Find the capacitance of a parallel-plate capacitor having plates with a surface area of 7.49*10-2 m2 and separated by 3.01 mm of Neoprene (which has a dielectric constant of 6.7). Answer in nanoFarads.
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Find the capacitance of a parallel-plate capacitor having plates with a surface area of 7.49*10-2 m2 and separated by 3.01 mm of Neoprene (which has a dielectric constant of 6.7). Answer in nanoFarads.
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- A certain substance has a dielectric constant of 3.8 and a dielectric strength of 25 MV/m. If it is used as the dielectric material in a parallel-plate capacitor, what minimum area should the plates of the capacitor have to obtain a capacitance of 5.3 × 10-2 µ F and to ensure that the capacitor will be able to withstand a potential difference of 3.1 kV?Problem 3: Consider a parallel plate capacitor having plates of area 1.65 cm2 that are separated by 0.024 mm of neoprene rubber. You may assume the rubber has a dielectric constant κ = 6.7. Part (a) What is the capacitance in nanofarads? Part (b) What charge, in coulombs, does the capacitor hold when 9.00 V is applied across it?What is the capacitance in units of micro-Farads of a parallel plate capacitor having plates of area 1.25 m2 that are separated by 0.0241 mm of a film with a dielectric constant = 5.8?
- A 1.00-?F capacitor is charged by being connected across a 9.0-V battery. It is then disconnected from the battery and connected across an uncharged 8.00-?F capacitor. Determine the resulting charge on each capacitor.7. (a) The space between two parallel plate capacitor is filled with two dielectric materials of same dimensions. What is the resulting capacitance as a function of K₁, K₂ and the original Co when the space in between is empty? (b) What would be the resulting capacitance of the following setup then? Express your answer as a function of K₁, K₂ and the original Co when the space in between is empty?Consider a parallel plate capacitor having plates of area 1.4 cm2 that are separated by 0.018 mm of neoprene rubber. You may assume the rubber has a dielectric constant κ = 6.7. a) What is the capacitance in μF? b) What charge, Q, in coulombs, does it hold when 9.00 V is applied to it?