The following system has two loads. The first load Z draws an apparent power of 30...
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The following system has two loads. The first load Z₁ draws an apparent power of 30 kVA with a power factor of 0.9 lagging. The second load draws 40 kW of power with a power factor of 0.795 lagging. The voltage across the two loads equals 240 Vrms. (i) (20 points) Calculate the average (or real) power and reactive power for both loads; (ii) (20 points) Find the currents going to each load; (iii) (10 points) Calculate the the time domain voltage source v,(t) and the power factor at the source, assuming that it is operating at 60 Hz. w 0.1Ω 0000 0.1Ω Vs + Z₁ Z2 240/0°V rms The following system has two loads. The first load Z₁ draws an apparent power of 30 kVA with a power factor of 0.9 lagging. The second load draws 40 kW of power with a power factor of 0.795 lagging. The voltage across the two loads equals 240 Vrms. (i) (20 points) Calculate the average (or real) power and reactive power for both loads; (ii) (20 points) Find the currents going to each load; (iii) (10 points) Calculate the the time domain voltage source v,(t) and the power factor at the source, assuming that it is operating at 60 Hz. w 0.1Ω 0000 0.1Ω Vs + Z₁ Z2 240/0°V rms
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i To calculate the average or real power and reactive power for both loads we can use the following ... View the full answer
Related Book For
Microeconomics An Intuitive Approach with Calculus
ISBN: 978-0538453257
1st edition
Authors: Thomas Nechyba
Posted Date:
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