A push and pull machine works by applying force in opposite directions to move objects. When a force is applied in one direction (push), it causes the object to move in that direction. Similarly, when a force is applied in the opposite direction (pull), it causes the object to move in the opposite direction. This back-and-forth motion helps to move objects in opposite directions using the push and pull forces.
You are applying a force to the object, but in opposite directions. The object doesn't move at first because the forces are balanced. Once one force overcomes the other, the object begins to move in the direction of the greater force.
A pair of scissors is an example of an object that works in pairs and moves in opposite directions as you open and close them to cut objects.
Strike Slip Fault
An object can still move even if the action and reaction forces are equal because they act on different objects. The equal forces produce opposite accelerations on the two objects, causing them to move in opposite directions. This is described by Newton's third law of motion.
strike slip fault
strike slip fault
Strike Slip Fault
Balanced forces
unbalance force
Strike- Slip Faults
Strike Slip Fault.
No, pulleys can be configured to move in the same or opposite directions. If the pulleys are set up with the same orientation, they will move in the same direction. However, by using different setups or arrangements, they can also be made to move in opposite directions.