1. A piece of equipment consumes 3800 W when supplied with 250 V and takes a leading current of 25 A. If a single unknown element is connected in parallel with the equipment so that the total impedance will be non- inductive resistance, calculate its value and its resistance of the circuit. The supply frequency is 50 Hz. 2 A coil takes 30 A at 0 84 laggng power factor when connected to a 250 V. 60 Hz supply Determine

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Subject: Electrical Circuits 2 (Electrical Engineering)

EE 2 (Electrical Circuits 2)
Directions: Solve the following problems completely. Enclose your final answer in a BOX.
1. A piece of equipment consumes 3800 W when supplied with 250 V and takes a leading current of 25 A. If a
single unknown element is connected in parallel with the equipment so that the total impedance will be non-
inductive resistance, calculate its value and its resistance of the circuit. The supply frequency is 50 Hz.
2. A coil takes 30 A at 0.84 lagging power factor when connected to a 250 V, 60 Hz supply. Determine
the value of a single element to be connected and power taken by the circuit which when connected
in parallel with the circuit will reduce the line current to a minimum
Transcribed Image Text:EE 2 (Electrical Circuits 2) Directions: Solve the following problems completely. Enclose your final answer in a BOX. 1. A piece of equipment consumes 3800 W when supplied with 250 V and takes a leading current of 25 A. If a single unknown element is connected in parallel with the equipment so that the total impedance will be non- inductive resistance, calculate its value and its resistance of the circuit. The supply frequency is 50 Hz. 2. A coil takes 30 A at 0.84 lagging power factor when connected to a 250 V, 60 Hz supply. Determine the value of a single element to be connected and power taken by the circuit which when connected in parallel with the circuit will reduce the line current to a minimum
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