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Move the fulcrum (pivot) farther from the effort and closer to the load.
A fixed pulley does NOT multiply the effort force or have a mechanical advantage. It only changes the direction of the effort force. A free pulley multiplies the effort by two. this means the free pulley has a mechanical advantage of 2.information from:www.mhscience02.com
The 'ideal' mechanical advantage is length of the effort arm/length of the load arm .
the formula for determing ideal mechanical advantage is effort divided by resistance
Normally the force you apply. Load divided by effort is mechanical advantage.
Effort Arm
By increasing the effort distance on the machine.
The mechanical advantage is when the fulcrum is closer to the effort and creates a advantage
it is d ratio of the load to the effort applied to move the load if mechanical advantage>1(ie L/E >1), the machine acts as a force multiplier otherwise as a machine to gain speed mechanical advantage is abbreviated as M.A.
increase the effort arm to 8 feet
Mechanical Advantage = Effort/Load
Mechanical advantage=load/effort
A mechanical advantage occurs when a tool such as a hammer is used that increases the amount of force being applied without increasing the effort of the person using the tool. To increase mechanical advantage, you could use a bigger hammer to increase output force.
Move the fulcrum (pivot) farther from the effort and closer to the load.
The ratio of resistance force to effort force is a mechanical advantage.
A fixed pulley does NOT multiply the effort force or have a mechanical advantage. It only changes the direction of the effort force. A free pulley multiplies the effort by two. this means the free pulley has a mechanical advantage of 2.information from:www.mhscience02.com
Mechanical Advantage;The ratio of load and effort is called mechanical advantage of any machine.Mathematical Formula Of Mechanical AdvantageMechanical Advantage = Load / EffortUnit Of Mechanical AdvantageAs mechanical advantage is the ratio of two forces, therefore it has no unit.