(15 points) A mass of 3 kg is attached with a spring constant of 12. I released the mass from a point of 0.1 m above equilibrium with a downward velocity of 0.3 m/s. The spring is immersed in a liquid that imparts a damping force that is 6 times the instantaneous velocity. Set up the ODE that models this situation, and solve it to find the equation of motion.
(15 points) A mass of 3 kg is attached with a spring constant of 12. I released the mass from a point of 0.1 m above equ
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(15 points) A mass of 3 kg is attached with a spring constant of 12. I released the mass from a point of 0.1 m above equ
please help learn how to solve this step by step thanks 
(15 points) A mass of 3 kg is attached with a spring constant of 12. I released the mass from a point of 0.1 m above equilibrium with a downward velocity of 0.3 m/s. The spring is immersed in a liquid that imparts a damping force that is 6 times the instantaneous velocity. Set up the ODE that models this situation, and solve it to find the equation of motion.
(15 points) A mass of 3 kg is attached with a spring constant of 12. I released the mass from a point of 0.1 m above equilibrium with a downward velocity of 0.3 m/s. The spring is immersed in a liquid that imparts a damping force that is 6 times the instantaneous velocity. Set up the ODE that models this situation, and solve it to find the equation of motion.
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