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486958 Arrokoth

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Arrokoth is a small ice rock.

Arrokoth shape model - Porter 2024.png
Arrokoth shape model - Porter 2024.png
It looks like a snowman. It has two parts stuck together. It is very far away. This helps us learn about space.
NASA-UltimaThule-Formation-Diagram-20190318.jpg
NASA-UltimaThule-Formation-Diagram-20190318.jpg
Do you like looking at the stars?

42 words

Arrokoth is a small, icy rock.

Arrokoth shape model - Porter 2024.png
Arrokoth shape model - Porter 2024.png
It looks like a snowman. It has two parts joined by a thin neck.

These two parts once moved on their own. They gently bumped into each other. Now they stay stuck together.

The surface of the rock is red. This color comes from special bits of dust. It has very few holes from space rocks.

A space probe flew past it in 2019.

NASA-UltimaThule-Formation-Diagram-20190318.jpg
NASA-UltimaThule-Formation-Diagram-20190318.jpg
This helped us see it up close. Arrokoth is a very old part of our space.

93 words

Arrokoth is a small, icy object in the Kuiper belt.

Arrokoth shape model - Porter 2024.png
Arrokoth shape model - Porter 2024.png
This belt is a ring of objects far past Neptune. Arrokoth looks like a snowman. It is a contact binary. This means it is made of two parts joined together. The parts are named Wenu and Weeyo.
NASA-UltimaThule-Formation-Diagram-20190318.jpg
NASA-UltimaThule-Formation-Diagram-20190318.jpg
Scientists think these two parts once moved near each other. They likely merged in a very slow collision.

The surface of Arrokoth is very red. This color comes from tholins. Tholins are organic compounds made by cosmic rays and solar radiation. The surface is also very smooth. It has very few craters. A crater is a hole made by a space rock hitting a surface. Because objects in the Kuiper belt move slowly, they do not hit each other hard. This helps keep the surface looking the same as when it formed.

NASA-UltimaThule-Geology-NewHorizons-20190318.jpg
NASA-UltimaThule-Geology-NewHorizons-20190318.jpg
In 2019, the New Horizons probe flew past it. This was the farthest object in our solar system visited by a spacecraft. The name Arrokoth comes from the Powhatan people. It is a word that may have meant sky or cloud.

188 words

Arrokoth is a small, icy object found in the Kuiper belt.

Arrokoth shape model - Porter 2024.png
Arrokoth shape model - Porter 2024.png
This belt is a ring of many objects far past Neptune and Pluto. Arrokoth is special because it is a contact binary. This means it is made of two separate parts joined together. The two parts look like a snowman. They are connected by a narrow neck of material.
NASA-UltimaThule-Formation-Diagram-20190318.jpg
NASA-UltimaThule-Formation-Diagram-20190318.jpg
Scientists study it to learn how things in space first formed.

The object has two parts named Wenu and Weeyo. Wenu is the larger lobe and is slightly flattened. Weeyo is the smaller lobe and is shaped more like a sphere. These two parts likely used to be separate objects called planetesimals. They probably moved near each other and merged in a very slow collision. This gentle merger left them in a near-parallel alignment. The two parts are now stuck together by their own gravity.

Arrokoth shape model faceview - Porter 2024.png
Arrokoth shape model faceview - Porter 2024.png

Astronomers first found Arrokoth on June 26, 2014. Marc Buie and the New Horizons Search Team used the Hubble Space Telescope for this discovery. Before it had a permanent name, people called it "Ultima Thule." NASA later gave it the official name Arrokoth in November 2019. This name comes from the Powhatan people of the eastern United States. It is a word that may have meant sky or cloud.

Arrokoth is about 35 kilometers long at its widest part. The New Horizons spacecraft flew past it on January 1, 2019. This was the farthest object in our solar system ever visited by a probe. The surface is very red due to things called tholins. Tholins are organic compounds made by cosmic rays and solar radiation. The surface is also very smooth with very few craters. This is because objects in the Kuiper belt move quite slowly.

2014 MU69 Discovery Images Animated.gif
2014 MU69 Discovery Images Animated.gif

You can think of Arrokoth as a time capsule from the early solar system. Its surface has changed very little since it formed 4.5 billion years ago. Because it has so few craters, it shows us what the early space rocks looked like. The red color is a sign of the chemicals left behind from long ago. Studying Arrokoth helps us understand the building blocks of our entire solar system. It is a tiny piece of history floating in the dark.

NASA-UltimaThule-Geology-NewHorizons-20190318.jpg
NASA-UltimaThule-Geology-NewHorizons-20190318.jpg

396 words

Arrokoth is a small, icy object located in the Kuiper belt.

Arrokoth shape model - Porter 2024.png
Arrokoth shape model - Porter 2024.png
This region is a vast ring of icy bodies orbiting the Sun beyond Neptune and Pluto. Arrokoth is a contact binary, which means it consists of two distinct lobes joined together. These lobes are connected by a narrow neck of material called a waist. This unique shape makes it look somewhat like a snowman. Because it has changed so little over billions of years, it serves as a primitive window into the early solar system.

The formation of Arrokoth likely involved a very gentle process. Scientists believe the two lobes were once separate planetesimals. A planetesimal is a small, solid object that helped build planets long ago. These two bodies likely formed from the same cloud of icy particles. They probably moved toward each other and merged in a slow, low-speed collision.

NASA-UltimaThule-Formation-Diagram-20190318.jpg
NASA-UltimaThule-Formation-Diagram-20190318.jpg
This slow merger left the lobes in a near-parallel alignment. Their long axes are almost aligned with each other and the object's rotational axis. This alignment suggests they were mutually locked by tidal forces before they finally touched.

Arrokoth is composed of two specific parts named Wenu and Weeyo. Wenu is the larger lobe, also known as Wenu Lobus. It has a slightly flattened shape and measures about 35 kilometers across its longest axis. Weeyo is the smaller lobe, or Weeyo Lobus, and is roughly spherical. Weeyo measures about 26 kilometers across its longest axis. The volume of Wenu is nearly exactly twice that of Weeyo.

Arrokoth shape model faceview - Porter 2024.png
Arrokoth shape model faceview - Porter 2024.png
The entire object is about 35 kilometers long and roughly 21 kilometers thick. A bright band of material called Akasa Linea encircles the narrow neck.

Astronomers discovered Arrokoth on June 26, 2014. Marc Buie and the New Horizons Search Team found it using the Hubble Space Telescope. Before it had a permanent name, it was nicknamed "Ultima Thule." This name referred to a distant place beyond the known world in ancient literature. However, the name faced criticism due to its historical associations with 19th-century racist ideologies. Consequently, the International Astronomical Union officially named the object Arrokoth in November 2019. The name comes from the Powhatan people of the Tidewater region. In the Powhatan language, the word likely meant "sky" or "cloud."

On January 1, 2019, the NASA spacecraft New Horizons flew past Arrokoth. This mission made Arrokoth the farthest object in the solar system ever visited by a spacecraft. The surface of the object is notably red. This color comes from tholins, which are complex organic compounds. These tholins are produced through photolysis. This happens when cosmic rays and ultraviolet solar radiation hit simple organic compounds.

2014 MU69 Discovery Images Animated.gif
2014 MU69 Discovery Images Animated.gif
The spectrum of Arrokoth shows the presence of methanol and sulfur-rich organic compounds. Interestingly, there was no evidence of water ice found on the surface.

The surface of Arrokoth is very smooth and has very few craters. This suggests that impact events in the Kuiper belt are uncommon. Because objects in this region move at slow orbital speeds, impact speeds are also low. Typical impact speeds are expected to be around 1 kilometer per second.

NASA-UltimaThule-Geology-NewHorizons-20190318.jpg
NASA-UltimaThule-Geology-NewHorizons-20190318.jpg
Because of this low impact rate, the surface has remained preserved for 4.5 billion years. Scientists have identified small pits on the surface, measuring about 100 to 200 meters. The exact cause of these pits is still unknown. They might be caused by impacts, the collapse of material, or the escape of gases from the interior.

Studying Arrokoth helps scientists understand the broader history of our solar system. It acts as a time capsule of the materials that existed during the solar system's birth. The presence of certain chemicals, like methanol and acetylene, helps researchers track how volatiles behave in deep space. By looking at the way these small pieces merged, we learn how larger planets might have grown. Arrokoth provides a direct link to the primitive building blocks of the planetary system we live in today.

671 words
🖼️ Images & Media (10)
File:2014 MU69 Naming Ceremony (NHQ201911120013).jpg
2014 MU69 Naming Ceremony (NHQ201911120013).jpg
File:Arrokoth shape model faceview - Porter 2024.png
Arrokoth shape model faceview - Porter 2024.png
File:Arrokoth shape model - Porter 2024.png
Arrokoth shape model - Porter 2024.png
File:NASA-UltimaThule-Geology-NewHorizons-20190318.jpg
NASA-UltimaThule-Geology-NewHorizons-20190318.jpg
File:NASA-UltimaThule-Formation-Diagram-20190318.jpg
NASA-UltimaThule-Formation-Diagram-20190318.jpg
File:2014 MU69 Discovery Images Animated.gif
2014 MU69 Discovery Images Animated.gif
File:MU69 occultation 2018August4.png
MU69 occultation 2018August4.png
File:Ultima Thule approach video1.gif
Ultima Thule approach video1.gif
New Horizons Approach to Arrokoth.ogg
File:Ultima Thule Departure movie.gif
Ultima Thule Departure movie.gif
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