Yes, there is a maximum velocity for a falling object, known as terminal velocity. Terminal velocity is reached when the force of air resistance on the falling object is equal to the force of gravity acting on it, resulting in a constant velocity. The terminal velocity varies depending on factors like the object's size, shape, and weight.
To calculate the maximum velocity of a falling object, you can use the equation: ( v = \sqrt{2gh} ), where ( v ) is the maximum velocity, ( g ) is the acceleration due to gravity (approximately 9.81 m/s(^2)), and ( h ) is the height from which the object falls. This equation assumes no air resistance.
The maximum velocity reached by a falling object when air resistance is equal to gravitational force is called terminal velocity. At this point, the net force on the object is zero, resulting in constant velocity. The object will not accelerate further due to the balancing forces.
False. Terminal velocity is the constant speed that a freely falling object eventually reaches when the resistance of the medium through which it is falling prevents further acceleration. It is the maximum speed a falling object can reach due to air resistance balancing the force of gravity.
The maximum velocity reached by a falling object when the resistance of the medium is equal to the force due to gravity is called terminal velocity. At terminal velocity, the object no longer accelerates and reaches a constant speed as the drag force balances out the force of gravity acting on the object.
Perhaps you mean terminal velocity. This is the maximum velocity reached by an object falling to the ground when the acceleration due to gravity is matched by the drag resistance of the air through which it is falling.
maximum velocity.
Yes, there is a maximum velocity for a falling object, known as terminal velocity. Terminal velocity is reached when the force of air resistance on the falling object is equal to the force of gravity acting on it, resulting in a constant velocity. The terminal velocity varies depending on factors like the object's size, shape, and weight.
Its called terminal velocity
To calculate the maximum velocity of a falling object, you can use the equation: ( v = \sqrt{2gh} ), where ( v ) is the maximum velocity, ( g ) is the acceleration due to gravity (approximately 9.81 m/s(^2)), and ( h ) is the height from which the object falls. This equation assumes no air resistance.
The maximum velocity reached by a falling object when air resistance is equal to gravitational force is called terminal velocity. At this point, the net force on the object is zero, resulting in constant velocity. The object will not accelerate further due to the balancing forces.
False. Terminal velocity is the constant speed that a freely falling object eventually reaches when the resistance of the medium through which it is falling prevents further acceleration. It is the maximum speed a falling object can reach due to air resistance balancing the force of gravity.
The maximum velocity reached by a falling object when the resistance of the medium is equal to the force due to gravity is called terminal velocity. At terminal velocity, the object no longer accelerates and reaches a constant speed as the drag force balances out the force of gravity acting on the object.
Yes, the maximum speed of a free falling object is known as terminal velocity. This is the point at which the force of air resistance balances the force of gravity, resulting in a constant velocity. Terminal velocity can vary depending on the object's shape, size, and mass.
The instantaneous velocity at the maximum height is zero because the object momentarily stops moving before falling back down due to gravity.
the greatest velocity a falling object reaches is terminal velocity
at terminal velocity