First, a set of n equal resistors of 10 2 each are connected in series to a battery of emf 20V and internal resistance 10 2. A current I is observed to flow. Then, the n resistors are connected in parallel to the same battery. It is observed that the current is increased 20 times, then the value of n is
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- The figure shows an RC circuit. The switch S is initially open as depicted. We assume that initially all capacitors are uncharged. At time t=0 the switch is closed. Find the current through the red 5000 resistor (a) (b) Just after the switch is closed. When the switch has been closed for a long time. 12V- S m 500Ω www :5μF 2ΚΩ 500Ω HE 2μF M 2ΚΩ www 1kΩ 2ΚΩThree resistors, R1 = 500 Ω, R2 = 600 Ω and, R3 = 230 Ω, are connected in parallel, and to a 12 V battery to form a closed circuit. Calculate the total current that would be measured near the battery's positive terminal, before it forks through the separate resistors.When a 36.0-V emf device is placed across two resistors in series, a current of 15.0 A is flowing in each of the resistors. When the same emf device is placed across the same two resistors in parallel, the current through the emf device is 68.0 A. What is the magnitude of the larger of the two resistances?
- A 65.9-Q resistor is connected in parallel with a 168.1-0 resistor. This parallel group is connected in series with a 30.0-0 resistor. The total combination is connected across a 16.2-V battery. Find (a) the current and (b) the power dissipated in the 168.1-Q resistor. R₁ (a) Number Mi (b) Number i Units Units R3 ww V < R₂Four resistors are connected in a circuit with a battery of unknown emf, as shown below. The battery is ideal, so it has no internal resistance. The current in the 30 2 resistor is 100. milliamps. Note that you should be able to do this problem without a calculator. 20 2 60 Ω 30 2 80 2 (a) Calculate the current in the 60 N resistor. 50 V mA (b) Calculate the current in the 80 N resistor. 150 V mA (c) Calculate the power dissipated in the 20 N resistor. 0.45 (d) Calculate the current in the battery. 300 X mAThe manufacturer of one brand of AAA battery states that the battery’s emf is 1.50 V, its internal resistance is 0.160 Ω, and the maximum allowed current for short times is 2.00 A. Find (a) the smallest resistance to which this battery can be connected for short times and (b) the potential difference across the battery terminals when it is so connected.