The object with the larger mass will have greater damage.
B.
The object with the smaller mass will continue forward due to inertia.
C.
They will push away from each other in proportion to their masses.
D.
They will both make a sudden stop.
Answer:
You will feel more weight if it is accelerating out of the planet.
You will feel less weight if it is accelerating towards the planet.
Explanation:
The weight that you are observing or feeling is basically due to the change in acceleration of your fall or rising up in the spaceship. When the acceleration is stationary on the surface, you experience your normal weight due to the gravitational acceleration of that planet.
When the spaceship accelerates above or out of the planet you experience acceleration more than the acceleration of gravity hence more weight.
When the spaceship accelerates towards the planet you experience acceleration less than the acceleration of gravity hence less weight.
If the spaceship is free falling at the gravitational acceleration you experience a zero weight
Cosmic background radiation is the energy left over from the big bang and it's everywhere we look so if we consider ourselves the center, no matter which way we look we see this cosmic background radiation which is left over energy from the big bang.
by the star's mass
B. The amount of light generated equals the amount of heat
generated
C. The equal amounts of elements that make up a star's core
D. The stable number of sunspots that exist on a star's surface
Answer:
Explanation:
C. the equal amounts of elements that make up a stars core.