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Dwarf planet

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Some worlds are very small.

Pluto and charon near true color.png
Pluto and charon near true color.png
They go around the Sun. They are round like a ball. They are not big planets. They are called dwarf planets.
PIA19562-Ceres-DwarfPlanet-Dawn-RC3-image19-20150506.jpg
PIA19562-Ceres-DwarfPlanet-Dawn-RC3-image19-20150506.jpg
Pluto is one of them. Do you like space?

42 words

Some worlds are small.

Pluto and charon near true color.png
Pluto and charon near true color.png
They go around the Sun. They are round like a ball. These are dwarf planets.

Pluto is a famous one.

PIA19562-Ceres-DwarfPlanet-Dawn-RC3-image19-20150506.jpg
PIA19562-Ceres-DwarfPlanet-Dawn-RC3-image19-20150506.jpg
It used to be called a big planet. Now it is in a new group.

Ceres is another dwarf planet. It is in a space with many rocks. It is much smaller than Earth.

Some dwarf planets have moons. A moon is a small world that circles a bigger one. Pluto has a moon named Charon.

These small worlds are very interesting to study. They help us learn about space.

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A dwarf planet is a small world. It orbits the Sun. It is big enough to be round like a ball.

Pluto and charon near true color.png
Pluto and charon near true color.png

But it is not a big planet. The eight main planets are much more powerful. They clear their path in space. They pull in or push away other objects. Dwarf planets do not do this. They share their space with many other things.

Pluto is a famous dwarf planet.

Pluto symbol (large orb, fixed width).svg
Pluto symbol (large orb, fixed width).svg
For a long time, people thought it was a major planet. In 2006, scientists made new rules. They put Pluto in this new group.

Other worlds are also dwarf planets. Ceres is one.

Ceres symbol (fixed width).svg
Ceres symbol (fixed width).svg
It sits in a belt of rocks between Mars and Jupiter. Eris is another one. It is very far from the Sun.

Some dwarf planets have moons.

Euler diagram of solar system bodies.svg
Euler diagram of solar system bodies.svg
A moon is a small object that circles a larger one. Seven of the largest dwarf planets have moons. This helps scientists study them. They can measure how heavy they are. This tells us what they are made of.

191 words

A dwarf planet is a special kind of world in our Solar System. These objects orbit the Sun directly. They are massive enough that their own gravity pulls them into a round shape. However, they are not big enough to be major planets. Major planets have orbital dominance, which means they clear their path of other objects. Dwarf planets do not do this. Instead, they share their space with many other small bodies.

Euler diagram of solar system bodies.svg
Euler diagram of solar system bodies.svg

How a dwarf planet works involves its size and gravity. To be round, an object must have enough mass for its insides to act like a soft material. This allows gravity to pull it into a sphere. But to be a major planet, it must be the boss of its orbit. It must pull in or push away nearby objects. Dwarf planets lack this power. They are large enough to look like worlds, but they cannot clear their neighborhood.

Density vs albedo of dwarf planets.png
Density vs albedo of dwarf planets.png

The history of these worlds changed many times. In 1801, astronomers found Ceres. For a long time, people thought it was a planet. By 1851, the number of known planets reached 23. Scientists then started calling smaller bodies asteroids. In 1930, Pluto was discovered. Most people thought there were nine major planets for almost 50 years. In 1978, the discovery of Pluto's moon, Charon, changed things. It helped scientists see that Pluto was much smaller than they first thought.

Pluto symbol (large orb, fixed width).svg
Pluto symbol (large orb, fixed width).svg

Today, we have specific rules for these objects. In August 2006, the International Astronomical Union (IAU) met to decide on new rules. They created the dwarf planet category. This moved Pluto, Ceres, and Eris into this new group. Astronomers agree on the nine largest candidates. These include Ceres, Pluto, Eris, Haumea, Makemake, Gonggong, Quaoar, Orcus, and Salacia. The tenth candidate is Sedna, but it is a borderline case.

Ceres symbol (fixed width).svg
Ceres symbol (fixed width).svg

Learning about dwarf planets helps us understand space better. Some dwarf planets, like Pluto and Ceres, have been visited by spacecraft. The Dawn mission visited Ceres. The New Horizons mission visited Pluto. These missions showed that dwarf planets can be geologically active. This means they can change over time. Seven of the largest dwarf planets also have moons. Having a moon helps scientists measure a dwarf planet's mass. This tells them how dense the world is.

PIA19562-Ceres-DwarfPlanet-Dawn-RC3-image19-20150506.jpg
PIA19562-Ceres-DwarfPlanet-Dawn-RC3-image19-20150506.jpg

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A dwarf planet is a specific type of celestial body located within our Solar System. These objects orbit the Sun directly rather than orbiting another planet. To be classified as a dwarf planet, an object must possess enough mass to be gravitationally rounded. This means its own gravity pulls it into a sphere. However, a dwarf planet lacks orbital dominance. It has not cleared its neighborhood of other objects, such as planetesimals, along its orbital path. This distinction separates them from the eight classical planets, which exert much stronger gravitational control over their surroundings.

Euler diagram of solar system bodies.svg
Euler diagram of solar system bodies.svg

The physical nature of a dwarf planet is defined by the relationship between mass and gravity. When an object reaches a certain mass, its internal pressure becomes high enough. This causes the mantle to become plastic, which is a soft, flowing state. Under this weight, gravity pulls the material into a round shape. This process allows for planetary geology, meaning the surface can change over time. Even though they lack orbital dominance, many dwarf planets are geologically active. Spacecraft missions have confirmed this activity on worlds like Pluto and Ceres.

Density vs albedo of dwarf planets.png
Density vs albedo of dwarf planets.png

Astronomers generally agree on the nine largest candidates for dwarf planet status. These objects are listed in decreasing order of diameter: Ceres, Pluto, Eris, Haumea, Makemake, Gonggong, Quaoar, Orcus, and Salacia. There is significant uncertainty regarding the tenth candidate, Sedna, which is considered a borderline case. Understanding these worlds often requires studying their moons. Seven of these ten candidates have at least one known moon. Measuring a moon's orbit allows scientists to calculate the dwarf planet's mass. From there, they can estimate the object's density to build geophysical models.

Trans-Neptunians Size Albedo Color.svg
Trans-Neptunians Size Albedo Color.svg

The history of planetary classification has seen many shifts. In 1801, the discovery of Ceres began a period where many small bodies were called planets. By 1851, the number of known planets had reached 23. Astronomers eventually began using the term "asteroid" to distinguish smaller bodies from major planets. Pluto was discovered in 1930 and was considered a major planet for nearly 50 years. However, the 1978 discovery of Pluto's moon, Charon, allowed scientists to measure its mass accurately. They found Pluto was only about one-twentieth the mass of Mercury. This revealed that Pluto was much smaller than previously estimated.

Pluto symbol (large orb, fixed width).svg
Pluto symbol (large orb, fixed width).svg

In the 1990s, new discoveries in the Kuiper belt changed the debate. Astronomers found many objects sharing orbital characteristics with Pluto. These objects are sometimes called plutinos. This led to a realization that either these new bodies were planets, or Pluto needed to be reclassified. In January 2005, the discovery of Eris, which was thought to be larger than Pluto, intensified the discussion. This prompted the International Astronomical Union (IAU) to hold a General Assembly in August 2006. The goal was to establish a formal definition for planets and other bodies.

The 2006 IAU decision created the dwarf planet category. Two astronomers, Julio Ángel Fernández and Gonzalo Tancredi, proposed an intermediate category. They suggested that objects should be round but must also clear their orbits to be planets. This proposal led to the removal of Pluto, Ceres, and Eris from the list of major planets. The decision was not without controversy. Some scientists, like Mike Brown, agreed with the change. Others, such as Alan Stern, rejected the definition. Stern argued that dwarf planets should be considered a subtype of planet rather than something separate.

Ceres symbol (fixed width).svg
Ceres symbol (fixed width).svg

Today, dwarf planets provide vital clues about the structure of the Solar System. Missions like Dawn, which visited Ceres, and New Horizons, which visited Pluto, have provided incredible data. These missions showed that even small, distant worlds can be complex and active. Some scientists use different terms to describe these bodies, such as planetoids or quasi-planets. In the trans-Neptunian region, the term "plutoid" is used for dwarf planets located beyond Neptune. By studying the mass, density, and orbits of these objects, astronomers continue to refine our understanding of how planetary systems form and evolve.

PIA19562-Ceres-DwarfPlanet-Dawn-RC3-image19-20150506.jpg
PIA19562-Ceres-DwarfPlanet-Dawn-RC3-image19-20150506.jpg

678 words
🖼️ Images & Media (19)
File:Pluto and charon near true color.png
Pluto and charon near true color.png
File:Vesta in natural color (cropped).jpg
Vesta in natural color (cropped).jpg
File:Euler diagram of solar system bodies.svg
Euler diagram of solar system bodies.svg
File:Trans-Neptunians_Size_Albedo_Color.svg
Trans-Neptunians_Size_Albedo_Color.svg
File:Density vs albedo of dwarf planets.png
Density vs albedo of dwarf planets.png
File:Ceres symbol (fixed width).svg
Ceres symbol (fixed width).svg
File:Pluto monogram (fixed width).svg
Pluto monogram (fixed width).svg
File:Quaoar symbol (fixed width).svg
Quaoar symbol (fixed width).svg
File:Sedna symbol (fixed width).svg
Sedna symbol (fixed width).svg
File:Orcus symbol (fixed width).svg
Orcus symbol (fixed width).svg
File:Haumea symbol (fixed width).svg
Haumea symbol (fixed width).svg
File:Eris symbol (fixed width).svg
Eris symbol (fixed width).svg

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