Determine the form of the particular solution for the differential equation d v ( t ) d t + 3 v ( t ) = t 2 exp ( − 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 d v ( t ) d t + 3 v ( t ) = t 2 exp ( − 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 compares the form of the solution for the given equation and the particular solution.
Determine the form of the particular solution for the differential equation
d
v
(
t
)
d
t
+
3
v
(
t
)
=
t
2
exp
(
−
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
Electrical Engineering: Principles & Applications, Student Value Edition Plus Mastering Engineering with Pearson eText -- Access Card Package (7th Edition)
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