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775 is a number, not a machine. It, therefore, has no mechanical advantage.

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8y ago

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What is the mechanical advantage of a ramp What is the mechanical advantage of a ramp standing straight up?

The mechanical Advantage is FORCE TIMES DISTANCE


How does actual mechanical advantage compare with ideal mechanical advantage?

The actual mechanical advantage is usually less, due to losses.


What is a mechanical adventage?

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.


What is the mechanical advantage of a lever?

The mechanical advantage is when the fulcrum is closer to the effort and creates a advantage


What is a Mechanical advantage equal to?

Mechanical advantage the resistance force. Mechanical advantage is equal output force divided by input force.


What does mechanical advantage equal?

Mechanical advantage equals resistance force.


How many times force is multiplied is the mechanical?

In a mechanical advantage system, the force is multiplied by the factor of the mechanical advantage. The formula for mechanical advantage is MA = output force / input force. This means the force can be multiplied by the mechanical advantage value.


What is the Mechanical Advantage Formula?

Mechanical Advantage: F(out)/ F(in) Actual Mechanical Advantage is the ratio of Force outputed to Force inputed. (AMA=Fo/Fi) Similarly, IMA (Ideal Mechanical Advantage) = di/do


What are some ideal mechanical advantage examples?

Mechanical Advantage = Effort/Load


What is the formula used to calculate mechanical advantage?

Mechanical advantage=load/effort


What is true about the mechanical advantage of a machine?

it is less than the ideal mechanical advantage


How does mechanical advantage differ from ideal mechanical advantage?

Mechanical advantage is determined by physical measurement of the input and output forces and takes into account energy loss due to deflection, friction, and wear. The ideal mechanical advantage, meanwhile, is the mechanical advantage of a device with the assumption that its components do not flex, there is no friction, and there is no wear.