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.
O Draw the four possible negative feedback
contigurations of an op-amp. Write the
input and output impedances of these
configurations in ideal cases.
5
E9.6 Determine the average power absorbed by the 4-2 and 3-2 resistors in Fig. E9.6.
302
j20
Figure E9.3
4Ω
ww
Figure E9.6
12/0° V
j30
-j2 N
13/10° A
(+60° V
(OEF
-160
For
the
P-channel
JFET
given in
the following figure,
the
IDSS = 2MA
a)
Determine
IDQ
and
VSDQ
b)
Determine
the
source-follower circuit
transistor parameters are:
Vp = +1,75 V, and λ=0.
Small-signal voltage gain, Av = So
VDD = 10V
R₁ = 90kr
Rs =5k
CC1
WW
R₂ = 110kn
50
C02
BL = 10 kr
GND
Chapter 4 Solutions
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