题目
题目

190865 Electricity And Magnetism Final Exam (comprehensive)

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In Figure, R1=6.0ΩR_{1}=6.0 \Omega,  R2=18.0ΩR_{2}=18.0 \Omega, and the ideal battery has emf ε=12.0V\varepsilon=12.0\rm{V}. What are the (a) size and (b) direction (left or right) of current i1i_{1}? (c) How much energy is dissipated by all four resistors in 1.00min1.00 \rm{min}? Your answers: (a) the size of the current i1i_{1}is [Fill in the blank], A\rm{A} (b) direction (left or right) of the current i1i_{1} is [Fill in the blank], (c) the energy dissipated by all four resistors in 1.00min1.00 \rm{min} is [Fill in the blank], J\rm{J}

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The provided item is a fill-in-the-blank problem with no explicit answer choices to analyze, so I will lay out a clear, step-by-step approach to solve the circuit quantities asked, and point out what information is required and how to use it. First, restate what is being asked: - (a) Find the magnitude of the current i1 in the circuit. - (b) Determine the direction of i1 (left or right). - (c) Compute the total energy dissipated by all four resistors in 1.00 min. Next, parse the given values and the circuit layout: - R1 = 6.0 Ω - R2 = 18.0 Ω - The ideal battery has emf ε = 12.0 V - The diagram shows a battery, a top resistor labeled R1, and a lower network with resistors labeled R2 in some configuration. The exact connectivity of the resistors (how many R2, whether they’re in series or parallel, and how i1 flows through them......Login to view full explanation

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