Ariel is a moon. It goes around Uranus. It is made of ice and rock. It has big cracks on it. The moon might have water under the ice. 
Ariel is a moon of Uranus. 
Ariel has many cracks and deep canyons. These marks might come from water. Water may hide under the ice.
This water might push up from below. As it pushes, it splits the ice. Then the water freezes into new ice.
Ariel is very bright. It reflects a lot of light. It is the brightest moon around Uranus.
A space probe saw Ariel in 1986. 
Ariel is a large moon of Uranus. 

The moon is made of ice and rock. It likely has a rocky core in the middle. This core is surrounded by a layer of ice. Scientists think a hidden ocean might exist under the ice. This ocean could be liquid water. Ariel has many deep cracks and canyons on its surface. These marks might be caused by water from below. As water pushes up, it splits the icy crust. The water then freezes to make new ice.
A space probe named Voyager 2 flew past Ariel in 1986. It took many pictures of the moon. 
Ariel is the fourth-largest moon of the planet Uranus. 

Ariel has a very interesting way it works inside. It likely has a rocky core at its center. This core is surrounded by a thick mantle made of ice. Some scientists think there might be a liquid ocean hidden under the ice. They believe liquid water could be pushed up from below. As this water reaches the surface, it freezes into a new icy crust. This process might be what creates the many deep grooves and canyons seen on the surface.
We first learned about Ariel on 24 October 1851. A man named William Lassell discovered the moon on that day. He also discovered another moon called Umbriel at the same time. 
Ariel orbits Uranus at a distance of about 190,000 km. 
Most of what we know comes from a single trip by a space probe. The Voyager 2 probe flew past Uranus in 1986. During this flyby, it imaged about 35% of Ariel's surface. Even though it was a long time ago, those pictures gave us huge amounts of data. We can see many craters and ridges in those images. While there are no current plans to visit Ariel again, scientists have proposed sending new probes. They hope to learn more about the hidden ocean and the moon's rocky heart.
Ariel is the fourth-largest moon of the planet Uranus. 

Ariel has a complex internal structure. It is likely a differentiated body, meaning its materials have separated into layers. It probably features a rocky core surrounded by an icy mantle. The core's radius is about 372 km. This core likely makes up around 56% of the moon's total mass. At the very center, the pressure reaches about 0.3 GPa. Some researchers believe a subsurface ocean might exist beneath the ice. This liquid ocean could be maintained by tidal heating or radiogenic heat.
The surface of Ariel is very active and varied. It features extensive cratered terrain. This terrain is cross-cut by many scarps, canyons, grabens, and ridges. 
Ariel's orbit and rotation create unique conditions. It orbits Uranus at a distance of about 190,000 km. Its orbital period is roughly 2.5 Earth days. This period matches its rotational period, causing a state called tidal lock. This means one side always faces Uranus. 
History shows how we discovered this moon. William Lassell discovered Ariel on 24 October 1851. He also discovered the moon Umbriel on that same day. The name Ariel comes from literature. It refers to a character in Shakespeare's *The Tempest*. It also refers to a character in Alexander Pope's *The Rape of the Lock*. John Herschel suggested these names in 1852. Most of our detailed data comes from a single event. The Voyager 2 space probe performed a flyby in 1986. This mission imaged about 35% of the moon's surface.
Ariel is the most reflective of the Uranian moons. Its geometric albedo is 53%. This means it reflects a large amount of light. The surface is generally a neutral color. However, the trailing hemisphere appears about 2% redder than the leading side. 
Chemical studies reveal much about Ariel's makeup. Infrared spectroscopy has identified water ice, carbon dioxide, and ammonia. The carbon dioxide is mostly on the trailing hemisphere. The presence of ammonia is important for scientists. Ammonia can lower the freezing point of water. This makes a subsurface ocean more likely to remain liquid. These chemicals are easily broken down in space. Their presence suggests something is replenishing them from the interior. This connects the moon's chemistry directly to its possible geological activity.
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