A small airplane flying horizontally with a speed of 150 miles/hr at an altitude of 400 feet above a remote valley drops an emergency medical package at A. The package has a parachute which deploys at B and allows the package to descend vertically at the constant rate of 6 ft/sec. If the drop is designed so that the package is to reach the ground 37 seconds after release at A,
A small airplane flying horizontally with a speed of 150 miles/hr at an altitude of 400 feet above a remote valley drops an emergency medical package at A. The package has a parachute which deploys at B and allows the package to descend vertically at the constant rate of 6 ft/sec. If the drop is designed so that the package is to reach the ground 37 seconds after release at A,
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A small airplane flying horizontally with a speed of 150 miles/hr at an altitude of 400 feet above a
remote valley drops an emergency medical package at A. The package has a parachute which
deploys at B and allows the package to descend vertically at the constant rate of 6 ft/sec. If the drop
is designed so that the package is to reach the ground 37 seconds after release at A,
REQUIRED: Determine the horizontal lead L so that the package hits the target. Neglect atmospheric resistance from A to B.
CAN YOU PLS WRITE DOWN THE COMPLETE SOLUTION (STEP BY STEP) DONT TYPE IT OUT BECAUSE I CANT UNDERSTAND., AND PLS DONT USE THE EXISTING SOLUTION BECAUSE IT IS INCOMPLETE.
ROUND OFF ANSWER TO FOUR DECIMAL PLACES
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