A small marble at point A of mass 0.5 kg as shown in Figure Q2 is release downward with an initial speed of V¼ m/s and strikes a smooth inclined plane given tan 0 = ² at point B.

Elements Of Electromagnetics
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pls use this matrix num AD200153

A
1 m
0.1 m
B
0.2 m
C
0.4 m
Figure Q2
Transcribed Image Text:A 1 m 0.1 m B 0.2 m C 0.4 m Figure Q2
A small marble at point A of mass 0.5 kg as shown in Figure Q2 is release downward with
an initial speed of VẠ m/s and strikes a smooth inclined plane given tan 0 = at point B.
(a)
If point A is located 1 m above the impact area, calculate the speed of the marble
immediately before the impact.
(b)
Assuming the coefficient of restitution between marble and plane is e = 0.5,
determine the speed and direction of the marble immediately after the impact.
(c)
Using the speed obtained in Q2 (b) and assuming a free flight motion of the marble
after the impact. Predict the horizontal travel distance measuring from point B.
Use your last digit of matrix number to get the value of V, for marble initial speed.
Example; If your matrix number is AD192005.
A D 1 9 2
0 0 5
VA = 5 + 2
Then, VA = 7 ms-1
%3D
Transcribed Image Text:A small marble at point A of mass 0.5 kg as shown in Figure Q2 is release downward with an initial speed of VẠ m/s and strikes a smooth inclined plane given tan 0 = at point B. (a) If point A is located 1 m above the impact area, calculate the speed of the marble immediately before the impact. (b) Assuming the coefficient of restitution between marble and plane is e = 0.5, determine the speed and direction of the marble immediately after the impact. (c) Using the speed obtained in Q2 (b) and assuming a free flight motion of the marble after the impact. Predict the horizontal travel distance measuring from point B. Use your last digit of matrix number to get the value of V, for marble initial speed. Example; If your matrix number is AD192005. A D 1 9 2 0 0 5 VA = 5 + 2 Then, VA = 7 ms-1 %3D
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