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Give your answer in microcoulombs (e) With the switch closed, what is the time c

ID: 2123592 • Letter: G

Question

Give your answer in microcoulombs

(e) With the switch closed, what is the time constant for the growth of charge separated by the capacitor?  HINT: Use your knowledge of the maximum charging current and the maximum separated charge; to find the differential equation for the growth of charge requires using the Loop and Junction rules and solving three equations in three unknowns, which is an unnecessarily difficult strategy.

(in seconds)

(f) When the switch has been closed for 1.0168 * 10-1 s, what are the absolute values of the currents through the three resistors, and what is the charge separated by the capacitor?  Give your answers in microamps and microcoulombs.  HINT: Find the separated charge and the current through resistor 3 first, then apply the Loop and Junction rules.

the separated charge: (micro C)

the current through resistor 1: (micro A)

the current through resistor 2: (micro A)

the current through resistor 3: (micro A)

(g) When the switch has been closed for 1.0168*10-1 s, find the power values requested below: the rate at which the ideal battery is supplying energy to the circuit: ( in W)

the rate at which energy is being stored in the capacitor: W

the rate at which thermal energy is being produced in resistor 1: W

the rate at which thermal energy is being produced in resistor 2: W

the rate at which thermal energy is being produced in resistor 3: W

(h) Just after the switch is reopened, what are the absolute values of the currents through the three resistors?  Give your answers in microamps.

the current through resistor 2: micro A

the current through resistor 3: micro A

(i) Just after the switch is reopened, at what rate is energy being released from the capacitor?

(j) After the switch has been reopened, what is the time constant for decay of charge separated by the capacitor?

(k) After the switch has been reopened for a time of 2.4310 * 10-1 s, find the amount of charge separated by the capacitor and the absolute value of the current which is discharging the capacitor.  Give your answers in microcoulombs and microamps.

charge separated by the capacitor: Micro C

absolute value of the discharging current: micro A

(l) After the switch has been reopened for a time of 2.4310 * 10-1 s, find the power values requested below:

the rate at which the capacitor is releasing stored energy: (W)

the rate at which thermal energy is being produced in resistor 2: (W)

the rate at which thermal energy is being produced in resistor 3: (W)

(m) After the switch has been reopened, find the time interval required for the charge separated by the capacitor to fall to 19.0% of its maximum value. (s)

Explanation / Answer

the fig is not uploaded plz mail me at gurudev660@gmail.com

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