Q3 (a) Define what kinematic particle means. (b) Figure Q3(b) shows a dependent motion of the pulley system where crate A moves up the slope at 0.5m/s. Calculate the magnitude and direction of Velocity at point P. (c) Figure Q3(c) show two airplanes fly in the same plane at an angle. Calculate the relative velocity B with respect to A (VB/A). Given VA= 600km/h, VB= 500km/h and 0 = 75° Deatum 30° FIGURE Q3 (b)

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Q3 (a) Define what kinematic particle means.
(b) Figure Q3(b) shows a dependent motion of the pulley system where crate A moves up the slope
at 0.5m/s. Calculate the magnitude and direction of Velocity at point P.
(c) Figure Q3(c) show two airplanes fly in the same plane at an angle. Calculate the relative velocity
B with respect to A (VB/A). Given VA= 600km/h, VB= 500km/h and 0 = 75°
Datum
30°
FIGURE Q3 (b)
FIGURE 03 (C)
Transcribed Image Text:Q3 (a) Define what kinematic particle means. (b) Figure Q3(b) shows a dependent motion of the pulley system where crate A moves up the slope at 0.5m/s. Calculate the magnitude and direction of Velocity at point P. (c) Figure Q3(c) show two airplanes fly in the same plane at an angle. Calculate the relative velocity B with respect to A (VB/A). Given VA= 600km/h, VB= 500km/h and 0 = 75° Datum 30° FIGURE Q3 (b) FIGURE 03 (C)
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