At the instant represented, VB/A = 4.3j m/s. Determine the velocity of each body at this instant. Assume that the upper surface of A remains horizontal. A X B
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At the instant represented, VB/A = 4.3j m/s. Determine the velocity of each body at this instant. Assume that the upper surface of A remains horizontal.
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- At the instant shown, pin A has a velocity of vA = 2i-4j m. Determine the magnitude of the velocity vector of Collar B in m at this instant. At this instant, rod AB is in the horizontal direction. Consider r 2.0meters and a = 30°. 2rThe collar A slides along the rod OB, which is rotating counterclockwise.Determine the velocity vector of A when OB is vertical, given that the speedof end B is 0.4 m/s in that position.The collar A slides along the rod OB, which is rotating counterclockwise.Determine the velocity vector of A when OB is vertical, given that the speedof end B is 0.4 m/s in that position.
- At the instant shown, the disk is rotating with an angular velocity of wo = 3 rad in the clockwise direction. Determine the x-component of the velocity vector of pin A (in m) at this instant. Consider r = 1.0 meters and 0 = 35°. A 2r B. a yThe disk is rotating with an angular speed of = 4 rad/s and has an angle of = 30°. Determine the tangential velocity at point A.Give me right solution according to the question... Consider Va=7 ft/s
- As the hydraulic cylinder rotates around O, the ex- posed length l of the piston rod P is controlled by the action of oil pressure in the cylinder. If the cylinder rotates at the constant rate 6 = 60 deg/s and l is decreasing at the constant rate of 150 mm/s, calculate the magnitudes of the velocity v and acceleration a of end B whenl = 125 mm. HW 375 mm Answers: v= 545 mm/s a= 632 mm/s?The belt is travelling to the right at some speed v, while the pipe is rolling without slipping at o = 4 - 1.5 m rad/s as shown. If the center of the pipe G appears to an observer on the ground to move at 2 m/s to the left, determine the velocity of the Belt В belt v.The cord is attached to the pin at CC and passes over the two pulleys at AA and DD. The pulley at AA is attached to the smooth collar that travels along the vertical rod. At the instant sAsA = 4 ftft the collar is moving upward at 4.5 ft/s, which is decreasing at 2 ft/s2. (Figure 1)
- The rod of the fixed hydraulic cylinder is moving to the left with a constant speed VA = 37 mm/s. Determine the corresponding velocity VB of slider B when SA = 500 mm. The length of the cord is 1890 mm, and the effects of the radius of the small pulley at A may be neglected. The velocity VB is positive if up. Assume h = 235 mm. Answer: VB = i B mm/sCars move around the traffic-circle which is in the shape of an ellipse with l=19m and h=48m as illustrated bellow y x2 y2 1 12 h2 h (m) COD I (m) If the speed posted is at v=26 m/s with an increase rate of 3 m/s? determine the maximum acceleration experienced by the passengers in m/s?Determine the radial acceleration and the normal force at point C given that m = 2 kg, K N/m, h = 4R, R velocity at A. m A = == 200 0.5 m and the particle has zero h ли K C R R B