spring-mass-damper system is driven by a triangular wave forcing function as described by the equation: PLEASE SEE THE IMAGE in attachment, where PLEASE SEE THE IMAGE in attachment:See the waveform sketch below. Hint: You know the frequency-dependent mechanical impedance of a mass-spring-damper system, and you know that superposition applies.(a.) Find the real-valued velocity response v(t) = dx/dt.(b.) Is the output v(t) also a triangular wave? Explain briefly.(c.) What is the mean square velocity v^2.(d.) Find the average power W dissipated per cycle.

A spring-mass-damper system is driven by a triangular wave forcing function as described by the equation: PLEASE SEE THE IMAGE in attachment, where PLEASE SEE THE IMAGE in attachment:See the waveform sketch below. Hint: You know the frequency-dependent mechanical impedance of a mass-spring-damper system, and you know that superposition applies.(a.) Find the real-valued velocity response v(t) = dx/dt.(b.) Is the output v(t) also a triangular wave? Explain briefly.(c.) What is the mean square velocity v^2.(d.) Find the average power W dissipated per cycle.