End A of the link has a downward velocity VA of 2.6 m/s during an interval of its motion. For the position where 0-25° determine the angular velocity w (positive if counterclockwise as viewed in the figure, negative if clockwise) of AB and the magnitude of the velocity VG of the midpoint G of the link. Solve the relative-velocity equations, first, using the geometry of the vector polygon and, second, using vector algebra. Answers: w= VG= BO 260 mm G 11.03 rad/s i 1.434 m/s

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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End A of the link has a downward velocity VA of 2.6 m/s during an interval of its motion. For the position where 0-25° determine the
angular velocity w (positive if counterclockwise as viewed in the figure, negative if clockwise) of AB and the magnitude of the velocity
VG of the midpoint G of the link. Solve the relative-velocity equations, first, using the geometry of the vector polygon and, second, using
vector algebra.
Answers:
w=
VG=
BO
260 mm
G
11.03
rad/s
i
1.434
m/s
Transcribed Image Text:End A of the link has a downward velocity VA of 2.6 m/s during an interval of its motion. For the position where 0-25° determine the angular velocity w (positive if counterclockwise as viewed in the figure, negative if clockwise) of AB and the magnitude of the velocity VG of the midpoint G of the link. Solve the relative-velocity equations, first, using the geometry of the vector polygon and, second, using vector algebra. Answers: w= VG= BO 260 mm G 11.03 rad/s i 1.434 m/s
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