air is approximately equals to permitivity of free space, 0=8.85 x 10-12 2 C2/ kg m. It is initially connected to 20) The capacitor in the figure has a plate area, A. of 0.06 m2 and a plate separation, d, of 0.60 mm. permitiv power supply with 12 V and after it is fully charged, the power supply is removed. a) What is its capacitance? b) How many charges are on each plates? c) What is the energy stored in the capacitor? a) After the capacitance is fully charged, carefully remove the nower supply, What is the minimum amout of wo needed to seperate the two plates to 1.80 mm without discharging the plates?
air is approximately equals to permitivity of free space, 0=8.85 x 10-12 2 C2/ kg m. It is initially connected to 20) The capacitor in the figure has a plate area, A. of 0.06 m2 and a plate separation, d, of 0.60 mm. permitiv power supply with 12 V and after it is fully charged, the power supply is removed. a) What is its capacitance? b) How many charges are on each plates? c) What is the energy stored in the capacitor? a) After the capacitance is fully charged, carefully remove the nower supply, What is the minimum amout of wo needed to seperate the two plates to 1.80 mm without discharging the plates?
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20) The capacitor in the figure has a plate area, A. of 0 06 m2 and a plate separation, d, of 0.60 mm. pernitivie
air is approximately equals to permitivity of free space ro-8 85 - 10-12 2 c2/ kg m3, It is initially connected to i
power supply with 12 V and after it is fully charged, the power supply is removed.
a) What is its capacitance?
b) How many charges are on each plates?
c) What is the energy stored in the capacitor?
a) After the capacitance is fully charged, carefully remove the nower supply What is the minimum amout of wo
needed to seperate the two plates to 1.80 mm without discharging the plates?
-p.
12 V
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