In the circuit shown above, R1 and R2 are 30 ohms and 60 ohms, respectively, and...
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In the circuit shown above, R1 and R2 are 30 ohms and 60 ohms, respectively, and /1 = 4 amperes. The potential difference across R2 is equal to (A) 30 V (B) 60 V (C) 120 V (D) 240 V (E) a quantity that can't be calculated with the given information R₁ ww Hill In the circuit shown, 4 amperes is the current through R1. The potential difference across R1 is, in volts, (A) 7.5 (B) 30 (C) 60 4A R₁ =30 ww R₂ = 60 12 ww R₁ = 702 ww (D) 120 (E) 160 In the circuit shown above, R1 and R2 are 30 ohms and 60 ohms, respectively, and /1 = 4 amperes. The potential difference across R2 is equal to (A) 30 V (B) 60 V (C) 120 V (D) 240 V (E) a quantity that can't be calculated with the given information R₁ ww Hill In the circuit shown, 4 amperes is the current through R1. The potential difference across R1 is, in volts, (A) 7.5 (B) 30 (C) 60 4A R₁ =30 ww R₂ = 60 12 ww R₁ = 702 ww (D) 120 (E) 160
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