Soru

Zorluk: KolayElectric 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 load resistor of 5.0 Ω5.0\text{ }\Omega. What is the terminal potential difference across the battery in volts?

Cevap: 10 V

Cevap

The terminal potential difference across the battery is 10.0 V10.0\text{ V}.
The total resistance in the circuit is the sum of the external load resistance and the battery's internal resistance (Rtotal=5.0 Ω+1.0 Ω=6.0 ΩR_{\text{total}} = 5.0\text{ }\Omega + 1.0\text{ }\Omega = 6.0\text{ }\Omega). The current drawn from the battery is I=12.0 V6.0 Ω=2.0 AI = \frac{12.0\text{ V}}{6.0\text{ }\Omega} = 2.0\text{ A}. The terminal potential difference available to the external load is V=IR=2.0 A×5.0 Ω=10.0 VV = I \cdot R = 2.0\text{ A} \times 5.0\text{ }\Omega = 10.0\text{ V}.

Adım Adım Çözüm

1
Find the total circuit resistance including internal resistance
Rtotal=5.0 Ω+1.0 Ω=6.0 ΩR_{\text{total}} = 5.0\text{ }\Omega + 1.0\text{ }\Omega = 6.0\text{ }\Omega
The internal resistance of the cell acts in series with the external load resistor.
2
Determine total current in the circuit
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}
By Ohm's law, current equals total electromotive force divided by total circuit resistance.
3
Compute the terminal potential difference
V=I×R=2.0 A×5.0 Ω=10.0 VV = I \times R = 2.0\text{ A} \times 5.0\text{ }\Omega = 10.0\text{ V}
Terminal voltage is the voltage drop across the load resistor, equivalent to EIrE - I \cdot r.

Anahtar Kavram

Terminal Potential Difference and Internal Resistance
Bu soruyu puanla