(6) The circuits below are in steady state. (a) Find the complex power received by the capacitor, in the circuit on the left. (b) What is the reading X of the voltmeter, in the circuit on the left? (c) I add a new circuit element in series with the current source as illustrated below on the right. As a result, the reactive power supplied by the current source is reduced to zero. What type of element should this new element be and what is its value (i.e., what is its resistance, capacitance or inductance)? black is (↑ V-meter 202 10 mF red ΖΩΤ Type of element black is (↑ is = 5 cos (100t + -A Sc X value V-meter 202 1000 10 mF red 202

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(6)
The circuits below are in steady state.
(a) Find the complex power received by the
capacitor, in the circuit on the left.
(b) What is the reading X of the voltmeter, in the
circuit on the left?
(c) I add a new circuit element in series with the
current source as illustrated below on the
right. As a result, the reactive power
supplied by the current source is reduced to
zero. What type of element should this new
element be and what is its value (i.e., what is
its resistance, capacitance or inductance)?
black
is (↑
V-meter
202
10 mF
red
202
Type of
element
is =
black
is (↑
= 5 cos (100t +) A
Sc
X
value
V-meter
202
000
10 mF
red
202.
Transcribed Image Text:(6) The circuits below are in steady state. (a) Find the complex power received by the capacitor, in the circuit on the left. (b) What is the reading X of the voltmeter, in the circuit on the left? (c) I add a new circuit element in series with the current source as illustrated below on the right. As a result, the reactive power supplied by the current source is reduced to zero. What type of element should this new element be and what is its value (i.e., what is its resistance, capacitance or inductance)? black is (↑ V-meter 202 10 mF red 202 Type of element is = black is (↑ = 5 cos (100t +) A Sc X value V-meter 202 000 10 mF red 202.
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