we know that
To calculate the ideal mechanical advantage for an inclined plane, divide the length of the incline by the height of the incline
Step 1
Find the horizontal distance of the ramp
we know that
the ramp has a slope of

so
by proportion

Step 2
Find the length of the incline of the ramp
Applying the Pythagorean Theorem

substitute the values



Step 3
Find the ideal mechanical advantage

substitute the values

therefore
the answer is
the Ideal Mechanical Advantage of the ramp is
