Task 1: Find the velocity of an airplane. An airplane is flying on a bearing of 194° at 460mph. Find the component form of the velocity of the airplane and explain its meaning. (Round to the nearest 0.1) A. Begin by finding the bearing that corresponds to a direction angle: (Hint: recall that the bearing is the angle that the line travel makes with due north, measured clockwise, not counterclockwise. So adjust your angle measure here.) B. Write it in component form:

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Chapter1: Units, Trigonometry. And Vectors
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I need part B answered in this question.

Task 1: Find the velocity of an airplane.
An airplane is flying on a bearing of 194° at 460mph. Find the component form of
the velocity of the airplane and explain its meaning. (Round to the nearest 0.1)
A. Begin by finding the bearing that corresponds to a
direction angle: (Hint: recall that the bearing is the angle that the line travel
makes with due north, measured clockwise, not counterclockwise. So adjust your
angle measure here.)
B. Write it in component form:
C. Evaluate the component form:
D. Explain the meaning of your solution above by explaining the speed and direction of the
plane based on your solution to part C.
Transcribed Image Text:Task 1: Find the velocity of an airplane. An airplane is flying on a bearing of 194° at 460mph. Find the component form of the velocity of the airplane and explain its meaning. (Round to the nearest 0.1) A. Begin by finding the bearing that corresponds to a direction angle: (Hint: recall that the bearing is the angle that the line travel makes with due north, measured clockwise, not counterclockwise. So adjust your angle measure here.) B. Write it in component form: C. Evaluate the component form: D. Explain the meaning of your solution above by explaining the speed and direction of the plane based on your solution to part C.
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