.The single-phase three-wire system of Fig. 12.31 has three separate load impedances. If the source is balanced and Van = 110+ j0 V rms, (a) express Van and Vbn in phasor notation. (b) Determine the phasor voltage which appears across the impedance Z3. (c) Determine the average power delivered by the two sources if Z₁ = 50+ jo 2, Z₂ = 100+ j45 2, and Z3 100-j90 22. (d) Represent load Z3 by a series connection of two elements, and state their respective values if the sources operate at 60 Hz.

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anyone help me with problem number 11 ?? 

11. The single-phase three-wire system of Fig. 12.31 has three separate load
impedances. If the source is balanced and Van = 110 + j0 V rms, (a) express
Van and Von in phasor notation. (b) Determine the phasor voltage which
appears across the impedance Z3. (c) Determine the average power delivered
by the two sources if Z₁ = 50+ j0 S2, Z₂ = 100+ j45 2, and
Z3 100j90 2. (d) Represent load Z3 by a series connection of two
elements, and state their respective values if the sources operate at 60 Hz.
12. For the system represented in Fig. 12.32, the ohmic losses in the neutral wire
are so small they can be neglected and it can be adequately modeled as a short
an
Vnh
n
-070.
A
B
N
Z3
Transcribed Image Text:11. The single-phase three-wire system of Fig. 12.31 has three separate load impedances. If the source is balanced and Van = 110 + j0 V rms, (a) express Van and Von in phasor notation. (b) Determine the phasor voltage which appears across the impedance Z3. (c) Determine the average power delivered by the two sources if Z₁ = 50+ j0 S2, Z₂ = 100+ j45 2, and Z3 100j90 2. (d) Represent load Z3 by a series connection of two elements, and state their respective values if the sources operate at 60 Hz. 12. For the system represented in Fig. 12.32, the ohmic losses in the neutral wire are so small they can be neglected and it can be adequately modeled as a short an Vnh n -070. A B N Z3
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