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The force applied to a simple machine is called effort/input force.
The number of times a machine increases a force exerted on it is called mechanical advantage.
The number of times a machine can increase a force exerted on it depends on the machine's mechanical advantage. Mechanical advantage is the ratio of the output force produced by a machine to the input force applied to it. This ratio determines how many times the machine can increase the force.
The force exerted on a machine is generally the input force required to operate it. This force can come from various sources such as motors, actuators, or human input. The magnitude and direction of the force can determine the performance and efficiency of the machine.
The force exerted on a machine is typically the input force applied by a person or a mechanical system to make the machine perform work. This force is used to overcome resistance within the machine, such as friction or a load being lifted. The output force produced by the machine is the result of the input force acting on the machine's components.
resistance force
Answer: Output force is the force exerted on an object by a simple machine.
The force applied to a simple machine is called effort/input force.
input force
The number of times a machine increases a force exerted on it is called mechanical advantage.
The difference between and input force and an output force is that an output force is force exerted by a machine, and an input force is force exerted on a machine.
The force exerted by a machine.
The number of times a machine can increase a force exerted on it depends on the machine's mechanical advantage. Mechanical advantage is the ratio of the output force produced by a machine to the input force applied to it. This ratio determines how many times the machine can increase the force.
Mechanical force is the force exerted by a machine.
torque
torque
The force exerted on a machine is generally the input force required to operate it. This force can come from various sources such as motors, actuators, or human input. The magnitude and direction of the force can determine the performance and efficiency of the machine.