b. Analytical Calculations for Circuit 2: Perform the necessary theoretical analysis to calculate the voltage across the capacitor and the resistor at different time stamps as listed in Table 2 V₂ (1 R₁ ww 1kΩ C₁ 82 nF

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Time Stamp
Calculated
Values
Time Stamp
Calculated
Values
Capacitor Voltage during Charging Phase
t = 100 µst = 200 ust = 300 µst = 400 us
t = 0 µs
(rising edge of source
voltage Vs)
t = 500 µs
(falling edge of
source voltage Vs)
Capacitor Voltage during Discharging Phase
t = 100 µst = 200 µst = 300 µst = 400 μs
t = 0 µs
(falling edge of
source voltage Vs)
t = 500 µs
(rising edge of source
voltage Vs)
Transcribed Image Text:Time Stamp Calculated Values Time Stamp Calculated Values Capacitor Voltage during Charging Phase t = 100 µst = 200 ust = 300 µst = 400 us t = 0 µs (rising edge of source voltage Vs) t = 500 µs (falling edge of source voltage Vs) Capacitor Voltage during Discharging Phase t = 100 µst = 200 µst = 300 µst = 400 μs t = 0 µs (falling edge of source voltage Vs) t = 500 µs (rising edge of source voltage Vs)
b. Analytical Calculations for Circuit 2:
Perform the necessary theoretical analysis to
calculate the voltage across the capacitor and the
resistor at different time stamps as listed in Table 2
V₂ (7)
R₁
1kΩ
C₁
82 nF
Transcribed Image Text:b. Analytical Calculations for Circuit 2: Perform the necessary theoretical analysis to calculate the voltage across the capacitor and the resistor at different time stamps as listed in Table 2 V₂ (7) R₁ 1kΩ C₁ 82 nF
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