Consider an electric circuit below that consists of five resistors connected to a battery proving potential difference e =210 mV. The resistances of the resistors are: R1= 4.0 N, R2= 3.0 N, R3= 6.0 N, R4= 2.0 N, and R5= 5.0 SN. %3D

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Consider an electric circuit below that consists of five resistors connected to a battery proving
potential difference e =210 mV.
The resistances of the resistors are: R1= 4.0 S, R2= 3.0 N, R3= 6.0 N, R4= 2.0 N, and R5= 5.O N.
R1
R2
R4
R3
R5
Complete the following calculations and show all steps necessary and making sure it is clear which
part you are solving for.
a) Determine the equivalent resistance of the circuit. Include all necessary sketches, annotations
and labels in this section.
b) Determine the total current in the circuit
c) Determine potential difference across the resistor R1.
d) Determine the power dissipated by resistor R4.
Enter the answer to part d) below. Provide your answer in milliwatts with a precision of two places
after decimal.
Transcribed Image Text:Consider an electric circuit below that consists of five resistors connected to a battery proving potential difference e =210 mV. The resistances of the resistors are: R1= 4.0 S, R2= 3.0 N, R3= 6.0 N, R4= 2.0 N, and R5= 5.O N. R1 R2 R4 R3 R5 Complete the following calculations and show all steps necessary and making sure it is clear which part you are solving for. a) Determine the equivalent resistance of the circuit. Include all necessary sketches, annotations and labels in this section. b) Determine the total current in the circuit c) Determine potential difference across the resistor R1. d) Determine the power dissipated by resistor R4. Enter the answer to part d) below. Provide your answer in milliwatts with a precision of two places after decimal.
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