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The portion between the fulcrum and the effort applied in a lever is called effort arm.

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12y ago
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9y ago

That's the part of a lever between the pivot and the point where you push your mom with.

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12y ago

The part of a toilet

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Q: What is effort arm?
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Related questions

What are the four parts of the lever?

load arm, effort arm, load, effort, fulcrum!


Define moment of effort?

THE PRODUCT OF EFFORT AND EFFORT ARM IS CALLED MOMENT OF EFFORT.


What is the part of a rope called from the pulley to the effort?

Effort Arm


What is the mechanical advantage for a 2-meter-long lever has an effort arm lenght of 1.6 meters?

4Explanationfor a lever,effort * effort arm = load *load armso by re arranging above equation,load/effort = effort arm/load armNow, as load/effort is called mechanical advantage so,mechanical advantage = effort arm/load armAs total length of rod is 2 m out of which 1.6 m is effort arm so remaining 0.4 m would be load arm. thus on putting values in the above equation, we getmechanical advantage = 1.6/0.4 = 4


The part of a rope from the pulley to the effort is called an?

effort arm


What lever would have more mechanical advantage than one with a resistance are of 3 inches and an effort arm of 6 inches?

increase the effort arm to 8 feet


A is a simple machine with a fulcrum an effort arm and a resistance arm?

a lever


Which lever would have more mechanical advantages than one with a resistance arm of 3 inches and an effort arm of 6 inches?

a lever with an effort arm of 2 inches


What A lever has a resistance arm of 5 feet and an effort arm of 6 feet What measurement can be changed to increase the mechanical advantage of the lever?

increase the effort arm to 8 feet


How do you find the mechanical advantage of a wheelbarrow?

Mechanical advantage= effort arm length/ load arm length For Example Effort arm=120 cm Load arm length= 40 cm MA-120/40 = 3


The effort arm is 8 meters and resisitance arm is 1.5 meters on a lever how much effort is needed to lift a 200 newton weight?

faggio


What is the length of effort arm divided by length of resistance arm?

Ideal Mechanical Advantage