Use nodal analysis to find i.(t) and v, (t), Assign the ground at the bottom node of the circuit. a. Write the nodal equations for the remaining non-reference nodes. b. Simplify the equations. Write the coefficients in matrix form and use Cramer`s rule. Provide numerical values for the nodal voltages. с. Find the power delivered in all the inductance and capacitors. d. Find power delivered in the current source.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Use nodal analysis to find i.(t) and v. (t), Assign the ground at the bottom node of the
circuit.
a. Write the nodal equations for the remaining non-reference nodes.
b. Simplify the equations. Write the coefficients in matrix form and use Cramer's rule.
Provide numerical values for the nodal voltages.
c. Find the power delivered in all the inductance and capacitors.
d. Find power delivered in the current source.
200µF
70Ω
30Ω
252
io
100μ
152
Vo
2cos (200t+72) A
10Ω
3mH
5mH
26cos (200t-25°) V
Transcribed Image Text:Use nodal analysis to find i.(t) and v. (t), Assign the ground at the bottom node of the circuit. a. Write the nodal equations for the remaining non-reference nodes. b. Simplify the equations. Write the coefficients in matrix form and use Cramer's rule. Provide numerical values for the nodal voltages. c. Find the power delivered in all the inductance and capacitors. d. Find power delivered in the current source. 200µF 70Ω 30Ω 252 io 100μ 152 Vo 2cos (200t+72) A 10Ω 3mH 5mH 26cos (200t-25°) V
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