Chapter 27: Q33P (page 796)
Question: In Figure, the current in resistance 6 isi6 =1.40 Aand the resistances are What is the emf of the ideal battery?

Short Answer
Answer
The emf of the ideal battery is 48.3 V .
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Chapter 27: Q33P (page 796)
Question: In Figure, the current in resistance 6 isi6 =1.40 Aand the resistances are What is the emf of the ideal battery?

Answer
The emf of the ideal battery is 48.3 V .
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In Fig. 27-41,,, and the ideal batteries have emfs and . What value of results in no current through battery 1?

In Fig. 27-76,. What is the equivalent resistance between points A and B? (Hint: This circuit section might look simpler if you first assume that points A and B are connected to a battery.)

In Fig. 27-25, the ideal batteries have emfs and . What are (a) the current, the dissipation rate in (b) resistor 1?And (c) resistor 2 , and the energy transfer rate in (d) battery 1 and (e) battery 2? Is energy being supplied or absorbed by (f) battery 1 and (g) battery 2?

In Fig. 27-84, , , , , and , and the ideal batteries have emfs and .What are the
(a) size and
(b) direction (up or down) of current i1 and the
(c) size and
(d) direction of current i2? What is the energy transfer rate in
(e) battery 1and
(f) battery 2? Is energy being supplied or absorbed in
(g) battery 1 and
(h) battery 2?

The following table gives the electric potential differenceacross the terminals of a battery as a function of currentbeing drawn from the battery.
(a) Write an equation that represents the relationship betweenand. Enter the data into your graphing calculator and perform a linear regression fit ofversus.From the parameters of the fit, find
(b) the battery’s emf and
(c) its internal resistance.

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