B A cylinder of mass 10.5-kg rolls without slipping on an incline and is attached at the cylinder center to a spring wit
Posted: Mon May 02, 2022 11:11 am
Please answer A doing both approaches (ie do part i and ii)
B A cylinder of mass 10.5-kg rolls without slipping on an incline and is attached at the cylinder center to a spring with a spring constant 1200 N/m as shown. R Determine the natural period of oscillation, using i. the moment balance approach, and ii. the conservation of energy approach b. If the center of the cylinder is displaced 1.35-cm downslope and released from rest, determine the maximum speed of the center of the cylinder. B
B A cylinder of mass 10.5-kg rolls without slipping on an incline and is attached at the cylinder center to a spring with a spring constant 1200 N/m as shown. R Determine the natural period of oscillation, using i. the moment balance approach, and ii. the conservation of energy approach b. If the center of the cylinder is displaced 1.35-cm downslope and released from rest, determine the maximum speed of the center of the cylinder. B