No effect whatsoever. Any two freely falling bodies fall with the same acceleration
when dropped in the same place on the same planet. That includes any two objects
falling on Earth.
Someone is sure to jump in here and point out that objects with different mass
don't fall with equal accelerations on Earth, and that's because of air resistance.
They may even go on to provide answers to other questions that were not asked,
such as a treatise on terminal velocity. All of that is true, even if confusing. This
question stipulated that the bodies in question are "freely fallling". Bodies that
are falling through air are not freely falling.
Freely falling bodies undergo acceleration due to gravity, which is approximately 9.81 m/s^2 on Earth. This acceleration causes the speed of the falling object to increase as it falls towards the ground.
The acceleration due to gravity is constant for a freely falling body. This means that the object will experience a constant acceleration of 9.81 m/s^2 (on Earth) in the downward direction, regardless of its mass. This allows us to predict the motion of the object using equations of motion.
A freely falling projectile is an object that is only acted upon by gravity, moving through the air in a parabolic path while falling towards the ground. It does not have any initial horizontal force or acceleration other than gravity acting upon it.
The conclusion of freely falling bodies is that all objects fall towards the Earth at the same rate of acceleration, regardless of their mass. This acceleration is approximately 9.81 m/s^2 and is known as the acceleration due to gravity.
The constant for an object falling freely towards the Earth is the acceleration due to gravity, which is approximately 9.8 m/s^2. This acceleration remains the same regardless of the mass of the object, resulting in all objects falling at the same rate in a vacuum.
a nswer
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No effect whatsoever. Without air to interfere with the effects of gravity, a small feather and a large rock fall with the same acceleration.
None whatsoever.
9.8 m/s2
A freely body is the body which is freely falling under the force of gravity i.e. an acceleration of 9.8 m/s2
Freely falling bodies undergo acceleration due to gravity, which is approximately 9.81 m/s^2 on Earth. This acceleration causes the speed of the falling object to increase as it falls towards the ground.
when the acceleration of the freely falling object is equal to the acceleration due to gravity then there occurs free fall.
Gravitational Force
The acceleration due to gravity is constant for a freely falling body. This means that the object will experience a constant acceleration of 9.81 m/s^2 (on Earth) in the downward direction, regardless of its mass. This allows us to predict the motion of the object using equations of motion.
Exactly one . . . the gravitational force.
Freely falling body is a good example