The main forces acting on a nebula are gravity, which causes the nebula to collapse and form stars, and radiation pressure, which can push material away from the forming stars. Additionally, magnetic fields can play a role in shaping the structure and dynamics of a nebula.
Yes, forces such as gravity still work in space. Objects in space are subject to gravitational forces from other objects, such as planets and stars. Additionally, forces can be generated by propulsion systems to move spacecraft and satellites in space.
No, stars do not float in space. They exist in space due to their immense gravitational pull that keeps them in place. Stars are constantly in motion within their respective galaxies due to gravitational forces and other factors.
Gravity hold the moon in orbit
Gravity. Every object exerts a gravitational pull on others. If two particles come into proximity in the near vacuum of space they will be attracted to each other, as they are free from the influence of stronger external forces.
Forces act on all objects with mass. This includes everyday objects like books, cars, and furniture, as well as celestial objects like planets and stars. Forces can cause objects to move, accelerate, deform, or rotate.
The main forces acting on a nebula are gravity, which causes the nebula to collapse and form stars, and radiation pressure, which can push material away from the forming stars. Additionally, magnetic fields can play a role in shaping the structure and dynamics of a nebula.
Electrical forces act between separated charges.
Long range forces are forces that act over a long distance, like electric forces, magnetic forces, or gravity.Long range forces are forces that act over a long distance, like electric forces, magnetic forces, or gravity.Long range forces are forces that act over a long distance, like electric forces, magnetic forces, or gravity.Long range forces are forces that act over a long distance, like electric forces, magnetic forces, or gravity.
Two forces that act on particles inside a nebula are gravity, which pulls particles together to form new stars and solar systems, and radiation pressure, which pushes particles apart due to the energy emitted by hot stars within the nebula. These forces must be balanced for a nebula to maintain its structure and not collapse or dissipate.
The three forces that act on an object are gravity, friction, and applied force.
The two types of push forces are tension and compression. Tension forces act to pull an object outward, while compression forces act to push an object inward.
gravitation
Tension and compression are the two forces that act upon a bridge.
Gravity and inertia are the two forces that act on all matter in the universe. If there were only two stars in the universe and they were standing still, the force of gravity would cause them to eventually fall together and collide. But there are hundreds of billions of stars in the Milky Way alone, and billions of other galaxies out there, and NOTHING is standing still; everything is in motion. The primary forces that keep the stars from falling together is the rotation of the Milky Way; all the stars appear to orbit the center of the Milky Way.
Stars work by the act of explosions witch create them.
No,it is balanced forces