Consider the causal lti system with system function
Consider the causal LTI system with system functionH(s)=Y(s)/X(s)=1/(s+2)^2
If the input is x(t)=sin(2t) for t>0, find an approximate expression for the response y(t) that is valid for large t.
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Create a base class named Car. The Car class is to have the properties AdjustFactor (double) and InitSpeed (double). There is one overridable method named DeltaSpeed that returns a double; this method computes AdjustFactor * InitSpeed and returns thi
A three-phase Y- connected transformer bank (single phase) consists of three identical step-up transformers rated at 100MVA, 13.8kV:66.4kV. Each transformer has a series impedance of .0045 + j0.19-ohm referred to its 13.8kV winding.
A three-phase Y- connected load is rated at 240 volts with power factor .95 (lagging), if the total apparent power is 240 KVA, compute: a. the phase currents (in polar form). There are 3 values. b. the active and the reactive power of the load at it
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Consider the causal LTI system with system function H(s)=Y(s)/X(s)=1/(s+2)^2 If the input is x(t)=sin(2t) for t>0, find an approximate expression for the response y(t) that is valid for large t.
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Recall that the median is the value in an ordered list of values above and below which there is an equal number of values. The median filter is often employed when one wishes to remove zero-mean additive noise while preserving sharp edges in the o
Consider a causal LTI system defined by the following differential equation d^2y(t)/dt^2 + 2dy(t)/dt = dx(t)/dt + x(t). Find the zero-state response of this system when the input is x(t)=4e^-2t u(t)
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