Will Parker Solar Probe discover significant new insights into solar wind by end of 2025?
Yes • 50%
No • 50%
NASA scientific publications or announcements
NASA's Parker Solar Probe to Fly Within 3.8 Million Miles of Sun at 430,000 mph on Christmas Eve for Corona Study
Dec 22, 2024, 11:48 AM
NASA's Parker Solar Probe is set to achieve a historic milestone on December 24, 2024, by flying closer to the sun than any human-made object has before. The spacecraft will approach within 3.8 million miles (approximately 6.1 million kilometers) of the sun's surface, entering its corona to study solar wind and the corona's extreme temperatures. Traveling at a speed of 430,000 mph, the probe is equipped with a heat shield designed to withstand temperatures up to 2,500 degrees Fahrenheit. This mission aims to enhance our understanding of the sun's corona, which is significantly hotter than its surface, and the dynamics of solar wind, which can impact Earth's technology and environment. The probe will also provide insights into corona mass ejections and has utilized gravity-assist flybys, including several Venus flybys, to reach its current trajectory. The probe will be out of communication during its closest approach, with mission managers expecting to receive a status update on December 27. This mission coincides with the sun being at the maximum phase of its 11-year cycle.
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No • 50%
Yes • 50%
Yes • 50%
No • 50%
New understanding of solar wind • 25%
Discovery of new solar particles • 25%
Other breakthrough • 25%
Improved solar storm prediction • 25%
New insights into the sun's corona temperature • 25%
Discovery of new solar phenomena • 25%
Other major discovery • 25%
Significant new data on solar wind • 25%
No significant new information • 25%
Confirms previous solar wind models • 25%
Data not yet analyzed • 25%
New insights on solar wind origins • 25%
Coronal mass ejections • 25%
Solar corona heating • 25%
Solar wind • 25%
Solar flares • 25%
Solar wind • 25%
Solar flares • 25%
Coronal mass ejections • 25%
Sunspots • 25%
Magnetic field dynamics • 25%
Solar wind behavior • 25%
Corona heating mechanisms • 25%
Other • 25%
Magnetic field dynamics • 25%
Corona heating mystery • 25%
Solar wind origin • 25%
Other discovery • 25%
Minimal impact on solar cycle understanding • 25%
Significant impact on solar cycle understanding • 25%
No impact on solar cycle understanding • 25%
Moderate impact on solar cycle understanding • 25%
Other technical challenges • 25%
Navigation or trajectory deviations • 25%
Heat shield performance issues • 25%
Communication blackout • 25%