Nebulae are primarily composed of hydrogen (about 70% of their mass) and helium (around 28%), with trace amounts of heavier elements such as oxygen, carbon, nitrogen, and others. These elements exist in various forms, including atoms, ions, and molecules. The specific composition can vary depending on the type of nebula—such as emission, reflection, or planetary nebulae—reflecting different stages of stellar evolution and the processes at play in the interstellar medium.
Some examples of different nebulae include the Orion Nebula, the Crab Nebula, the Eagle Nebula, and the Helix Nebula. These nebulae vary in size, shape, and composition, but they are all vast clouds of dust, gas, and plasma in space.
Gas giants like Jupiter and Saturn were formed from the light gases of the outer solar nebula. Their composition is primarily hydrogen and helium, with traces of other gases.
Yes, an M-class planet can survive in a nebula, especially if it orbits a small star. The planet's ability to maintain its atmosphere and conditions for habitability would depend on factors such as the density and composition of the nebula, the intensity of radiation from the star, and the planet's distance from the star. If conditions are favorable, the nebula might even provide some protection from cosmic radiation, allowing the planet to thrive.
A large amount of dust and gas in space is commonly referred to as a "nebula." Nebulae are often the regions where stars are born or where remnants of dead stars exist. They can vary in size and composition, and some are visible from Earth, such as the Orion Nebula.
Yes, a nebula is a cloud of gas and dust in space. Nebulae are often birthplaces for stars and can have various shapes and colors depending on their composition and the processes happening within them.
clouds of dust and gas
The composition of the Solar Nebula, with materials such as gases, dust, and ice, largely determined the characteristics of the planets. These materials and their location within the nebula influenced factors like temperature, pressure, and density, which in turn affected the formation and composition of the planets.
Some examples of different nebulae include the Orion Nebula, the Crab Nebula, the Eagle Nebula, and the Helix Nebula. These nebulae vary in size, shape, and composition, but they are all vast clouds of dust, gas, and plasma in space.
they both have the same element. which is hydrogen and helium.
a substance
Silver is an element, so its chemical composition is Ag (the symbol for silver).
To find the mass of an element in a compound, you can use the formula: mass of element (mass of compound) x (percent composition of element in compound). This formula helps you calculate the mass of a specific element within a compound based on its percentage composition.
To find the percent composition of each element in the compound, you first calculate the molar mass of Be (9.01 g/mol) and I (126.90 g/mol). Then, calculate the percent composition of each element by dividing the mass of the element by the total molar mass of the compound and multiplying by 100. The percent composition of Be is 5.14% and the percent composition of I is 94.86%.
Sulphur is a pure element.
Oxygen.
The mass percent composition of an element in a compound is the percentage of the total mass of the compound that comes from that specific element. It is calculated by dividing the mass of the element by the total mass of the compound and multiplying by 100.
Tin is a chemical element with the symbol Sn and atomic number 50. Its chemical composition is typically just the element tin itself.