Chapter 3 – Current Electricity
In circuit shown below, the resistances are given in ohms and the battery is assumed ideal with emf equal to 3 volt. The voltage across the resistance R4 is
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In circuit shown below, the resistances are given in ohms and the battery is assumed ideal with emf equal to 3 volt. The voltage across the resistance R4 is In circuit shown below the resistances are given in ohms and the battery is assumed ideal with emf equal to 3 volt. The voltage across the [...]
The total current supplied to the circuit by the battery is
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The total current supplied to the circuit by the battery is The total current supplied to the circuit by the battery is December 1, 2020 Category: Cengage NEET by C.P Singh , Chapter 3 - Current Electricity , Part 2 ,
The current i5 is
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The current i5 is The current i5 is December 1, 2020 Category: Cengage NEET by C.P Singh , Chapter 3 - Current Electricity , Part 2 ,
The current in 24 Ω will be
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The current in 24 Ω will be The current in 24 Ω will be December 1, 2020 Category: Cengage NEET by C.P Singh , Chapter 3 - Current Electricity , Part 2 ,
The potential difference across 4 Ω will be
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The potential difference across 4 Ω will be The potential difference across 4 Ω will be December 1, 2020 Category: Cengage NEET by C.P Singh , Chapter 3 - Current Electricity , Part 2 ,
A ring is made of a wire having a resistance R0=12Ω. Find the points A and B, as shown in the figure, at which a current carrying conductor should be connected so that the resistance R of the sub circuit between these points is equal to 8/3Ω
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A ring is made of a wire having a resistance R0=12Ω. Find the points A and B, as shown in the figure, at which a current carrying conductor should be connected so that the resistance R of the sub circuit between these points is equal to 8/3Ω A ring is made of a wire having [...]