A particle of mass M = 0.2 kg is initially at rest in the xy-plane at...
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A particle of mass M = 0.2 kg is initially at rest in the xy-plane at a point (x = -l, y = -h), where l = 10 m 10 m/s along the and h = 1 m. The particle is accelerated at time t = 0 with a constant acceleration a = positive x-direction. Its angular momentum and torque with respect to the origin, in SI units, are represented by I and respectively. i,j and k are unit vectors along the positive x, y and z-directions, respectively. If k=ix then which of the following statement(s) is(are) correct? (A) The particle arrives at the point (x = l, y = -h) at time t = 2 s. (B) 7 = 2k when the particle passes through the point (x = l, y = -h) (C) L = 4k when the particle passes through the point (x = l, y = -h) (D) t = k when the particle passes through the point (x = 0, y = -h) A particle of mass M = 0.2 kg is initially at rest in the xy-plane at a point (x = -l, y = -h), where l = 10 m 10 m/s along the and h = 1 m. The particle is accelerated at time t = 0 with a constant acceleration a = positive x-direction. Its angular momentum and torque with respect to the origin, in SI units, are represented by I and respectively. i,j and k are unit vectors along the positive x, y and z-directions, respectively. If k=ix then which of the following statement(s) is(are) correct? (A) The particle arrives at the point (x = l, y = -h) at time t = 2 s. (B) 7 = 2k when the particle passes through the point (x = l, y = -h) (C) L = 4k when the particle passes through the point (x = l, y = -h) (D) t = k when the particle passes through the point (x = 0, y = -h)
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