R is equal to 20. Q1. During night-time, an aerial drone was flying for guarding purpose. Its
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R is equal to 20.
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Q1. During night-time, an aerial drone was flying for guarding purpose. Its trajectory was determined for performance testing as follows x=x+15*R y=y+10*R Horizontal(x) Height(y) (miles) 0 50 170 300 300 270 320 (miles) 0 110 240 380 420 440 480 Time(t) (hour) 0 ½ 1 1½ 2 2½ 3 Q2. (a) A bike is accelerating in yz-plane with the y-component of acceleration given by u2*t^w2, and z-component given by u3*t^w3 subject to the initial conditions, v_y (0)=n2;v_z (0)=n3. Determine its speed at later time t=p1,u2=4+0.3R,u3=2+0.4R,w2=0.5+ R,w3=1+R,n2=3.1+0.2R,n3=4.1+0.1R,p1=5.4+0.2R (b) In the above problem, determine the total distance traveled by the bike between time t_initial=p1-0.1*R and t_final=p1 along both y-axis and z-axis, if initially the bike is at 0.2*R along y-axis and 0.3*R at z-axis. Q1. During night-time, an aerial drone was flying for guarding purpose. Its trajectory was determined for performance testing as follows x=x+15*R y=y+10*R Horizontal(x) Height(y) (miles) 0 50 170 300 300 270 320 (miles) 0 110 240 380 420 440 480 Time(t) (hour) 0 ½ 1 1½ 2 2½ 3 Q2. (a) A bike is accelerating in yz-plane with the y-component of acceleration given by u2*t^w2, and z-component given by u3*t^w3 subject to the initial conditions, v_y (0)=n2;v_z (0)=n3. Determine its speed at later time t=p1,u2=4+0.3R,u3=2+0.4R,w2=0.5+ R,w3=1+R,n2=3.1+0.2R,n3=4.1+0.1R,p1=5.4+0.2R (b) In the above problem, determine the total distance traveled by the bike between time t_initial=p1-0.1*R and t_final=p1 along both y-axis and z-axis, if initially the bike is at 0.2*R along y-axis and 0.3*R at z-axis.
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Related Book For
Statistics Principles and Methods
ISBN: 978-0470904114
7th edition
Authors: Richard A. Johnson, Gouri K. Bhattacharyya
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