R. = 8 kn :V = 2.7 V V = 2.2 V IER = 8 kQ -V = 2.7 V V = 2.2 V R, = 4 kn R, = 4 kn R, = 4 ko R, = 4 kn A -B T, a) What is the current through each resistor in part A (in mA)? (Indicate the direction with the signs of your answers.) mA I3 = b) What is the current through each resistor in part B (in mA)? (Indicate the direction with the signs of your answers.)
R. = 8 kn :V = 2.7 V V = 2.2 V IER = 8 kQ -V = 2.7 V V = 2.2 V R, = 4 kn R, = 4 kn R, = 4 ko R, = 4 kn A -B T, a) What is the current through each resistor in part A (in mA)? (Indicate the direction with the signs of your answers.) mA I3 = b) What is the current through each resistor in part B (in mA)? (Indicate the direction with the signs of your answers.)
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![### Electrical Circuits Problem
#### Introduction
Consider the circuits shown below. (Due to the nature of this problem, do not use rounded intermediate values in your calculations—including answers submitted in WebAssign.)
#### Circuit A
- **Voltage Source 1:** \( V_1 = 2.7 \, \text{V} \)
- **Voltage Source 2:** \( V_2 = 2.2 \, \text{V} \)
- **Resistor 1:** \( R_1 = 8 \, \text{k}\Omega \)
- **Resistor 2:** \( R_2 = 4 \, \text{k}\Omega \)
- **Resistor 3:** \( R_3 = 4 \, \text{k}\Omega \)
- **Currents:** \( I_1 \) through \( R_1 \), \( I_2 \) through \( R_2 \), and \( I_3 \) through \( R_3 \)
#### Circuit B
This circuit is similar to Circuit A with same resistance values and voltages for \( V_1 \) and \( V_2 \). The circuit connections are identical, focusing on current direction and voltage application.
### Questions
(a) **What is the current through each resistor in part A (in mA)?** (Indicate the direction with the signs of your answers.)
- \( I_1 = \underline{\hspace{2cm}} \) mA
- \( I_2 = \underline{\hspace{2cm}} \) mA
- \( I_3 = \underline{\hspace{2cm}} \) mA
(b) **What is the current through each resistor in part B (in mA)?** (Indicate the direction with the signs of your answers.)
- \( I_1 = \underline{\hspace{2cm}} \) mA
- \( I_2 = \underline{\hspace{2cm}} \) mA
- \( I_3 = \underline{\hspace{2cm}} \) mA
(c) **What is the power dissipated or consumed by each circuit (in mW)?**
- Circuit A = \underline{\hspace{2cm}} mW
- Circuit B = \underline{\hspace{2cm}} mW
(d) **What is the power supplied to](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc2cb01cc-2ce0-42c9-8bdf-028787007c87%2Fd293b668-4df3-421b-a684-0c72be76fc0b%2F2e6cobc_processed.png&w=3840&q=75)
Transcribed Image Text:### Electrical Circuits Problem
#### Introduction
Consider the circuits shown below. (Due to the nature of this problem, do not use rounded intermediate values in your calculations—including answers submitted in WebAssign.)
#### Circuit A
- **Voltage Source 1:** \( V_1 = 2.7 \, \text{V} \)
- **Voltage Source 2:** \( V_2 = 2.2 \, \text{V} \)
- **Resistor 1:** \( R_1 = 8 \, \text{k}\Omega \)
- **Resistor 2:** \( R_2 = 4 \, \text{k}\Omega \)
- **Resistor 3:** \( R_3 = 4 \, \text{k}\Omega \)
- **Currents:** \( I_1 \) through \( R_1 \), \( I_2 \) through \( R_2 \), and \( I_3 \) through \( R_3 \)
#### Circuit B
This circuit is similar to Circuit A with same resistance values and voltages for \( V_1 \) and \( V_2 \). The circuit connections are identical, focusing on current direction and voltage application.
### Questions
(a) **What is the current through each resistor in part A (in mA)?** (Indicate the direction with the signs of your answers.)
- \( I_1 = \underline{\hspace{2cm}} \) mA
- \( I_2 = \underline{\hspace{2cm}} \) mA
- \( I_3 = \underline{\hspace{2cm}} \) mA
(b) **What is the current through each resistor in part B (in mA)?** (Indicate the direction with the signs of your answers.)
- \( I_1 = \underline{\hspace{2cm}} \) mA
- \( I_2 = \underline{\hspace{2cm}} \) mA
- \( I_3 = \underline{\hspace{2cm}} \) mA
(c) **What is the power dissipated or consumed by each circuit (in mW)?**
- Circuit A = \underline{\hspace{2cm}} mW
- Circuit B = \underline{\hspace{2cm}} mW
(d) **What is the power supplied to
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