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Proteins In General

Proteins form our bodies and help direct its many systems. Proteins are fundamental components of all living cells. They exhibit an enormous amount of chemical and structural diversity, enabling them to carry out an extraordinarily diverse range of biological functions. ...

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ProteinsInGeneral
Chemistry

Knocking the NOx Out of Coal

Nitrogen is the most common part of the air we breathe. In fact, about 80% of the air is nitrogen. Normally, nitrogen atoms float around joined to each other like chemical couples. But when air is ... Continue reading

KnockingtheNOxOutofCoal
Astronomy

Does The Sun Go A Bit Wobbly?

Our Sun may seem an enduring, unwavering beacon in the sky, but in truth it has a 'heartbeat' of sorts--a pulsation between dimmer and brighter phases so slow that it only 'beats' 9 times each ... Continue reading

WobblySun
Geology

The Richter Magnitude Scale

Seismic waves are the vibrations from earthquakes that travel through the Earth; they are recorded on instruments called seismographs. Seismographs record a zig-zag trace that shows the varying ... Continue reading

RichterScale
Biology

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 ... Continue reading

WhyDoLeavesChangeColorInTheFall

Your Serve

YourServeNASA is well known for developing technology that makes things better, so can you believe that NASA actually did research on how to make tennis balls slower?

A couple of years ago, the London-based International Tennis Federation (ITF) decided to look into introducing a slower tennis ball, and used NASA research in making the decision. The slower ball is intended to compensate for other new technology that has been introduced to the game. Improved racquets and other advancements have led to changes in the way tennis is played at professional matches. With the new racquets, tennis pros can serve the ball at almost 241 kilometers per hour [kph] (150 miles per hour [mph]), contributing to shorter rallies and more tie-breaker sets. In comparison, the fastest pitch on record in baseball was only 166 kph [103 mph].

In order to try to restore the way the game is played at these matches, the ITF used research conducted at NASA Ames Research Center in California to learn about the effects of changing the size of a tennis ball. NASA had already been studying the aerodynamics of tennis balls, and was involved in a project, in collaboration with Cislunar Aerospace Inc., to help get students interested in science and technology. The project used various aspects of tennis to demonstrate different principles of physics and aerodynamics. Students across the country were encouraged to perform experiments with tennis balls to help them learn more.