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Compared to an ideal battery, by what percentage does the battery’s internal resistance reduce the potential difference across the 20Ωresistor in FIGURE EX28.20?

Short Answer

Expert verified

percentage of the battery's internal resistance reduce the potential difference across the 20Ωresistor in3.3%.

Step by step solution

01

Given Information   

We have to find the percentage of battery's internal resistance reduce the potential diffrence across the 20Ωresistor.

02

Simplify  

The ideal battery has zero internal resistance r=0. So, determine the voltage across the resistor 20Ωfor the ideal battery. For the ideal battery, the voltage across the combination of both resistors 20Ωand 10Ωis the same for the battery V=ε=15V.So, calculating the current through the circuit by

I=VReq=VR1+R2

Putting the values for V,R1and R2into equation (1)to get Iby

I=VR1+R2=15V10Ω+20Ω=0.5A

The potential difference across the resistor 20Ωis

localid="1648903923181" V20Ω=IR=(0.5A)(20Ω)=10V

This the ideal case. the battery has an internal resistance r=1Ω, the current in equation (1)will be

Ir=εr+R1+R2=15V1Ω+10Ω+20Ω=0.483A

The potential difference across the resistor 20Ωis

V20Ω,r=IR=(0.483A)(20Ω)=9.67V

The percentage of the reduction by

%=V20Ω-V20Ω,rV20Ω(100%)=10V-9.67V10V(100%)=3.3%

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