The impulse response of the circuit shown in Figure (a) is known to be h(t) = u(t). (a) Find the transfer function H(s) for this circuit and use that to find the output signal v,(t) when v,(t) =...


The impulse response of the circuit shown in Figure (a) is known to be h(t) = u(t).<br>(a) Find the transfer function H(s) for this circuit and use that to find the output signal v,(t) when<br>v,(t) = 20cos(10t)u(t).<br>(b) Find the output signal in steady-state when v,(t) = 20cos(10t + 30°).<br>(c) Use Convolution Integral to find the output of this circuit when the input is the pulse shown in<br>Figure (b). Plot v,(t).<br>vſt)<br>v,(t)<br>Circuit<br>volt)<br>1 2<br>h(t)=u(t)<br>(a)<br>(b)<br>

Extracted text: The impulse response of the circuit shown in Figure (a) is known to be h(t) = u(t). (a) Find the transfer function H(s) for this circuit and use that to find the output signal v,(t) when v,(t) = 20cos(10t)u(t). (b) Find the output signal in steady-state when v,(t) = 20cos(10t + 30°). (c) Use Convolution Integral to find the output of this circuit when the input is the pulse shown in Figure (b). Plot v,(t). vſt) v,(t) Circuit volt) 1 2 h(t)=u(t) (a) (b)

Jun 11, 2022
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