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Nebula

space Maturity 9-11

A nebula is a big cloud in space.

Trifid Nebula by Deddy Dayag.jpg
Trifid Nebula by Deddy Dayag.jpg
It is made of dust and gas. These clouds help make new stars. They can also come from old stars. Space looks very pretty with them.
Carina Nebula by ESO.jpg
Carina Nebula by ESO.jpg
Do you want to see them?

49 words

A nebula is a big cloud in space.

Trifid Nebula by Deddy Dayag.jpg
Trifid Nebula by Deddy Dayag.jpg
It is made of dust and gas. These clouds help make new stars. Gas and dust clump together to form stars.
Carina Nebula by ESO.jpg
Carina Nebula by ESO.jpg
Some clouds come from old stars. A star can throw off its outer layers. This makes a new kind of cloud. Some clouds are made when a star explodes. These clouds can be very large. They can be much bigger than our world. Space looks very pretty with them.

87 words

A nebula is a giant cloud in space.

Trifid Nebula by Deddy Dayag.jpg
Trifid Nebula by Deddy Dayag.jpg
These clouds are made of gas and cosmic dust. They can be very big. Some are hundreds of light-years wide.

Nebulae are often places where new stars are born. In these areas, gas and dust clump together. These clumps get denser and denser. Eventually, they become heavy enough to form stars. The leftover bits can make planets.

Nursery of New Stars - GPN-2000-000972.jpg
Nursery of New Stars - GPN-2000-000972.jpg

Some nebulae come from old stars. A medium star can shed its outer layers. This makes a planetary nebula. The star's core stays behind as a white dwarf.

A hazy nebula.jpg
A hazy nebula.jpg
Other nebulae come from a star that explodes. This is called a supernova. The explosion throws gas out into space. This creates a supernova remnant.
Crab Nebula.jpg
Crab Nebula.jpg
The Crab Nebula is a famous example of this.

There are also diffuse nebulae. These are large clouds with no clear edges. Some glow because of hot stars. Others are dark clouds that block light. Even dark nebulae give off infrared light.

176 words

A nebula is a giant, glowing cloud in space. These clouds are part of the interstellar medium, which is the stuff between stars. Most nebulae are made of gas and cosmic dust. This gas is often hydrogen, which can be ionized, neutral, or molecular.

Trifid Nebula by Deddy Dayag.jpg
Trifid Nebula by Deddy Dayag.jpg
Some nebulae are huge. They can be hundreds of light-years across. Even though they are large, they are not very dense. A cloud the size of Earth would only weigh a few kilograms. This is because they are much thinner than even the best vacuum on Earth.
Carina Nebula by ESO.jpg
Carina Nebula by ESO.jpg

Nebulae often act as nurseries for new stars. In these regions, gas and dust clump together into dense spots. These spots pull in more matter from the area around them. Eventually, the clumps become dense enough to form stars. The extra material left over can become planets or other objects.

Nursery of New Stars - GPN-2000-000972.jpg
Nursery of New Stars - GPN-2000-000972.jpg
Some nebulae also come from the end of a star's life. A medium star might shed its outer layers to create a planetary nebula. A very large star might explode in a supernova. This explosion throws gas outward to form a supernova remnant.
Crab Nebula.jpg
Crab Nebula.jpg

People have studied these clouds for a very long time. Around 150 AD, Ptolemy wrote about five stars that looked blurry. In 964, the astronomer al-Sufi described a "little cloud" in the sky. Later, in 1610, Nicolas-Claude Fabri de Peiresc used a telescope to see the Orion Nebula. In 1781, Charles Messier made a famous list of 103 objects. He was actually looking for comets! William and Caroline Herschel later found thousands of new nebulae and star clusters.

Hs-2009-25-e-full.jpg
Hs-2009-25-e-full.jpg

In the early 20th century, scientists learned much more about what nebulae really are. Vesto Slipher and Edwin Hubble studied the light from these objects. Hubble discovered that most nebulae are linked to stars. He found that starlight makes them glow. He also saw that some nebulae have different types of light spectra. This helped him group them by how they look. Before this, people thought some nebulae were actually whole galaxies far away.

Trifid Nebula by Deddy Dayag.jpg
Trifid Nebula by Deddy Dayag.jpg
Hubble showed that many nebulae are just clouds near our own Milky Way.

There are four main groups of nebulae today. Diffuse nebulae are large clouds without clear edges. These include emission nebulae, which glow from gas, and reflection nebulae, which reflect starlight. Dark nebulae are thick clouds that block light from behind them.

A hazy nebula.jpg
A hazy nebula.jpg
Then there are planetary nebulae, which come from dying medium stars. Finally, there are supernova remnants, like the Crab Nebula. These are created when a massive star explodes. These different types show us how stars are born and how they die.

457 words

A nebula is a distinct, luminescent part of the interstellar medium. This medium is the substance that exists in the space between stars. Nebulae can consist of cosmic dust and hydrogen in various states: ionized, neutral, or molecular. These vast structures are often star-forming regions where new celestial bodies begin their lives.

Trifid Nebula by Deddy Dayag.jpg
Trifid Nebula by Deddy Dayag.jpg
While they appear massive, they are incredibly thin. Most nebulae are hundreds of light-years in diameter. However, they are far less dense than any vacuum created on Earth. A nebular cloud with the volume of Earth would have a mass of only a few kilograms.

The process of star formation within a nebula is a complex chain of events. It often begins in giant molecular clouds, which are the coldest and densest phases of interstellar gas. These clouds can form when more diffuse gas cools and condenses. Inside these clouds, gas, dust, and other materials begin to clump together. These clumps create denser regions that attract even more surrounding matter. Eventually, these regions become dense enough to form stars. The leftover material from this process is thought to form planets and other objects in a planetary system.

Nursery of New Stars - GPN-2000-000972.jpg
Nursery of New Stars - GPN-2000-000972.jpg

Nebulae can be categorized into four major groups based on their nature. The first group includes diffuse nebulae, which are extended clouds with no well-defined boundaries. These are further divided into emission nebulae, reflection nebulae, and dark nebulae. Emission nebulae, also called H II regions, consist of ionized hydrogen that emits light. Reflection nebulae do not emit much light but instead reflect the light of nearby stars. Dark nebulae are opaque clouds that block the light of objects behind them.

Carina Nebula by ESO.jpg
Carina Nebula by ESO.jpg
The second group is planetary nebulae, which are the remnants of mid-mass stars. The third group consists of supernova remnants, created by the death of massive stars. Finally, there are protoplanetary nebulae.

Planetary nebulae represent the final stage of stellar evolution for stars between 0.5 and 8 solar masses. As these stars reach the end of their lives, they become red giants. They eventually lose their outer layers through strong stellar winds and atmospheric pulsations. This expelled material forms a gaseous shell. The remaining hot core becomes a white dwarf. The ultraviolet radiation from this white dwarf ionizes the surrounding gas. This makes the shell glow, creating an emission nebula. Our own Sun is expected to produce a planetary nebula about 12 billion years after it forms.

A hazy nebula.jpg
A hazy nebula.jpg

Supernova remnants are formed through a much more violent process. This occurs when a high-mass star reaches the end of its life and nuclear fusion stops. The star collapses, and the falling gas either rebounds or becomes so hot that it expands outward. This causes a massive explosion known as a supernova. The expanding shell of gas becomes a supernova remnant. A famous example is the Crab Nebula, created by the supernova event SN 1054. The core of the star remains as a compact object, such as a neutron star.

Crab Nebula.jpg
Crab Nebula.jpg

The history of observing nebulae spans many centuries and cultures. Around 150 AD, Ptolemy recorded five stars that appeared nebulous in his work, the Almagest. In 964, the Persian astronomer Abd al-Rahman al-Sufi described a "little cloud" in the Andromeda region. By 1610, Nicolas-Claude Fabri de Peiresc used a telescope to see the Orion Nebula. In 1781, Charles Messier compiled a catalog of 103 objects, which he called nebulae. He was actually trying to avoid mistaking comets for other objects. Later, William and Caroline Herschel significantly increased our knowledge by cataloging thousands of new nebulae and clusters.

In the early 20th century, our understanding of these objects changed fundamentally. Previously, the term "nebula" was used for any diffused object, including entire galaxies. Vesto Slipher and Edwin Hubble helped clarify this distinction. Hubble discovered that most nebulae are associated with stars and are illuminated by starlight. He used light spectra to categorize them. He found that emission spectrum nebulae are usually associated with very hot stars. Conversely, nebulae with continuous spectra appear with cooler stars. This research proved that many "spiral nebulae" were actually distant galaxies far beyond the Milky Way.

696 words
🖼️ Images & Media (6)
File:Trifid Nebula by Deddy Dayag.jpg
Trifid Nebula by Deddy Dayag.jpg
File:Hs-2009-25-e-full.jpg
Hs-2009-25-e-full.jpg
File:Nursery of New Stars - GPN-2000-000972.jpg
Nursery of New Stars - GPN-2000-000972.jpg
File:Carina Nebula by ESO.jpg
Carina Nebula by ESO.jpg
File:A hazy nebula.jpg
A hazy nebula.jpg
File:Crab Nebula.jpg
Crab Nebula.jpg
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