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Zorluk: OrtaElectric Circuits and Measuring Instruments

A battery with an electromotive force (e.m.f.) of 12.0 V12.0\text{ V} and an internal resistance of 1.0 Ω1.0\text{ }\Omega is connected across a series combination of a 2.0 Ω2.0\text{ }\Omega resistor and a 3.0 Ω3.0\text{ }\Omega resistor. What is the potential difference across the terminals of the battery?

  1. 10.0 V10.0\text{ V}Cevap
  2. B
    12.0 V12.0\text{ V}
  3. C
    2.0 V2.0\text{ V}
  4. D
    6.0 V6.0\text{ V}

Cevap

10.0 V10.0\text{ V}
The total resistance of the circuit is the sum of the external load resistors and the internal resistance (2.0+3.0+1.0=6.0 Ω2.0 + 3.0 + 1.0 = 6.0\text{ }\Omega). The total current is I=12.0 V6.0 Ω=2.0 AI = \frac{12.0\text{ V}}{6.0\text{ }\Omega} = 2.0\text{ A}. The potential difference across the terminals of the battery is the voltage across the external load V=I×Rext=2.0 A×5.0 Ω=10.0 VV = I \times R_{\text{ext}} = 2.0\text{ A} \times 5.0\text{ }\Omega = 10.0\text{ V} (or EIr=12.02.0=10.0 VE - Ir = 12.0 - 2.0 = 10.0\text{ V}).

Adım Adım Çözüm

1
Calculate total external resistance in series
Rext=2.0 Ω+3.0 Ω=5.0 ΩR_{\text{ext}} = 2.0\text{ }\Omega + 3.0\text{ }\Omega = 5.0\text{ }\Omega
Resistors in series add directly to give the total external load resistance.
2
Calculate total circuit resistance including internal resistance
Rtotal=Rext+r=5.0 Ω+1.0 Ω=6.0 ΩR_{\text{total}} = R_{\text{ext}} + r = 5.0\text{ }\Omega + 1.0\text{ }\Omega = 6.0\text{ }\Omega
The cell's internal resistance is in series with the external circuit.
3
Determine the total current drawn from the battery
I=ERtotal=12.0 V6.0 Ω=2.0 AI = \frac{E}{R_{\text{total}}} = \frac{12.0\text{ V}}{6.0\text{ }\Omega} = 2.0\text{ A}
Applying Ohm's law to the entire circuit.
4
Calculate terminal potential difference across the battery
V=EIr=12.0 V(2.0 A×1.0 Ω)=10.0 VV = E - Ir = 12.0\text{ V} - (2.0\text{ A} \times 1.0\text{ }\Omega) = 10.0\text{ V}
Terminal voltage is the e.m.f. minus the lost volts across internal resistance (or equivalently V=I×RextV = I \times R_{\text{ext}}).

Anahtar Kavram

Terminal potential difference vs. electromotive force (e.m.f.) and lost volts
Tahmini Süre:1m 30s
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