Chapter 27: 2P (page 795)
In Figure, the ideal batteries have emfs =150 V and=50 V and the resistances are=3.0 Ω and=2.0 Ω. If the potential at Pis 100 V, what is it at Q?

Short Answer
The potential at point Q is.
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Chapter 27: 2P (page 795)
In Figure, the ideal batteries have emfs =150 V and=50 V and the resistances are=3.0 Ω and=2.0 Ω. If the potential at Pis 100 V, what is it at Q?

The potential at point Q is.
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In Fig. 27-69,, , and the ideal battery has emf . What is the current at point a if we close (a) only switch, (b) only switches and, and (c) all three switches?

Question: Nine copper wires of length land diameter dare connected in parallel to form a single composite conductor of resistance R. What must be the diameter Dof a single copper wire of length lif it is to have the same resistance?
You are to connect resistors R1and R2, with, to a battery, first individually, then in series, and then in parallel. Rank those arrangements according to the amount of current through the battery, greatest first.
In Fig. 27-54, the resistances areand , and the ideal batteries have emf and . What are the (a) size and (b) direction (up or down) of the current in battery 1, the (c) size and (d) direction of the current in battery 2, and the (e) size and (f) direction of the current in battery 3? (g) What is the potential difference ?
Cap-monster maze.In Fig. 27-22, all the capacitors have a capacitance of, and all the batteries have an emf of 10 V. What is the charge on capacitor C? (If you can find the proper loop through this maze, you can answer the question with a few seconds of mental calculation).

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