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The most effective shortterm means of reducing the space debris growth rate is through the prevention of inorbit explosions (via passivation of space objects at the end of their operational life) or collisions (via collision avoidance manoeuvres while the objects are still active).
The international space station (ISS) has to regularly adjust its position to avoid space debris. One way to get rid of this orbital refuse is to send space vehicles to capture and de-orbit the junk, using tools such as a net, harpoon or robotic arm.
The NASA Orbital Debris Program officially began in 1979 in the Space Sciences Branch at the Johnson Space Center (JSC) in Houston, Texas. The program looks for ways to create less orbital debris, and designs equipment to track and remove the debris already in space.
From the vantage point of space, these satellites help us measure and track air pollution as it moves around the globe and have contributed docHubly to our decades-long quest for cleaner air.
To remove space debris, particularly the large and more dangerous objects, we have to get close to it and maintain the same speed as each object. We then must somehow attach to it, and move it into a lower orbit or reenter it directly into the atmosphere, where it will burn up upon reentry.
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Remediate: Current approaches for remediating small space debris include designing satellites for controlled deorbiting at the end of their mission and implementing active debris removal missions.
Remediate: Current approaches for remediating small space debris include designing satellites for controlled deorbiting at the end of their mission and implementing active debris removal missions.
There are four techniques that can move debris from heavily trafficked orbits: (1) deorbiting (the deliberate, forced reentry of a space object into the Earths atmosphere by application of a retarding force, usually via a propulsion system) at EOL; (2) orbital lifetime reduction (accelerating the natural decay of

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