Determine the form of the particular solution for the differential equation 2 d v ( t ) d t + v ( t ) = 5 t sin ( t ) Then, find the particular solution [ Hint: The particular solution includes terms with the same functional forms as the terms found in the forcing function and its derivatives.
Determine the form of the particular solution for the differential equation 2 d v ( t ) d t + v ( t ) = 5 t sin ( t ) Then, find the particular solution [ Hint: The particular solution includes terms with the same functional forms as the terms found in the forcing function and its derivatives.
Solution Summary: The author explains the form and value of the solution for the differential equation, which includes terms with the same functional forms as terms found in the forcing functions and its derivatives.
Determine the form of the particular solution for the differential equation
2
d
v
(
t
)
d
t
+
v
(
t
)
=
5
t
sin
(
t
)
Then, find the particular solution [Hint: The particular solution includes terms with the same functional forms as the terms found in the forcing function and its derivatives.
Make the equation s(s+1)(s+2)+K=0 in the form of 1+KF(s) and explain the drawing of root-locus curves. (Note: Indicate the splitting points, centers and angles of the asymptotes)
For the circuit below with the switch closed and then opening at t=0, and R1= 9Ω, R2= 4Ω, L = 9H, C=3F, vg = 7V, calculate the initial conditions. For t > 0, develop the differential equation for the solution using mesh analysis.
When the unit step function is applied to the system input given the block diagram below, the output response takes the value c (0.2) = 0.11 fort = 0.2 s and c (infinity) = 0.333 for t = infinity. What is the steady-state error of the system? calculate
Chapter 4 Solutions
Electrical Engineering: Principles & Applications Plus Mastering Engineering with Pearson eText -- Access Card Package (7th Edition)
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