The 150-kg glider B is being towed by airplane A, which is flying horizontally with a constant speed of v = 218 km/h. The tow cable has a length r = 51 m and may be assumed to form a straight line. The glider is gaining altitude and when e reaches 16°, the angle is increasing at the constant rate ở - 3 deg/s. At the same time the tension in the tow cable is 1235 N for this position. Calculate the aerodynamic lift L and drag D acting on the glider. Assume o - 11°.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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The 150-kg glider B is being towed by airplane A, which is flying horizontally with a constant speed of v = 218 km/h. The tow cable has
a length r = 51 m and may be assumed to form a straight line. The glider is gaining altitude and when e reaches 16°, the angle is
increasing at the constant rate ở = 3 deg/s. At the same time the tension in the tow cable is 1235 N for this position. Calculate the
aerodynamic lift L and drag D acting on the glider.
Assume o = 11°.
B
A
Part 1
Calculate the magnitude of the acceleration of glider B.
Answer: a = i
m/s?
Attempts: 0 of 1 used Submit Answer
Save for Later
Part 2
The parts of this question must be completed in order. This part will be available when you complete the part above.
Transcribed Image Text:The 150-kg glider B is being towed by airplane A, which is flying horizontally with a constant speed of v = 218 km/h. The tow cable has a length r = 51 m and may be assumed to form a straight line. The glider is gaining altitude and when e reaches 16°, the angle is increasing at the constant rate ở = 3 deg/s. At the same time the tension in the tow cable is 1235 N for this position. Calculate the aerodynamic lift L and drag D acting on the glider. Assume o = 11°. B A Part 1 Calculate the magnitude of the acceleration of glider B. Answer: a = i m/s? Attempts: 0 of 1 used Submit Answer Save for Later Part 2 The parts of this question must be completed in order. This part will be available when you complete the part above.
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