NASA’s Psyche mission to launch on October 12: All about it here

NASA is preparing for an unprecedented mission to launch on October 12. The mission involves the Psyche spacecraft, which will travel to an asteroid using solar electric propulsion, using the Sun’s power to generate a stream of charged particles that will propel it – using sunlight instead of wind – to travel through space. Something like piloting a spaceship through. To propel its journey, the Psyche mission will take advantage of Mars’ gravitational pull, a technique that helps save fuel in space travel.
What makes this mission truly remarkable is the target: an asteroid. It is believed to be worth a staggering US$10,000 quadrillion, which is more than the combined value of all the gold on Earth! NASA’s dedicated scientists are diligently preparing for the spacecraft’s launch, making sure everything is in perfect order.

If successful, this mission could have far-reaching effects on the global economy, given the astronomical value of the celestial body in question. This asteroid resides in the outermost layer of the asteroid belt located between Mars and Jupiter, The Psyche spacecraft is scheduled to lift off at 10:16 a.m. Oct. 12 aboard a SpaceX Falcon Heavy rocket from Complex 39A at NASA’s Kennedy Space Center in Florida.

The primary objective of this mission is to conduct an in-depth study of the asteroid, which may provide valuable insights into the early formation of our planet and the nature of planetary cores. To put the asteroid’s value into perspective, the combined GDP of the entire world is currently $105 trillion US dollars, a figure that pales in comparison to the staggering $10,000 quadrillion associated with this celestial body.

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According to NASA, the Psyche mission is named after an asteroid that orbits the Sun in the space region between Mars and Jupiter. The mission is led by Arizona State University and is part of NASA’s Discovery program. Once the Psyche spacecraft reaches the asteroid, it will attach itself, carefully map the asteroid’s surface, and comprehensively study its properties.

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