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In a vacuum, where there is no air resistance, both a feather and a hammer would fall and hit the ground at the same time due to gravity affecting them equally. However, in the presence of air, the feather experiences more air resistance than the hammer, causing it to fall slower.
In a vacuum, they would hit the ground at the same time due to the acceleration due to gravity being the same for both objects. In reality, the shape and weight of the objects can affect how they fall, so it's difficult to predict which would hit the ground first.
Both the feather and the hammer will hit the ground at the same time when dropped from the same height in a vacuum. This is due to the principle of gravity, which accelerates all objects at the same rate regardless of their mass.
The mass is irrelevant, the only factor that effects how fast anything falls on earth is air resistance. The feathers obviously have more air resistance than the rocks and so the rocks will fall faster. If this was done in a vacuum however one gram of feathers would fall at the same rate as a tone of rocks.
BookAnswerIf you drop two objects of different mass, then they will fall at the same speed & rate. On Earth, the air will slow the fall of the paper due to air loads, so the book would hit the ground first. On the Moon, there is no or very little air, so they would both hit the ground at the same time.
In a vacuum, where there is no air resistance, both a feather and a hammer would fall and hit the ground at the same time due to gravity affecting them equally. However, in the presence of air, the feather experiences more air resistance than the hammer, causing it to fall slower.
In a vacuum, they would hit the ground at the same time due to the acceleration due to gravity being the same for both objects. In reality, the shape and weight of the objects can affect how they fall, so it's difficult to predict which would hit the ground first.
Both the feather and the hammer will hit the ground at the same time when dropped from the same height in a vacuum. This is due to the principle of gravity, which accelerates all objects at the same rate regardless of their mass.
as done in Galileo's experiment when he dropped a large rock and a feather from a tall tower both hit the ground at the same moment when dropped from the same height.
The mass is irrelevant, the only factor that effects how fast anything falls on earth is air resistance. The feathers obviously have more air resistance than the rocks and so the rocks will fall faster. If this was done in a vacuum however one gram of feathers would fall at the same rate as a tone of rocks.
BookAnswerIf you drop two objects of different mass, then they will fall at the same speed & rate. On Earth, the air will slow the fall of the paper due to air loads, so the book would hit the ground first. On the Moon, there is no or very little air, so they would both hit the ground at the same time.
The value of acceleration in a free-falling body is constant (g). The mass of the body will have no effect on the acceleration. On earth, if you drop a heavy weight and a feather together, the weight will hit the ground first because the feather is held back by air resistance. If you do the same thing in a vacuum (as was demonstrated by an astronaut on the moon) both will hit the ground at the same time.
On the asteroid Ceres, both the hammer and feather would hit the ground at the same time due to the very low gravitational pull compared to Earth. This phenomenon is in line with Galileo's principle that objects of different mass will fall at the same rate in a vacuum.
Both the hammer and the feather would hit the ground at the same time on the moon because there is no atmosphere to create air resistance, allowing objects to fall at the same rate regardless of their mass.
Newton's First Law (law of inertia) and Second Law (F=ma) apply when the coin hits the ground faster than a feather. The coin's greater mass means it requires more force to overcome inertia and fall faster than the feather. The acceleration of the coin is greater due to the larger force acting on it compared to the feather.
A coin. It is heavier, and thus less affected by air resistance.
They both will hit the ground at the same time