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Explain the process of charging and discharging based on the voltage and current curves. Determine the related equations for the voltage and current curves

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Page 1: Explain the process of charging and discharging based on the voltage and current curves. Determine the related equations for the voltage and current curves
Page 2: Explain the process of charging and discharging based on the voltage and current curves. Determine the related equations for the voltage and current curves

Explain the process of charging and discharging based on the voltage and current curves.

Determine the related equations for the voltage and current curves

Formulate the instantaneous voltage / current equation.

Determine the time constant, = CR Determine the energy stored in a

capacitor. Solve problems on capacitors

Page 3: Explain the process of charging and discharging based on the voltage and current curves. Determine the related equations for the voltage and current curves
Page 4: Explain the process of charging and discharging based on the voltage and current curves. Determine the related equations for the voltage and current curves
Page 5: Explain the process of charging and discharging based on the voltage and current curves. Determine the related equations for the voltage and current curves

t = 5

Page 6: Explain the process of charging and discharging based on the voltage and current curves. Determine the related equations for the voltage and current curves

a. Time constant , = CRb. Initial Charging current I max = V/Rc. Charging voltage of

capacitor,

Vc = Vmax (1 – e -t/ )d. Charging current

i = Imax (e -t/ )

Page 7: Explain the process of charging and discharging based on the voltage and current curves. Determine the related equations for the voltage and current curves

e. Initial rate of change potential difference dVc = V / CR dtf. Time when capacitor fully charge

t = 5g. Energy stored, E = ½ CVmax2

Page 8: Explain the process of charging and discharging based on the voltage and current curves. Determine the related equations for the voltage and current curves
Page 9: Explain the process of charging and discharging based on the voltage and current curves. Determine the related equations for the voltage and current curves

a. Time constant , = CRb. Initial disharging current I max = V/Rc. Disharging voltage of

capacitor,Vc = Vmax ( e -t/ )d. Discharging current i = - Imax (e -t/ )

Page 10: Explain the process of charging and discharging based on the voltage and current curves. Determine the related equations for the voltage and current curves

e. Initial rate of change potential difference dVc = V / CR dtf. Time when capacitor decrease

charge

t = 5

Page 11: Explain the process of charging and discharging based on the voltage and current curves. Determine the related equations for the voltage and current curves