A transport plane takes off from a level landing field with two gliders in tow, one behind the other. The mass of each glider is 700 kg, and the total resistance (air drag plus friction with the runway) on each may be assumed constant and equal to 2500 N. The tension in the towrope between the transport plane and the first glider is not to exceed 12,000 N. (a) If a speed of 40 m>s is required for takeoff, what minimum length of runway is needed? (b) What is the tension in the towrope between the two gliders while they are accelerating for the takeoff?
A transport plane takes off from a level landing field with two gliders in tow, one behind the other. The mass of each glider is 700 kg, and the total resistance (air drag plus friction with the runway) on each may be assumed constant and equal to 2500 N. The tension in the towrope between the transport plane and the first glider is not to exceed 12,000 N. (a) If a speed of 40 m>s is required for takeoff, what minimum length of runway is needed? (b) What is the tension in the towrope between the two gliders while they are accelerating for the takeoff?
Related questions
Question
A transport plane takes off from a level
landing field with two gliders in tow, one behind the other. The mass of
each glider is 700 kg, and the total resistance (air drag plus friction with
the runway) on each may be assumed constant and equal to 2500 N. The
tension in the towrope between the transport plane and the first glider is not
to exceed 12,000 N. (a) If a speed of 40 m>s is required for takeoff, what
minimum length of runway is needed? (b) What is the tension in the towrope
between the two gliders while they are accelerating for the takeoff?
Expert Solution
This question has been solved!
Explore an expertly crafted, step-by-step solution for a thorough understanding of key concepts.
This is a popular solution!
Trending now
This is a popular solution!
Step by step
Solved in 2 steps