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Mechanical advantage=load/effort

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11y ago

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What is the pulley system formula used to calculate mechanical advantage?

The formula used to calculate mechanical advantage in a pulley system is: Mechanical Advantage Number of supporting ropes or strands.


What is the pulley formula used to calculate the mechanical advantage of a system involving pulleys?

The pulley formula used to calculate the mechanical advantage of a system involving pulleys is MA 2n, where MA is the mechanical advantage and n is the number of pulleys in the system.


What is the pulley calculation formula used to determine the mechanical advantage of a pulley system?

The formula to calculate the mechanical advantage of a pulley system is MA 2 number of movable pulleys.


What factor of both the wheel and axle can be used to calculate their mechanical advantage?

radius


Which factor of both the wheel and the axle can be used to calculate mechanical advantage?

radius


Which factor of both wheel and axle can be used to calculate their mechanical advantage?

radius


What factor of both the wheel and the axle can be used to calculate there mechanical advantage?

Their radii (radiuses) can.


Which factor of both the wheel and the axle can be used to calculate their mechanical advantage?

radius


What is the pulley equation used for in mechanical systems?

The pulley equation is used in mechanical systems to calculate the relationship between the forces applied to a pulley system and the resulting motion or load. It helps determine the mechanical advantage and efficiency of the system.


How can time be used to measure mechanical advantage?

Time can be used to measure mechanical advantage by comparing the time taken to perform a task with and without a mechanical advantage device. If a mechanical advantage device reduces the time required to complete a task, it indicates that the device has increased the efficiency of the task, thereby providing mechanical advantage.


What is the stress-strain relationship formula used to calculate the mechanical behavior of a material under loading conditions?

The stress-strain relationship formula used to calculate the mechanical behavior of a material under loading conditions is typically represented by the equation: Stress Young's Modulus x Strain. This formula helps to understand how a material deforms and responds to applied forces.


Why are third class levers used if their mechanical advantage is less that one?

Mechanical advantage is not the only reason to use levers.