The square plates of the capacitor have sides " " and are a distance "d" apart. A material of dielectric constant "K" is inserted a distance "x" into of the capacitor. Obtain 1) II) IV) The equivalent capacitance of this device for: l=10 cm, x=4 cm, d=8 mm, k=5. The energy stored in the capacitor for: l=10 cm, x=4 cm, d=8 mm, k=5, AV=1000 V The force vector exerted on the dielectric, assuming a constant potential difference "AV", neglect friction as it is very small. Evaluate the magnitude of the force, for: 1=5 cm, AV=2 000 volts, d=2 mm, and K=4.5. Hot T H AV

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The square plates of the capacitor have sides " "e and are a distance "d" apart. A material of
dielectric constant "K" is inserted a distance "x" into of the capacitor.
Obtain
IV)
1)
II)
The equivalent capacitance of this device for: l=10 cm, x=4 cm, d=8 mm, k=5.
The energy stored in the capacitor for: l=10 cm, x=4 cm, d=8 mm, K-5, AV=1000 V
The force vector exerted on the dielectric, assuming a constant potential difference
"AV", neglect friction as it is very small.
Evaluate the magnitude of the force, for: 1=5 cm, AV=2 000 volts, d=2 mm, and K=4.5.
dok
T
k
H
AV
Transcribed Image Text:The square plates of the capacitor have sides " "e and are a distance "d" apart. A material of dielectric constant "K" is inserted a distance "x" into of the capacitor. Obtain IV) 1) II) The equivalent capacitance of this device for: l=10 cm, x=4 cm, d=8 mm, k=5. The energy stored in the capacitor for: l=10 cm, x=4 cm, d=8 mm, K-5, AV=1000 V The force vector exerted on the dielectric, assuming a constant potential difference "AV", neglect friction as it is very small. Evaluate the magnitude of the force, for: 1=5 cm, AV=2 000 volts, d=2 mm, and K=4.5. dok T k H AV
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