Let a series RLC network be connected to a source voltage V , drawing a current I . (a) In terms of the load impedance Z = Z ∠ Z , find expressions for P and Q, from complex power considerations. (b) Express p ( t ) in terms of P and Q, by choosing i ( t ) = 2 I cos ω t . (c) For the case of Z = R + j ω L + 1 / j ω C , interpret the result of part (b) in terms of P, Q L , and Q c . In particular, if ω 2 LC = 1 , when the inductive and capacitive reactances cancel, comment on what happens.
Let a series RLC network be connected to a source voltage V , drawing a current I . (a) In terms of the load impedance Z = Z ∠ Z , find expressions for P and Q, from complex power considerations. (b) Express p ( t ) in terms of P and Q, by choosing i ( t ) = 2 I cos ω t . (c) For the case of Z = R + j ω L + 1 / j ω C , interpret the result of part (b) in terms of P, Q L , and Q c . In particular, if ω 2 LC = 1 , when the inductive and capacitive reactances cancel, comment on what happens.
Solution Summary: The expression for P and Q is I2Zmathrmcos
Let a series RLC network be connected to a source voltage V, drawing a current I.
(a) In terms of the load impedance
Z
=
Z
∠
Z
, find expressions for P and Q, from complex power considerations.
(b) Express
p
(
t
)
in terms of P and Q, by choosing
i
(
t
)
=
2
I
cos
ω
t
. (c) For the case of
Z
=
R
+
j
ω
L
+
1
/
j
ω
C
, interpret the result of part (b) in terms of
P,
Q
L
, and
Q
c
. In particular, if
ω
2
LC
=
1
, when the inductive and capacitive reactances cancel, comment on what happens.
In the following table, the value of 40 resistors are recorded in ohms.
(a) Construct the frequency distribution table using number of class=5.
(b) Plot the histogram of frequency table.
45
50 61
32
25
50
64
28
40
40
46
47
48
35
58
35
54
38
68
76
19
63
26
65
54
42
68
47
53
36
73
44
49
35
38
42
56
44
45
57
circuit source transformation step by step v0 find
Find Laplace transform and the corresponding ROC for
x(t) = e˜³¹ fτ sin(2t) u(t)dt
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