In the figure 1 = 4.38 V, 2 = 1.17 V, R₁ = 3.970, R₂ = 1.902, R3 = 4.782, and both batteries are ideal. What is the rate at which energy is dissipated in (a) R₁, (b) R2, and (c) R3? What is the power of (d) battery 1 and (e) battery 2? ww R₁ R₂ -18₁ Rg Ef (a) Number i ! Units (b) Number Units (c) Number i Units (d) Number i Units (e) Number i Units ! ! ! 11⁰1⁰

Principles of Physics: A Calculus-Based Text
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ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter21: Current And Direct Current Circuits
Section: Chapter Questions
Problem 1OQ: If the terminals of a battery with zero internal resistance are connected across two identical...
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In the figure 1 = 4.38 V, 2 = 1.17 V, R₁ = 3.972, R₂ = 1.90 S2, R3 = 4.782, and both batteries are ideal. What is the rate at which energy
is dissipated in (a) R₁, (b) R2, and (c) R3? What is the power of (d) battery 1 and (e) battery 2?
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R₁
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R₂
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(a) Number i
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(c) Number
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(d) Number i
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Transcribed Image Text:In the figure 1 = 4.38 V, 2 = 1.17 V, R₁ = 3.972, R₂ = 1.90 S2, R3 = 4.782, and both batteries are ideal. What is the rate at which energy is dissipated in (a) R₁, (b) R2, and (c) R3? What is the power of (d) battery 1 and (e) battery 2? ww R₁ www R₂ - 18₁ R$ Ef (a) Number i ! Units (b) Number Units (c) Number i Units (d) Number i ! Units (e) Number i ! Units ! [|]]] W W W W W
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