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A 40 ohm resistor, 3 mH inductor and 2 m...

A 40 ohm resistor, 3 mH inductor and `2 mu F` capacitor are connected in series to a 110 V, 5000 Hz a.c. source. Calculate the value of current in the circuit.

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To solve the problem, we need to calculate the current in a series circuit consisting of a resistor, inductor, and capacitor connected to an AC source. Here’s a step-by-step solution: ### Step 1: Identify the given values - Resistance (R) = 40 ohms - Inductance (L) = 3 mH = \(3 \times 10^{-3}\) H - Capacitance (C) = 2 µF = \(2 \times 10^{-6}\) F - Voltage (V) = 110 V (RMS) - Frequency (f) = 5000 Hz ...
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PRADEEP-ELECTROMAGNETIC INDUCTION & ALTERNATING CURRENT-Exercise
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  2. A 25 muF capacitor, a 0.1 H inductor and a 25 Omega resistor are conne...

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  3. A 40 ohm resistor, 3 mH inductor and 2 mu F capacitor are connected in...

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  7. An inductance of 2.0 H, a capacitance of 18 muF and a resistance of 10...

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  8. A series LER circuit with C = 80 mu F, L = 5.0 H and R = 40 Omega is c...

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  9. In a series LCR circuit, the resonance frequency is 800 Hz. The half p...

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  10. A capacitor, a resistor and a 40 mH inductor are connected in series t...

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  12. A capacitor of 50 mu F, a resistor of 10 ohm and an inductor L are in ...

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  18. An emf E=100 sin 314 t V is applied across a pure capacitor of 637muF....

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  19. Find the natural frequency of a circuit containing inductance of 100 m...

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  20. A 100 mu F capacitor is charged to a potentail of 50 V. The battery is...

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