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You must apply a force towards the centre of the circle. This is called a centripetal force.
The force you apply to a simple machine is known as the input force. This force is used to perform work on the machine, such as lifting an object or moving a load. The output force generated by the machine is what ultimately helps to make the work easier to accomplish.
The lever.
The force you apply to the mouse button to make it click is.
Input force is the amount of force applied to a system or object. For example, when pushing a car to get it moving, the force you apply with your hands is the input force.
A centripetal force acts toward the center of the circular path, causing an object to move in a cycle. This force keeps the object moving in a curved path rather than continuing in a straight line.
To cause an object to start moving, you need to apply a force to overcome its inertia. This force can be generated by pushing, pulling, or other means like gravity or magnetic fields. Once the force is greater than the object's inertia, it will start moving in the direction of the applied force.
To get something moving, you need to apply a force to overcome inertia. This force can be generated through mechanisms such as pushing, pulling, or applying a driving force like an engine or motor. Additionally, reducing friction between the moving object and its environment can help facilitate motion.
The force the mover needs to apply to keep the box moving to the right at 1 m/s is 20 N to overcome the friction force acting to the left on the box. So, the total force applied by the mover in the right direction should be greater than 20 N to maintain the constant velocity of 1 m/s.
If you apply force to an object, you accelerate it. If you apply the force in the direction that the object is moving, you speed it up. If you apply it in the opposite direction, you slow it down. If you apply the force in another direction than the object is moving in you will change the direction of the objects motion. The amount of acceleration is given by a = F/m where a is acceleration, F is force and m is the mass of the object.
To change the direction of a moving mass, you need to apply a force in the opposite direction to the mass's current velocity. This force can come from various sources such as friction, gravity, or an external force like pushing or pulling. The magnitude and direction of the force will determine how quickly and effectively the mass changes its direction.
1) To move a standing object we need to apply force and to stop a moving object we need to apply brakes. 2) Car