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concentrating denser materials nearer the Sun

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What is the difference in between nebula and solar nebula?

A solar nebula is related to the formation of our Solar System, any other nebula is just a nebula.


In the formation of our solar system nearly all the mass of the solar nebula became?

In the formation of our solar system, nearly all the mass of the solar nebula became the Sun, which accounts for about 99.86% of the solar system's total mass. The remaining material formed the planets, moons, asteroids, and comets. This process involved the gravitational collapse of the nebula, leading to the Sun's formation at the center, while the residual matter coalesced into the various celestial bodies orbiting it.


What are the major influences in the formation of the solar system?

The formation of the solar system was primarily influenced by the gravitational collapse of a giant molecular cloud, known as the solar nebula, approximately 4.6 billion years ago. As the nebula collapsed, it spun and flattened into a disk, where the Sun formed at the center while the remaining material coalesced into planets, moons, asteroids, and comets. Key factors include the conservation of angular momentum, temperature gradients within the disk, and the processes of accretion and differentiation. Additionally, interactions with nearby stars and supernovae may have played a role in triggering the collapse of the solar nebula.


Which aspect of the nebula hypothesis accounts for the planets orbiting in the same direction and plane?

The conservation of angular momentum during the collapse of the primordial solar nebula is the aspect that accounts for the planets orbiting in the same direction and plane. As the nebula contracted and flattened into a spinning disk, this momentum caused the planets to form in a singular direction and plane, similar to the rotation of the original nebula.


How do we know that the sun was formed from a supernova?

Scientists believe that the sun was formed from a gas and dust cloud called the solar nebula, which was part of a giant molecular cloud. The supernova theory suggests that shockwaves from a nearby supernova triggered the collapse of the solar nebula, leading to the formation of the sun and the solar system. Isotopic analysis of meteorites and the sun's composition support this theory.

Related Questions

The solar nebula was 98?

The solar nebula was a rotating cloud of gas and dust that formed our solar system about 4.6 billion years ago. It consisted mostly of hydrogen and helium, with traces of other elements. Over time, gravity caused the nebula to collapse and form the Sun and the planets.


What causes a solar nebula to initially begin to form a solar?

A solar nebula begins to form when a cloud of gas and dust in space collapses under its own gravity. This collapse can be triggered by a nearby supernova explosion, a shockwave from a passing star, or other disturbances in the interstellar medium.


What type of forces cuased the solar nebula to contract?

The force of gravity caused the solar nebula to contract. As the nebula collapsed under its own gravity, it began to spin and flatten into a disk shape, eventually forming the Sun and the planets. Additionally, the heat and pressure generated by the gravitational contraction contributed to the collapse of the nebula.


Is the solar nebular made up of mostly carbon and iron?

No, the solar nebula was primarily composed of hydrogen and helium, with trace amounts of other elements like carbon and iron. The solar system formed from the gravitational collapse of this nebula, leading to the formation of the Sun and planets.


Is the solar system formed from nubela or gas?

The solar system formed from the gravitational collapse of a cloud of interstellar gas.


What happened when the solar nebula began to collapse?

As the solar nebula began to collapse, gravity caused it to shrink and spin faster. This led to the formation of a protostar at the center, while the outer material flattened into a spinning disk. Within this disk, dust and gas started to clump together and eventually formed planetesimals, which further accreted to form planets.


What is the difference in between nebula and solar nebula?

A solar nebula is related to the formation of our Solar System, any other nebula is just a nebula.


In the formation of our solar system nearly all the mass of the solar nebula became?

In the formation of our solar system, nearly all the mass of the solar nebula became the Sun, which accounts for about 99.86% of the solar system's total mass. The remaining material formed the planets, moons, asteroids, and comets. This process involved the gravitational collapse of the nebula, leading to the Sun's formation at the center, while the residual matter coalesced into the various celestial bodies orbiting it.


How did pressure and gravity become unbalanced in the solar nebula?

Pressure and gravitymay have become unbalanced in thesolar nebula because of an externalforce such as a collision of the solarnebula with another nebula or from anearby exploding star. This type offorce, was strong enough to overcomethe pressure of the nebula and triggerits collapse.


What is the theoretical source of the nebula from which your solar system was formed?

The theoretical source of the nebula from which our solar system was formed is a solar nebula, a rotating cloud of gas and dust. This nebula likely originated from the remnants of older stars that exploded in supernovae, enriching the surrounding interstellar medium with heavy elements. Over time, gravitational forces caused the nebula to collapse, leading to the formation of the Sun and the surrounding planets through a process called accretion. This event is theorized to have occurred about 4.6 billion years ago.


How does a nebula developes into a solar system?

A nebula develops into a solar system through the process of gravitational collapse. As the nebula contracts due to gravity, it starts to spin and flatten into a spinning disk. Within this disk, the material begins to clump together and form planetesimals, which eventually coalesce to form planets, moons, and other objects in the solar system.


How was your solar system produced?

The solar system was produced by solar nebula. The nebula was disrupted by an unknow substance in the air.