A parallel-plate capacitor with plate area A = 0.44 m² and plate separation d = 4.14 x 10 m is fully charged. The potential difference across the plates is V = 146 volts. What is the energy density, u in J/m³, of the capacitor? Assume that the dielectric constant is 1.0. Take 5-8.85 x 10-12 C²/Nm². Please round your answer to two decimal places. Energy density is defined as energy per volume. Equations: Energy. U = CV² where C= 60 (1) Volume = 4 d
A parallel-plate capacitor with plate area A = 0.44 m² and plate separation d = 4.14 x 10 m is fully charged. The potential difference across the plates is V = 146 volts. What is the energy density, u in J/m³, of the capacitor? Assume that the dielectric constant is 1.0. Take 5-8.85 x 10-12 C²/Nm². Please round your answer to two decimal places. Energy density is defined as energy per volume. Equations: Energy. U = CV² where C= 60 (1) Volume = 4 d
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
Transcribed Image Text:A parallel-plate capacitor with plate area A = 0.44 m² and plate separation d = 4.14 x 10 m is fully
charged. The potential difference across the plates is V = 146 volts. What is the energy density, u in
J/m³, of the capacitor? Assume that the dielectric constant is 1.0. Take co-8.85 x 10-12 c²/Nm².
Please round your answer to two decimal places.
Energy density is defined as energy per volume.
Equations: Energy. U = CV² where C-E. (4).
Volume - 4 d
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