15. By using the Thevenin equivalent circuit, shown in Figure 14 below, as seen by the 5A resistor. Then the current flowing through the 5 resistor is 100 ww 4A 100 (a) 2.8 A (b) 2.1 A (c) 1.8 A (d) 1.6 A

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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**Question 15:** By using the Thevenin equivalent circuit, shown in Figure 14 below, as seen by the 5Ω resistor. Then the current flowing through the 5Ω resistor is:
- (a) 2.8 A
- (b) 2.1 A
- (c) 1.8 A
- (d) 1.6 A

**Diagram Explanation:**

The diagram consists of a circuit with:
- A current source providing 4 A.
- Three resistors:
  - A 10Ω resistor connected in series with the current source.
  - Another 10Ω resistor connected in parallel to the first resistor.
  - A 5Ω resistor in parallel with the second 10Ω resistor.

The task is to determine which of the options corresponds to the current flowing through the 5Ω resistor using the Thevenin equivalent circuit.
Transcribed Image Text:**Question 15:** By using the Thevenin equivalent circuit, shown in Figure 14 below, as seen by the 5Ω resistor. Then the current flowing through the 5Ω resistor is: - (a) 2.8 A - (b) 2.1 A - (c) 1.8 A - (d) 1.6 A **Diagram Explanation:** The diagram consists of a circuit with: - A current source providing 4 A. - Three resistors: - A 10Ω resistor connected in series with the current source. - Another 10Ω resistor connected in parallel to the first resistor. - A 5Ω resistor in parallel with the second 10Ω resistor. The task is to determine which of the options corresponds to the current flowing through the 5Ω resistor using the Thevenin equivalent circuit.
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