In the phasor-domain circuit represented below, let V₁ = 10/–80° V, V₂ = 4/0°V, and V3 = 2/-23°V. Calculate I1 and I2. I₂ Hint: • j30 92 V₁ 55 92 V₂ +21 -j20 92 V₂ +21 You may need to use the mesh-current method in the phasor domain. To solve for I₁ and I2, you must write the equations in a matrix form Writing phasors in a rectangular form will allow you to group similar terms.

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.6P: (a) Transform v(t)=75cos(377t15) to phasor form. Comment on whether =377 appears in your answer. (b)...
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In the phasor-domain circuit represented below, let V₁ = 10/–80° V,
V₂ = 4/0°V, and V3 = 2/-23°V. Calculate I1 and I2.
I₂
j30 92
V₁
55 92
V₂
+21
-j20 92
V₂
+21
Hint:
• You may need to use the mesh-current method in the phasor domain.
To solve for I₁ and I2, you must write the equations in a matrix form.
Writing phasors in a rectangular form will allow you to group similar
terms.
Transcribed Image Text:In the phasor-domain circuit represented below, let V₁ = 10/–80° V, V₂ = 4/0°V, and V3 = 2/-23°V. Calculate I1 and I2. I₂ j30 92 V₁ 55 92 V₂ +21 -j20 92 V₂ +21 Hint: • You may need to use the mesh-current method in the phasor domain. To solve for I₁ and I2, you must write the equations in a matrix form. Writing phasors in a rectangular form will allow you to group similar terms.
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