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# A SpaceX Rocket Is About to Crash Into the Moon. Here's Everything You Need to Know


![Jeffrey Kluger](https://static.time.com/v3/assets/bltea6093859af6183b/blt8ba5798889b0f77d/69868efb1eebf78937370d95/jeffrey-kluger.jpg?branch=production&width=3840&quality=75&auto=webp&crop=1:1)

by 

[Jeffrey Kluger](https://time.com/author/jeffrey-kluger/)


![Jeffrey Kluger](https://static.time.com/v3/assets/bltea6093859af6183b/blt8ba5798889b0f77d/69868efb1eebf78937370d95/jeffrey-kluger.jpg?branch=production&width=96&quality=75&auto=webp)

## Jeffrey Kluger


Editor at Large

Aug 4, 2026 10:00 AM UTC

![](https://static.time.com/v3/assets/bltea6093859af6183b/bltfb488dfd33cd2e4e/6a710624f59e1d1ec6ef5537/GettyImages-2193430514.jpg?branch=production&width=3840&quality=75&auto=webp&crop=3:2)

A SpaceX Falcon 9 rocket, carrying Firefly Aerospace's Blue Ghost and ispace's Resilience lunar landers, lifts off from the Kennedy Space Center in Cape Canaveral, Florida, on Jan. 15, 2025.

A SpaceX Falcon 9 rocket, carrying Firefly Aerospace's Blue Ghost and ispace's Resilience lunar landers, lifts off from the Kennedy Space Center in Cape Canaveral, Florida, on Jan. 15, 2025.GREGG NEWTON/AFP —Getty Images

![Jeffrey Kluger](https://static.time.com/v3/assets/bltea6093859af6183b/blt8ba5798889b0f77d/69868efb1eebf78937370d95/jeffrey-kluger.jpg?branch=production&width=3840&quality=75&auto=webp&crop=1:1)

by 

[Jeffrey Kluger](https://time.com/author/jeffrey-kluger/)


![Jeffrey Kluger](https://static.time.com/v3/assets/bltea6093859af6183b/blt8ba5798889b0f77d/69868efb1eebf78937370d95/jeffrey-kluger.jpg?branch=production&width=96&quality=75&auto=webp)

## Jeffrey Kluger


Editor at Large

Aug 4, 2026 10:00 AM UTC

Humanity has been putting metal on the moon ever since Sept. 13, 1959, when the Soviet Union’s [Luna 2 spacecraft](https://www.nasa.gov/history/60-years-ago-luna-2-makes-impact-in-moon-race/) completed a 36-hour translunar journey, performing a planned crash landing between the Sea of Rains and the Sea of Serenity on the moon’s near side. Since then, [nearly 70](https://www.wsj.com/graphics/the-incredible-inventory-of-things-on-the-moon/) spacecraft and spent boosters have soft landed or crash landed on [the moon](https://time.com/article/2026/04/07/artemis-ii-moon-earth-photos/)—including six ships carrying people. This week one more big hunk of hardware is set to join them: the upper stage of a [SpaceX](https://time.com/article/2026/06/12/spacex-ipo-elon-musk-trillionaire-whats-at-stake/) Falcon 9 rocket, on track for an unplanned lunar impact on Wednesday, Aug. 5, at 2:35 a.m. ET, after a 19-month journey.

The 230-ft. Falcon 9 [lifted off](https://www.space.com/space-exploration/launches-spacecraft/spacex-launches-2-private-lunar-landers-to-the-moon-photos) from launch complex 39A at the Kennedy Space Center on Jan. 15, 2025, packed with a pair of spacecraft bound for the moon. One of them, the [Blue Ghost lander](https://spaceflightnow.com/2025/03/01/live-coverage-firefly-aerospace-attempts-first-moon-landing-with-blue-ghost/), built by Firefly Aerospace of Cedar Park, Texas, landed on [the moon](https://time.com/7346146/artemis-ii-launch-nasa-astronauts-moon-mission/) on March 2, 2025, becoming the first privately built ship to pull off a completely successful lunar touchdown. The other, the Resilience lander, built by the Japanese company [ispace](https://www.ispace-inc.com/), wasn’t so fortunate, [crash-landing on the moon](https://www.space.com/space-exploration/launches-spacecraft/private-japanese-moon-lander-crashed-due-to-laser-errors-ispace-says) on June 5, 2025, after its laser range-finder failed. At the beginning of their missions, once the ships had climbed to near-Earth space, both of them relied on the Falcon 9’s 45-ft. upper stage to blast them away from the Earth and outward to the moon. After releasing the two lunar landers, that Falcon stage was supposed to fall harmlessly away, but instead it’s hung around.

## Why is the SpaceX rocket booster crashing into the moon? 

Typically, a Falcon 9’s second stage used for a deep space mission would enter a highly elliptical orbit of the Earth and ultimately be brought down by atmospheric drag for a fiery reentry. But for reasons not quite clear, this stage managed to avoid the atmosphere on its closer approaches to Earth, and persist in an orbit that brought it nearer and nearer the moon. 

On April 29, 2026 astronomer Bill Gray first predicted the second stage’s lunar crack-up and the precise date and time it would happen. Gray is the author of the [Project Pluto website, which ](https://www.projectpluto.com/25010d.htm#articles)relies on [telescope surveys by amateur astronomers](https://www.projectpluto.com/25010d.htm#tracking), and [software he wrote](https://www.projectpluto.com/find%5Forb.htm) to compute orbits of [objects the U.S. military doesn’t track](https://github.com/Bill-Gray/tles). Using this information, he was also able to forecast the [precise spot](https://www.projectpluto.com/25010d.htm#srp) the spent booster will hit the moon: near the Einstein Crater at the far western lunar horizon.

## What is the history of rockets crashing into the moon?


This is not the first time a spent rocket stage will strike the lunar surface. During the Apollo landings in the 1960s and 1970s, the empty third stage of the Saturn V rocket was deliberately targeted for a lunar impact, with the goal of setting off small moonquakes that could be detected by the seismographs left by earlier landing missions. 

Analyzing a temblor that resulted from a known object of a known mass striking the moon at a known speed can reveal valuable information about the structure of the lunar interior. During the near-disastrous Apollo 13 mission in 1970, commander Jim Lovell was informed of the successful impact while piloting his crippled spacecraft around the moon. “Well,” he said to the ground, “at least something worked on this flight.”

## Can you see the SpaceX lunar crash from Earth?

For the Falcon 9 upper stage, like the Saturn V third stage, the size and speed metrics are known. Like all liquid-fueled rockets, the stage is essentially hollow—basically a giant fuel tank with an engine at its business end. That means it carries much less mass than a solid object of the same size, like an asteroid. Still, it weighs nearly 45 tons and is moving at 5,400 miles per hour. With that size and speed, Gray calculates, its impact will release a blast equal to 15,000 sticks of dynamite—or three tons. That will produce a considerable debris plume.


“Let's say that rocks are blasted out at 100 meters a second (224 mph),” Gray writes on the Project Pluto site. “On the moon, if you are a rock shooting upward at that speed, you will rise for about one minute, reaching a height of three kilometers (1.9 mi.). You'll then plummet down for a minute and be returned to the moon.”

That raises the possibility of observing the flash and plume with telescopes and even binoculars from Earth. “The impact probably won't be visible from Earth,” Gray writes. “The ejecta plume _might_ be. Surprises are possible; it will probably be at least worth taking a look.”

Other researchers predict a much more dramatic event. In a [study](https://arxiv.org/abs/2607.23904) appearing on the pre-publication site _arxiv,_ computer models suggest an ejecta spike rising as high as 100 km (62 mi.) and spreading 183 km (114 mi.) laterally from the impact point.

The site of the impact will make a difference in visibility. Located so close to the western edge—or limb—of the moon, the bright plume resulting from impact might extend out into the black background of space, setting up a stark, easily discernible light-dark contrast.


Whatever the size of the blast, skygazers will certainly be monitoring it —and so will at least one spacecraft, NASA’s trusty [Lunar Reconnaissance Orbiter](https://science.nasa.gov/mission/lro/) (LRO). LRO has been circling the moon since 2009, and has returned albums of remarkable images—including overhead [shots of the six Apollo landing sites](https://lroc.im-ldi.com/image%5Ftags/Apollo). The satellite will not be in position to witness the Aug. 5 impact as it takes place, but it did pass over the site on July 29 and will be over it again on Aug. 12\. Those sequential passes will allow comparison shots and measurements of the crater the rocket stage produces. Gray predicts a pit more than 50 ft. across.

“After the impact we might have a little bit more knowledge of where it is,” LRO project scientist Brent Garry [told](https://www.space.com/astronomy/moon/a-spacex-rocket-will-crash-into-the-moon-next-week-and-scientists-arent-sure-what-to-expect) Space.com. “We can do some additional targeting about a week after the impact.” 

Analyzing the scale of the blast and the size of the scar it leaves can yield valuable scientific data about the gravitational and geological physics of the moon. It can also address questions of future astronaut safety—just how many dozens or hundreds of miles lunar explorers will have to be from an impact site to be safe.


For now, nothing can get in the way of the inevitable hit at the appointed time. Rocket scientists have been skeet-shooting the moon for 67 years now. With both the U.S. and China aiming for crewed lunar landings before 2030 and uncrewed cargo deliveries to support them—with who knows how many more spent rocket stages tumbling out of the skies over the moon—our punchdrunk nearest neighbor is in for more poundings.

A SpaceX Rocket Will Crash Into the Moon This Week. Here's Everything You Need to Know

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