There are two forces involved; the finger pushes against the nose, and the nose pushes against the finger.
When you touch your finger to your nose, the action force is the force exerted by your finger onto your nose. The reaction force is the equal and opposite force exerted by your nose back onto your finger, as described by Newton's third law of motion. These two forces are known as an action-reaction pair and occur simultaneously whenever two objects interact with each other.
Life is shaped by social forces. Action and reaction forces shape the pattern of real life, moving society forward, backward or keeping things stable.
striking of bug is action while bug getting hurt is reaction -Thunder
Action and reaction forces have the same magnitude but act in opposite directions. This is described by Newton's third law of motion, stating that for every action, there is an equal and opposite reaction.
Action and reaction forces act simultaneously. For every action force, there is an equal and opposite reaction force acting on a different object. This principle is known as Newton's third law of motion.
When you touch your finger to your nose, the action force is the force exerted by your finger onto your nose. The reaction force is the equal and opposite force exerted by your nose back onto your finger, as described by Newton's third law of motion. These two forces are known as an action-reaction pair and occur simultaneously whenever two objects interact with each other.
action and reaction
Forces that are equal and anti-parallel.
action = reaction, but they works in the different object
Action-reaction forces act on the same object.
Equal in magnitude and opposite in direction.
action-reaction forces
action-reaction forces
Newtons third law says that the action and reaction forces in any situation will always be equal.
For every action there is an equal and opposite reaction.
The action and reaction forces occur at the same time.
The forces are called action-reaction forces according to Newton's third law of motion. For every action force, there is an equal and opposite reaction force.