R3 = 2 0 R33 = 42 V2 = 3 V V1 = 3 V R1 = 30 V11 = 2 V
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For the circuit below, determine the current passing through V1, V2, & R3.
I1 =
I2 =
I3 =
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- A voltage source, V, supplying 100 V, is connected to two resistors R1, with a resistance of 400Ω, and R2, with a resistance of 550Ω. R1 and R2 are in series. The voltage source has an internal resistance Ri, which is equal to 50Ω. Draw and annotate an electrical circuit model for this circuit. Use, as a minimum, V, I, R1, R2 and Ri to annotate your diagram. Find the current, I, that flows through the circuit, in Amps. Find the voltage drops across the resistors R1 and R2, in Volts.In the circuit below, V1 = 11, V2 = 2, R1 = 8, R2 = 3, and R3 = 6. Find 1, 12, and 13. R3 R1 R2 3.I need help with part d and e please
- part e and fCould you please explain how to do this? I really dont understand it and could use a clear explanation.An electric circuit consisting of wires, batteries and resistors is shown. All currents have been labeled and assigned directions. a.) Which statement is a correct expression of Kirchhoff's Junction Rule for currents with labels and directions assigned on the above figure? I1 + I2 + I3 = 0 I1 - I2 + I3 = 0 None of these statements are correct. I1 - I2 - I3 = 0 I1 + I2 - I3 = 0 b.) Which statement is a correct expression of Kirchhoff's Loop Rule for the sum of voltage changes for the large outer loop? 18.0 V - (80.0 Ω)I1 + 12.0 V + (50.0 Ω)I3 + (80.0 Ω)I3 = 0 18.0 V - (80.0 Ω)I1 - 12.0 V + (50.0 Ω)I3 + (80.0 Ω)I3 = 0 None of these statements are correct. 18.0 V - (80.0 Ω)I1 + 12.0 V - (50.0 Ω)I3 - (80.0 Ω)I3 = 0 -18.0 V - (80.0 Ω)I1 - 12.0 V + (50.0 Ω)I3 + (80.0 Ω)I3 = 0 18.0 V - (80.0 Ω)I1 - 12.0 V - (50.0 Ω)I3 - (80.0 Ω)I3 = 0