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12-44 Rectilinear Kinematics - Erratic Motion (Kinematics of A Particle) ENGINEERS ACADEMY
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Engineering Dynamics by Hibbeler
CHAPTER 12: KINEMATICS OF A PARTICLE
RECTILINEAR KINEMATICS: ERRATIC MOTION
12–44. The v–t graph for a particle moving through an electric field from one plate to another has the shape shown in the figure. The acceleration and deceleration that occur are constant and both have a magnitude of 4 m/s2. If the plates are spaced 200 mm apart, determine the maximum velocity Vmax and the time t' for the particle to travel from one plate to the other. Also draw the s–t graph. When t = t'/2 the particle is at s = 100 mm.
#EngineeringMechanics #Dynamics #Hibbeler Hibbeler Statics - Chapter Playlists
Kindly like, share and comment, this will help to promote my channel!!
Engineering Dynamics by Hibbeler
CHAPTER 12: KINEMATICS OF A PARTICLE
RECTILINEAR KINEMATICS: ERRATIC MOTION
12–44. The v–t graph for a particle moving through an electric field from one plate to another has the shape shown in the figure. The acceleration and deceleration that occur are constant and both have a magnitude of 4 m/s2. If the plates are spaced 200 mm apart, determine the maximum velocity Vmax and the time t' for the particle to travel from one plate to the other. Also draw the s–t graph. When t = t'/2 the particle is at s = 100 mm.
#EngineeringMechanics #Dynamics #Hibbeler Hibbeler Statics - Chapter Playlists
12-44 Rectilinear Kinematics - Erratic Motion (Kinematics of A Particle) ENGINEERS ACADEMY
12-45 Rectilinear Kinematics - Erratic Motion (Kinematics of A Particle) ENGINEERS ACADEMY
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12-43 Rectilinear Kinematics - Erratic Motion (Kinematics of A Particle) ENGINEERS ACADEMY
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