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Step 1:

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Draw a circuit diagram using above specifications.

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\"\"

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Apply Kirchoff Voltage law to the first loop.

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\"\"

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Apply Kirchoff voltage law to the second loop.

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\"\"

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Substitute \"\" in the equation \"\".

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\"\"

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\"\"

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Hence the current passing through the load resistor is 0.7059 A.

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Step 2:

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Find voltage drop across the load resistor.

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Voltage across the load resistor is \"\".

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\"\"

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Hence voltage across the load resistor is 5.6472 v.

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Solution :

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Voltage across the load resistor is 5.6472 v.

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Step 1:

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(2.1)

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The resistance of the circuit is \"\".

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The inductance of the circuit is 0.1 H.

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The capacitance of the circiut is \"\".

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The resonance frequency of a circuit is \"\".

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\"\"

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Resonant frequency is 35.588 Hz.

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Solution :

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Resonant frequency is 35.588 Hz.

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Step 1:

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(2.2)

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Find the impedance of the circuit.

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Assume input frequency as 60 Hz.

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Impedance due to resistor element is \"\".

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Impedance due to inductor element is

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\"\".

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 Impedance due to capacitive element is

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\"\"

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First Resistance and inductor is in series, hence \"\".

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\"\"

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The equilvalent series impedance is parallel to the capacitance, \"\".

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\"\"

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Total impedance of the circuit is \"\".

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Solution :

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Total impedance of the circuit is \"\".

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Step 1:

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(2.3)

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Find the total current.

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Applied voltage is 200 v.

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Total impedance of the circuit is \"\".      (From 2.2)

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Total current in the circuit is \"\".

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\"\"

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Total current in the circuit is \"\".

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Solution :

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Total current in the circuit is \"\".

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(2.4)

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Draw the phasor diagram.

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Total current in the circuit is \"\".     (From 2.3)

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\"\" can be written as \"\".

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Phasor diagram :

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Plot the phasor diagram \"\".

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\"\"

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Advantages of an LC filter :

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(1) It is less dependent on the load current.

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(2) DC voltage drop across L is much smaller because its de resistance R is very small.

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(3) In choke input filter, current flows continuously. Therefore the transformer is used more efficiently.

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(4) Ripplle content at the output is low.

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Voltage Regulation :

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Voltage regulation is found on nearly every distribution circuit.

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It is important to maintain a consistent voltage so that lighting, appliances, motors, and the power system itself work as efficiently as possible.

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SEL voltage regulation products monitor and control voltage regulators and allow for advanced capabilities such as remote engineering access, built-in logic, and advanced control based on voltage profile, time-of-day, or other dynamic events.

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