Answer the following by using the INSTANTANEOUS CENTER METHOD for Velocity Analysis The mechanism shown is composed of rod GPV pin-connected to rod DPE at point P. Knowing that the velocity of V is 4 m/s downwards, A. [20%] Redraw bar GPV and determine its instantaneous center of rotation (label it as point C). Specify all angles and distances needed. E Ge 300 mm 4 the angular 250 mm B. [15%] Determine velocity of rod GPV. C. [30%] Determine the velocity of point P. D. [20%] Redraw bar DPE and determine its instantaneous center P 400 mm 4 m/s %3D 300 mm 30° of rotation (label it as point C). DO

Elements Of Electromagnetics
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Answer the following by using the INSTANTANEOUS CENTER METHOD for Velocity
Analysis
The mechanism shown is composed of rod GPV pin-connected to rod DPE at point P. Knowing that the
velocity of V is 4 m/s downwards,
A. [20%] Redraw bar GPV and
determine its instantaneous center
of rotation (label it as point C).
Specify all angles and distances
E
300 mm
needed.
250 mm
B. [15%] Determine the angular
velocity of rod GPV.
C. [30%] Determine the velocity of
point P.
D. [20%] Redraw bar DPE and
determine its instantaneous center
P
400 mm
v = 4 m/s
300 mm
30°
of rotation (label it as point C).
Specify all angles and distances
needed.
E. [15%] Determine the angular velocity of rod DPE.
Transcribed Image Text:Answer the following by using the INSTANTANEOUS CENTER METHOD for Velocity Analysis The mechanism shown is composed of rod GPV pin-connected to rod DPE at point P. Knowing that the velocity of V is 4 m/s downwards, A. [20%] Redraw bar GPV and determine its instantaneous center of rotation (label it as point C). Specify all angles and distances E 300 mm needed. 250 mm B. [15%] Determine the angular velocity of rod GPV. C. [30%] Determine the velocity of point P. D. [20%] Redraw bar DPE and determine its instantaneous center P 400 mm v = 4 m/s 300 mm 30° of rotation (label it as point C). Specify all angles and distances needed. E. [15%] Determine the angular velocity of rod DPE.
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