dy(t) + y(t) = cos(t) dt with y(0)=1. The output y(t) of the system is given by A. y(0) = (Gcos(2) + 글 sin() -글e-t) u(0) B. y(t) = (cos()-글e)u(t) C. y(t) = (cos(t) + stn(t) u(t) D. y(t) = (cos(t) +sin(t) +e) u(t) Select one: O A. . O B.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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A system is described by the differential equation
dy(t) + y(t) = cos(t)
dt
with y(0)=1. The output y(t) of the system is given by
A. y(®) = (금cos() + 블 stn(t) -글e)u(0)
B. y(t) = ( cos(t) -e-t) u(t)
C. y(t) (cas(t) 1sin(t) u(t)
D. y(t) = (;cos(t) +stin(t) + e-*) u(t)
+
Select one:
O A. .
O B. .
OC. .
O D. .
Transcribed Image Text:A system is described by the differential equation dy(t) + y(t) = cos(t) dt with y(0)=1. The output y(t) of the system is given by A. y(®) = (금cos() + 블 stn(t) -글e)u(0) B. y(t) = ( cos(t) -e-t) u(t) C. y(t) (cas(t) 1sin(t) u(t) D. y(t) = (;cos(t) +stin(t) + e-*) u(t) + Select one: O A. . O B. . OC. . O D. .
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