Pre Lab: 1-Determine 50 V (a) the impedance and the phase angle in each circuit in Figure 1 parts (a) and (b). C₁ C₂ HH 0.01 μF 0.022 μF R₁ ww 100 ΚΩ f= 100 Hz R₂ 47 ΚΩ 8 V (b) R ww 10 ΚΩ f=20 kHz C₁ 560 pF C₂ 560 pF

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
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**Pre Lab:**

1. **Determine the impedance and the phase angle in each circuit in Figure 1 parts (a) and (b).**

**Figure Description:**

- **Figure 1(a):** 
  - The circuit includes a voltage source of 50 V with a frequency \( f = 100 \, \text{Hz} \).
  - Resistor \( R_1 = 100 \, \text{k}\Omega \).
  - Capacitor \( C_1 = 0.01 \, \mu\text{F} \).
  - Capacitor \( C_2 = 0.022 \, \mu\text{F} \).
  - Resistor \( R_2 = 47 \, \text{k}\Omega \).
  - The components are connected in series, with the ground connected after \( R_2 \).

- **Figure 1(b):**
  - The circuit includes a voltage source of 8 V with a frequency \( f = 20 \, \text{kHz} \).
  - Resistor \( R = 10 \, \text{k}\Omega \).
  - Capacitor \( C_1 = 560 \, \text{pF} \).
  - Capacitor \( C_2 = 560 \, \text{pF} \).
  - The resistors and capacitors are connected in a T-network configuration with separate ground connections for each capacitor.
Transcribed Image Text:**Pre Lab:** 1. **Determine the impedance and the phase angle in each circuit in Figure 1 parts (a) and (b).** **Figure Description:** - **Figure 1(a):** - The circuit includes a voltage source of 50 V with a frequency \( f = 100 \, \text{Hz} \). - Resistor \( R_1 = 100 \, \text{k}\Omega \). - Capacitor \( C_1 = 0.01 \, \mu\text{F} \). - Capacitor \( C_2 = 0.022 \, \mu\text{F} \). - Resistor \( R_2 = 47 \, \text{k}\Omega \). - The components are connected in series, with the ground connected after \( R_2 \). - **Figure 1(b):** - The circuit includes a voltage source of 8 V with a frequency \( f = 20 \, \text{kHz} \). - Resistor \( R = 10 \, \text{k}\Omega \). - Capacitor \( C_1 = 560 \, \text{pF} \). - Capacitor \( C_2 = 560 \, \text{pF} \). - The resistors and capacitors are connected in a T-network configuration with separate ground connections for each capacitor.
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