Inertia always opposes a change in motion. Which means starting, moving, turning,
stopping, everything. Inertia is a property of mass, and everything has mass, so
everything has inertia that needs to be overcome if you want to move that
>something<. Since inertia is a property of mass, every object has its own inertia
that will be the same *everywhere.* On Earth, in space, it will take the same force
to change the motion of a Bowling ball or tennis ball. It's spelled out in big letters
within Newton's Laws of Motion.
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Answer #2:
The question is fishing for "friction".
Inertia is not a force.
It does not take the same force to change the motion of a bowling ball and a
tennis ball. As Newton's other law of motion tells us, F = M A .
The more M there is, the more F you need for the same A .
A force in the opposite direction to the motion of an object causes deceleration or slowing down of the object. This force acts against the initial motion, reducing the speed or changing the direction of the object.
The force that always acts opposite to the direction of the motion of an object is friction. Friction is a force that resists the motion between two surfaces in contact with each other. It acts in the direction opposite to the direction of motion, slowing down or stopping the object.
The direction of friction is opposite to the direction of motion. This means that when an object is moving in one direction, the friction force is acting in the opposite direction, trying to slow down or stop the object.
It is in most cases opposite to the direction of motion.
The force that pushes an object in the opposite direction of its motion is known as friction. Friction is the resistance that occurs when two surfaces come in contact and it acts in the direction opposite to the object's motion.
Acceleration is opposite to the direction of motion when the velocity of an object is decreasing. This occurs when the net force acting on the object is in the opposite direction of its motion, causing it to slow down.
A force that opposes the motion of an object is called a frictional force. This force acts in the opposite direction of the object's motion, creating resistance and slowing down its movement.
Friction force acts in the opposite direction of an object's motion. It is a force that opposes the relative motion between two surfaces in contact with each other.
No, the acceleration of an object is in the direction of the net force applied to it. If the net force is in the same direction as the object's motion, the acceleration will be in the same direction. If the net force is opposite to the object's motion, the acceleration will be in the opposite direction.
Force changes either the speed or the direction of motion, or both.
it acts in the opposite direction of motion or force
The force that acts in the opposite direction of motion is friction. Friction is a force that opposes the relative motion or tendency of such motion between two surfaces in contact. It acts to resist the motion of an object moving across a surface.