Consider a load impedance of Z = j w L connected to a voltage and V let the current drawn be I . (a) Develop an expression for the reactive power Q in terms of ω , L , and I , from complex power considerations. (b) Let the instantaneous current be i ( t ) = 2 I cos ( ω t + θ ) . Obtain an expression for the instantaneous power p ( t ) into L , and then express it in terms of Q. (c) Comment on the average real power P supplied to the inductor and the instantaneous power supplied.
Consider a load impedance of Z = j w L connected to a voltage and V let the current drawn be I . (a) Develop an expression for the reactive power Q in terms of ω , L , and I , from complex power considerations. (b) Let the instantaneous current be i ( t ) = 2 I cos ( ω t + θ ) . Obtain an expression for the instantaneous power p ( t ) into L , and then express it in terms of Q. (c) Comment on the average real power P supplied to the inductor and the instantaneous power supplied.
Solution Summary: The author explains the expression for reactive power and instantaneous power in terms of L and Q.
Consider a load impedance of
Z
=
j
w
L
connected to a voltage and V let the current drawn be I.
(a) Develop an expression for the reactive power Q in terms of
ω
,
L
, and I, from complex power considerations.
(b) Let the instantaneous current be
i
(
t
)
=
2
I
cos
(
ω
t
+
θ
)
. Obtain an expression for the instantaneous power
p
(
t
)
into L, and then express it in terms of Q.
(c) Comment on the average real power P supplied to the inductor and the instantaneous power supplied.
If Req = 60 Ω in the circuit shown, If a voltage source of 10V is connected to the terminals in the given circuit, determine the current and voltage foreach resistor.
If Req = 60 Ω in the circuit shown, (a) solve for the value of R. (b) If a voltage source of 10V is connected to the terminals in the given circuit, determine the current and voltage foreach resistor. Please show the complete solution.
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