# load resistance, R=100ohmtotal emf, E=1.527Vmeasured current, I=0.015Ameasured voltage, V=1.527V this is parallel batteries Q1) calculate the combined internal resistance r of the three batteries Q2) assuming the internal resistances of the three batteries are equal, calculate the internal resistance per battery from your indirect measurement of the total internal resistance r Q3) assuming the emfs of the three batteries were all equal to some value E, what would be the expected emf of the combination

load resistance, R=100ohmtotal emf, E=1.527Vmeasured current, I=0.015Ameasured voltage, V=1.527V

this is parallel batteries

Q1) calculate the combined internal resistance r of the three batteries

Q2) assuming the internal resistances of the three batteries are equal, calculate the internal resistance per battery from your indirect measurement of the total internal resistance r

Q3) assuming the emfs of the three batteries were all equal to some value E, what would be the expected emf of the combination

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The post load resistance, R=100ohmtotal emf, E=1.527Vmeasured current, I=0.015Ameasured voltage, V=1.527V this is parallel batteries Q1) calculate the combined internal resistance r of the three batteries Q2) assuming the internal resistances of the three batteries are equal, calculate the internal resistance per battery from your indirect measurement of the total internal resistance r Q3) assuming the emfs of the three batteries were all equal to some value E, what would be the expected emf of the combination appeared first on Superb Professors.