in (Figure 1), the total resistance is 12.0 ki?, and the batery's emf is 33.0 V. The time constant is measured to be 22.

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answerhappygod
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in (Figure 1), the total resistance is 12.0 ki?, and the batery's emf is 33.0 V. The time constant is measured to be 22.

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In Figure 1 The Total Resistance Is 12 0 Ki And The Batery S Emf Is 33 0 V The Time Constant Is Measured To Be 22 1
In Figure 1 The Total Resistance Is 12 0 Ki And The Batery S Emf Is 33 0 V The Time Constant Is Measured To Be 22 1 (22.3 KiB) Viewed 47 times
In Figure 1 The Total Resistance Is 12 0 Ki And The Batery S Emf Is 33 0 V The Time Constant Is Measured To Be 22 2
In Figure 1 The Total Resistance Is 12 0 Ki And The Batery S Emf Is 33 0 V The Time Constant Is Measured To Be 22 2 (22.3 KiB) Viewed 47 times
In Figure 1 The Total Resistance Is 12 0 Ki And The Batery S Emf Is 33 0 V The Time Constant Is Measured To Be 22 3
In Figure 1 The Total Resistance Is 12 0 Ki And The Batery S Emf Is 33 0 V The Time Constant Is Measured To Be 22 3 (22.3 KiB) Viewed 47 times
in (Figure 1), the total resistance is 12.0 ki?, and the batery's emf is 33.0 V. The time constant is measured to be 22.0 Figure R ww E + S 1ef1 Part A Calculate the total capacitance of the circuit. Express your answer with the appropriate units. Ca Submit Part B t- μA + Value Request Answer Value Calculate the time it takes for the voltage across the resistor to reach 17.0 V after the switch is closed. Express your answer with the appropriate units. A → Submit Bequest Ana Units A ? Units ?
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