Choose the term that describes the lever positioned with the applied force on one end, the fulcrum on the other end, and the resistance in between?

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The lever described in the question is a second-class lever. In a second-class lever, the arrangement consists of the applied force (effort) at one end, the fulcrum at the other end, and the load (resistance) situated between them.

This configuration allows for the advantage of using a smaller force to move a larger load, as the distance from where the force is applied to the fulcrum can be greater than the distance from the load to the fulcrum. Classic examples of second-class levers include a wheelbarrow or a nutcracker, where the effort can lift a weight that is located between the fulcrum and the applied force.

Understanding this lever design is crucial in biomechanics as it helps in analyzing how forces are transmitted through the body during movement and how mechanical advantages are utilized in human activity and various equipment.

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