1) The velocity of the airplane relative to the air (V_airplane) is the sum of the velocity due north (V_north) and the crosswind (V_crosswind).


V_north = (650 \cos 0^\circ, 650 \sin 0^\circ) = (650, 0)


V_crosswind = (60 \cos(30^\circ), -60 \sin(30^\circ)) \approx (51.96, -30)


Now, add these vectors:


V_airplane = V_north + V_crosswind = (650 + 51.96, 0 - 30) = (701.96, -30)


2) V_wind = V_crosswind = (51.96, -30)


3) The true velocity V_true is the sum of the velocity of the airplane relative to the air and the velocity of the wind:


V_true = V_airplane + V_wind = (701.96 + 51.96, -30) = (753.92, -30)

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