A 34,000-lb airplane lands on an aircraft carrier and is caught by an arresting cable. The cable is inextensible and is paid out at A and B from mechanisms located below deck and consisting of pistons moving in long oil-filled cylinders. The piston-cylinder system is designed to maintain a constant tension in the cable. Knowing that the landing is 110 mi/h and the airplane travels a distance d= 90 ft after being caught, determine the tension in the cable. 35 ft 35 ft B d- The tension in the cable is kips.

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter5: More Applications Of Newton’s Laws
Section: Chapter Questions
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Please solve this question as fast as possible.
A 34,000-lb airplane lands on an aircraft carrier and is caught by an arresting cable. The cable is inextensible and is paid out at A and
B from mechanisms located below deck and consisting of pistons moving in long oil-filled cylinders. The piston-cylinder system is
designed to maintain a constant tension in the cable. Knowing that the landing is 110 mi/h and the airplane travels a distance d= 90 ft
after being caught, determine the tension in the cable.
35 ft
35 ft
B
d-
The tension in the cable is
kips.
Transcribed Image Text:A 34,000-lb airplane lands on an aircraft carrier and is caught by an arresting cable. The cable is inextensible and is paid out at A and B from mechanisms located below deck and consisting of pistons moving in long oil-filled cylinders. The piston-cylinder system is designed to maintain a constant tension in the cable. Knowing that the landing is 110 mi/h and the airplane travels a distance d= 90 ft after being caught, determine the tension in the cable. 35 ft 35 ft B d- The tension in the cable is kips.
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