A useful rule of thumb in piloting is that if the heading from your airplane to a second airplane remains constant, the two airplanes are on a collision course. Consider the two airplanes shown in the figure(Figure 1). At time t=0, airplane 1 is at the location (X, 0) and moving in the positive y direction; airplane 2 is at (0, Y) and moving in the positive x direction. The speed of airplane 1 is v1. A) What speed must airplane 2 have if the airplanes are to collide at the point ( X, Y)? B) Assuming airplane 2 has the speed found in part A, calculate the displacement from airplane 1 to airplane 2, Δr⃗ =r⃗ 2−r⃗ 1Δ�→=�→2−�→1.

Inquiry into Physics
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ISBN:9781337515863
Author:Ostdiek
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A useful rule of thumb in piloting is that if the heading from your airplane to a second airplane remains constant, the two airplanes are on a collision course. Consider the two airplanes shown in the figure(Figure 1). At time t=0, airplane 1 is at the location (X, 0) and moving in the positive y direction; airplane 2 is at (0, Y) and moving in the positive x direction. The speed of airplane 1 is v1. A) What speed must airplane 2 have if the airplanes are to collide at the point ( X, Y)? B) Assuming airplane 2 has the speed found in part A, calculate the displacement from airplane 1 to airplane 2, Δr⃗ =r⃗ 2−r⃗ 1Δ�→=�→2−�→1.

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(X, Y)
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Transcribed Image Text:AF X (X, Y) X
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