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The mechanical advantage (MA) of a ramp is calculated as the ratio of the length of the ramp to its height. Given a ramp length of 10 meters and an MA of 5, the height can be calculated using the formula: height = length / MA. Thus, the height of the ramp is 10 meters / 5 = 2 meters.

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Related Questions

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The ideal mechanical advantage of the bar is 5.


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5J because 10/2=5


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The ideal mechanical advantage of a ramp is calculated by dividing the length of the ramp by the vertical height. In this case, the ideal mechanical advantage of the ramp is 120m (length) divided by 20m (height) which equals 6. Therefore, the ideal mechanical advantage of the ramp is 6.


How long is a ramp from the top of the great pyramid to the ground that has a mechanical advantage of 4?

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204 inches


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Turtles are purple and thier are no exeptions for hoe purple a Turtle really is and I hope the answer was a lifesaving if not . . . you are some trash and a hue dingos. singed, your local Tonald Drump


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a long and fat knife


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The ideal mechanical advantage (IMA) of an inclined plane is calculated by dividing the length of the plane by the height. In this case, the IMA would be 8m (length) divided by 2m (height) which equals an IMA of 4.