A 5,000 kg airplane at rest reaches a take-off speed of 75 m/s after accelerating down a horizontal runway for 1.25 km. Calculate the average acceleration and average net force exerted on the airplane. For this problem Draw an Energy Bar Chart to solve the problem using the Work-Energy Theorem.
A 5,000 kg airplane at rest reaches a take-off speed of 75 m/s after accelerating down a horizontal runway for 1.25 km. Calculate the average acceleration and average net force exerted on the airplane. For this problem Draw an Energy Bar Chart to solve the problem using the Work-Energy Theorem.
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A 5,000 kg airplane at rest reaches a take-off speed of 75 m/s after accelerating down a horizontal runway for 1.25 km. Calculate the average acceleration and average net force exerted on the airplane.
For this problem
Draw an Energy Bar Chart to solve the problem using the Work-Energy Theorem. W = ½ mv^2 - ½ mvo^2
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