A model airplane of mass 0.740 kg flies with a speed of 35.0 m/s in a horizontal circle at the end of a 64.0-m-long control wire as shown in Figure (a). The forces exerted on the airplane are shown in Figure (b): the tension in the control wire, the gravitational force, and aerodynamic lift that acts at 0= 20.0° inward from the vertical. Compute the tension in the wire, assuming it makes a constant angle of = 20.0° with the horizontal. N Need Help? Read It Circular path of airplane Wire Master It lift mg

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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A model airplane of mass 0.740 kg flies with a speed of 35.0 m/s in a horizontal circle at the end of a 64.0-m-long control wire as shown in Figure (a). The forces exerted on
the airplane are shown in Figure (b): the tension in the control wire, the gravitational force, and aerodynamic lift that acts at 0 = 20.0° inward from the vertical. Compute the
tension in the wire, assuming it makes a constant angle of 20.0⁰ with the horizontal.
N
Need Help?
Read It
Circular path
of airplane
Wire
Master It
b
lift
I
01
16.0
mg
Transcribed Image Text:A model airplane of mass 0.740 kg flies with a speed of 35.0 m/s in a horizontal circle at the end of a 64.0-m-long control wire as shown in Figure (a). The forces exerted on the airplane are shown in Figure (b): the tension in the control wire, the gravitational force, and aerodynamic lift that acts at 0 = 20.0° inward from the vertical. Compute the tension in the wire, assuming it makes a constant angle of 20.0⁰ with the horizontal. N Need Help? Read It Circular path of airplane Wire Master It b lift I 01 16.0 mg
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