The helicopter is tracked by radar. The readings at a certain instant are R = 2500m, 0 = 35°, and è = 0.03 rad/s. 6.1 Derive and show that the velocity vector in Polar form is: V = Re, + Rêeg 6.2 If the helicopter is in level flight (height does not change), consider the geometry given below, calculate the elevation h and speed of the helicopter at this instant.

Glencoe Physics: Principles and Problems, Student Edition
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ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter5: Displacement And Force In Two Dimensions
Section: Chapter Questions
Problem 75A
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The helicopter is tracked by radar. The readings at a
certain instant are R = 2500m, 0 = 35°, and è = 0.03 rad/s.
6.1 Derive and show that the velocity vector in Polar form is:
V = Re, + RÔe,
6.2 If the helicopter is in level flight (height does not change), consider the
geometry given below, calculate the elevation h and speed of the helicopter
at this instant.
Transcribed Image Text:The helicopter is tracked by radar. The readings at a certain instant are R = 2500m, 0 = 35°, and è = 0.03 rad/s. 6.1 Derive and show that the velocity vector in Polar form is: V = Re, + RÔe, 6.2 If the helicopter is in level flight (height does not change), consider the geometry given below, calculate the elevation h and speed of the helicopter at this instant.
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