You are standing on the ground at the origin of a coordinate system. An airplane flies over you with constant velocity parallel to the x axis and at a constant height of 8.00 x 10 m. At t = 0, the airplane is directly above you so that the vector leading from you to it is P = 8.00 x 10j m. At t = 30.0 s the position vector leading from yo to the airplane is P20 = (8.16 x 10°î + 8.00 x 10 j) m as suggested in the figure below. Determine the magnitude and orientation of the airplane's position vector at t = 60.0 s. magnitude 18175 m direction 26.114 ° above the horizontal P P30

College Physics
11th Edition
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Chapter1: Units, Trigonometry. And Vectors
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You are standing on the ground at the origin of a coordinate system. An airplane flies over you with constant velocity parallel to the x axis and at a constant height of
8.00 x 10° m. At t = 0, the airplane is directly above you so that the vector leading from you to it is
= 8.00 x 10³j m. At t = 30.0 s the position vector leading from you
to the airplane is P20 = (8.16 x 10î + 8.00 x 10j) m as suggested in the figure below. Determine the magnitude and orientation of the airplane's position vector at
t = 60.0 s.
magnitude
18175
direction
26.114
o above the horizontal
P
P30
Transcribed Image Text:You are standing on the ground at the origin of a coordinate system. An airplane flies over you with constant velocity parallel to the x axis and at a constant height of 8.00 x 10° m. At t = 0, the airplane is directly above you so that the vector leading from you to it is = 8.00 x 10³j m. At t = 30.0 s the position vector leading from you to the airplane is P20 = (8.16 x 10î + 8.00 x 10j) m as suggested in the figure below. Determine the magnitude and orientation of the airplane's position vector at t = 60.0 s. magnitude 18175 direction 26.114 o above the horizontal P P30
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