the current and (b) the power dissipated in
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A 58.3-Ω resistor is connected in parallel with a 140.0-Ω resistor. This parallel group is connected in series with a 23.0-Ω resistor. The total combination is connected across a 11.8-V battery. Find (a) the current and (b) the power dissipated in the 140.0-Ω resistor.
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- Two resistors, 60.1 and 68.1N, are connected in parallel. The current through the 68.1-2 resistor is 3.58A. (a) Determine the current in the other resistor. (b) What is the total power supplied to the two resistors?Consider the circuit shown below. The resistor has R= 40 ohms and the capacitor has C= 6 x10^-6 F. Initially the switch is open and there is no charge on the capacitor and no current in the resistor. At a time after the switch is closed the current in the resistor is 2 A and the charge on the capacitor is q= +3.00 x 10^-4 C. What is the emf of the battery?Three resistors having resistances of R1 = 1.76 Ω , R2 = 2.64 Ω and R3 = 4.84 Ω respectively, are connected in series to a 27.7 V battery that has negligible internal resistance. Find the total current through the battery, the voltage across each resistor, and the power dissipated in each resistor.
- A student in the laboratory connects a 17 Ω resistor, a 26 Ω resistor, and a 34 Ω resistor in parallel and then connects the arrangement to a 46 V dc source. (a) What is the current? A(b) What is the power? W(a) Given a 52.0 V battery and 20.0 Ω and 84.0 Ω resistors, find the current (in A) and power (in W) for each when connected in series. I20.0 Ω= A P20.0 Ω= W I84.0 Ω= A P84.0 Ω= W (b)Repeat when the resistances are in parallel. I20.0 Ω= A P20.0 Ω= W I84.0 Ω= A P84.0 Ω= WChapter 20: Question on combined circuit A 57.7-Q resistor is connected in parallel with a 94.49-Q resistor. This parallel group is connected in series with a 25.6-Q resistor. The total combination is connected across a 13.5-V battery. Find (a) the current and (b) the power dissipated in the 94.49-Q resistor. R₁ ww R3 ww R₂ www F