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| 1 . |
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Use superposition to find the current through resistor R1.
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| 2 . |
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In problem 1, find the power delivered to R1 for each source.
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| 3 . |
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In problem 1, find the power delivered to R1 using the total current found.
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| 4 . |
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How does the sum of the powers in problem 2 compare to the total power found in problem 3?
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| 5 . |
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Find the voltage V using superposition.
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| 6 . |
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Find the current I in the circuit for problem 5.
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| 7 . |
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Find the Thevenin's equivalent circuit external to the resistor RL.
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| 8 . |
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In the circuit of problem 7, find the current through RL when it is 4 ohms.
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| 9 . |
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Find the Thevenin's equivalent circuit external to RL.
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| 10 . |
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Find the Thevenin's equivalent circuit.
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| 11 . |
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In the circuit for problem 10, find the power delivered to RL if it is 8 ohms.
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| 12 . |
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Find the Norton equivalent of the circuit used in problem 7.
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| 13 . |
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Find the Norton equivalent circuit of the circuit used in problem 9.
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| 14 . |
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Find the Norton equivalent circuit for the circuit used in problem 10.
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| 15 . |
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In the Norton equivalent circuit of problem 14, find the power delivered to the load resistor if it is 4 ohms.
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| 16 . |
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Using the Norton equivalent circuit in problem 12, find the power delivered to a 4 ohm load resistor.
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| 17 . |
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Find the Norton equivalent circuit external to the load resistor.
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| 18 . |
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Find the power delivered to the load in problem 17 if RL =8 ohms.
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| 19 . |
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Find the value for R for maximum power to R.
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| 20 . |
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Determine the maximum power to R in problem 19.
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| 21 . |
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Find the value for RL for maximum power to RL.
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| 22 . |
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Find the maximum power to RL in problem 21.
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| 23 . |
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Find the voltage VL using Millman's theorem.
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| 24 . |
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Find the Norton's equivalent circuit external to the points a and b.
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| 25 . |
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Find the load current IL in problem 24.
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Answer choices in this exercise are randomized and will appear in a different order each time the page is loaded.
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