Shown in the figure below is an RC circuit. At t=0, the capacitor already contains a charge and as a result has a voltage of 6.00 Volts. The resistor has R = 6700 2, and the capacitor has C = 4.58e Farads. At t=0, the switch is closed. switch Qcap(t) = 0.0000275 Как с Vcap(t) = 6.00 • Determine the time constant of the circuit, T = 0.0306 ✔seconds • Fill in the table of formulas below. Use numerical values for the "max" column and a formula for the "form" column: form max -(9) Vres(t)= 6.00 R ww Ires(t) = 0.000895 ✓ V ✓ V ✔A 0.0000275e 0.03 X C X • Determine the current at t=5.8e-02 seconds. 0.000130 x Amps Transient--RC-Discharge
Shown in the figure below is an RC circuit. At t=0, the capacitor already contains a charge and as a result has a voltage of 6.00 Volts. The resistor has R = 6700 2, and the capacitor has C = 4.58e Farads. At t=0, the switch is closed. switch Qcap(t) = 0.0000275 Как с Vcap(t) = 6.00 • Determine the time constant of the circuit, T = 0.0306 ✔seconds • Fill in the table of formulas below. Use numerical values for the "max" column and a formula for the "form" column: form max -(9) Vres(t)= 6.00 R ww Ires(t) = 0.000895 ✓ V ✓ V ✔A 0.0000275e 0.03 X C X • Determine the current at t=5.8e-02 seconds. 0.000130 x Amps Transient--RC-Discharge
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Transcribed Image Text:Shown in the figure below is an RC circuit. At t=0, the capacitor already contains a charge and as a result has a voltage of 6.00 Volts. The resistor has R = 6700 , and the capacitor has C = 4.58e-06
Farads. At t=0, the switch is closed.
switch
Qcap(t):
Vres(t)
• Determine the time constant of the circuit, T = 0.0306
• Fill in the table of formulas below. Use numerical values for the "max" column and a formula for the "form" column:
form
Vcap(t) =
max
= 0.0000275
= 6.00
= 6.00
R
ww
Ires (t) = 0.000895
C
A
-(1)
0.0000275e
-~-~-(0,03)
e
seconds
C
X
• Determine the current at t=5.8e-02 seconds. 0.000130 X Amps
Transient--RC-Discharge
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