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6. [-/8 Points] DETAILS SERPSE10 27.3.OP.018.
MY NOTES ASK YOUR TEACHER
Consider the circuit shown in the figure, where $\mathcal{E}_1 = 20.7 \text{ V}$, $\mathcal{E}_2 = 15.3 \text{ V}$, and $R = 13.0 \,\Omega$. (Due to the nature of this problem, do not use rounded intermediate values in your calculations---including answers submitted in WebAssign.)
28.0 $\Omega$
12.0 $\Omega$
(a) What is the current (in A) in each resistor?
$I_1 = \text{ A}$
$I_2 = \text{ A}$
$I_3 = \text{ A}$
(b) What is the power (in W) delivered to each resistor?
$P_1 = \text{ W}$
$P_2 = \text{ W}$
$P_3 = \text{ W}$
(c) What is the total power (in W) supplied by both batteries?
$\text{ W}$
(d) What is the relationship between the total power supplied by the batteries and the power delivered to each resistor?
$\circ$ The total power supplied by the batteries is equal to the sum of the power delivered to each resistor.
$\circ$ The total power supplied by the batteries is greater than the sum of the power delivered to each resistor.
$\circ$ The total power supplied by the batteries is less than the sum of the power delivered to each resistor