Dry air is a pretty decent insulator; it has a very high resistivity of 3 × 1015 Q · m. Consider a capacitor that has square plates 15 cm on a side, separated by 0.8 mm of dry air. The capacito charged such that it has a potential of 320 V between the plates. First, what is the resistance of the volume of air between the plates in G2 (to 3 significant digi 1,070 Question 10 What is the capacitance of this capacitor (in pF to 3 significant digits)? 248,900 Question 11 How much charge is stored on the plates of this capacitor when fully charged (in nC to 2 signifi digits)?

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Dry air is a pretty decent insulator; it has a very high resistivity of 3 x 1015 N· m. Consider a
capacitor that has square plates 15 cm on a side, separated by 0.8 mm of dry air. The capacitor
charged such that it has a potential of 320 V between the plates.
First, what is the resistance of the volume of air between the plates in G2 (to 3 significant digit
1,070
Question 10
What is the capacitance of this capacitor (in pF to 3 significant digits)?
248,900
Question 11
How much charge is stored on the plates of this capacitor when fully charged (in nC to 2 signifie
digits)?
Transcribed Image Text:Dry air is a pretty decent insulator; it has a very high resistivity of 3 x 1015 N· m. Consider a capacitor that has square plates 15 cm on a side, separated by 0.8 mm of dry air. The capacitor charged such that it has a potential of 320 V between the plates. First, what is the resistance of the volume of air between the plates in G2 (to 3 significant digit 1,070 Question 10 What is the capacitance of this capacitor (in pF to 3 significant digits)? 248,900 Question 11 How much charge is stored on the plates of this capacitor when fully charged (in nC to 2 signifie digits)?
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