north and south axis of the Earth is relatively perpendicular to the plane of the Earth's orbit around the sun. Actually, Earth's ... Continue reading

UranusSpin

Life In The Extreme

MicrobesLowly microbes just may be the toughest living things on Earth. They have learned to survive, and indeed flourish, in the harshest environment imaginable, deep-sea rifts. These rifts are chains of undersea active volcanoes that stretch across the ocean floor. Super-hot roiling lava from deep within the Earth's core, plumes of sulfuric particles, and seawater mix to create hydrothermal vents. This torrid environment is made all the more extreme by the total darkness and the incredible pressure (over 300 atmospheres) and temperature (over 600 degrees F/300 degrees Celsius) exerted by thousands of feet (meters) of seawater.

Yet within these vents microbes thrive. In fact, as soon as a vent opens up, even if it is hundreds of miles (kilometers) away from its nearest neighbor, it's soon teaming with microbes. One key to their survival may be that they are chemosynthetic.

In general, the life process begins with plants and their ability to use the energy of the sun to make food, what we call photosynthesis. Some animals live off the plants, while other animals eat the plant eaters. But no sunlight reaches the deep-sea rifts. The microbes instead create energy by working with the chemicals that flow out of the vents. This process of chemosynthesis allows them to make food and survive. As to how they can withstand the pressure and the intense heat of the water, scientists have a way to go to figure that out.