4) What is U, the energy stored in this capacitor? -75.24*10^(-10) Submit Your submissions: -75.24*10^(-10) x Computed value: -7.524E-09 Submitted: Tuesday, November 17 at 10:46 AM Feedback: 5) The battery is now disconnected from the capacitor and then the dielectric is withdrawn. What is V, the voltage across the capacitor? A V=? d

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A = 2080cm² are connected to the
terminals of a battery of voltage Vp
6 V as shown. The plates are
separated by a distance d = 0.44cm.
You may assume (contrary to the
drawing) that the separation
between the plates is small compared to a linear dimension of the plate.
%3D
d
1) What is C, the capacitance of this parallel plate capacitor?
0.000419
uF (Submit
2) What is Q, the charge stored on the top plate of the this capacitor?.
0.0025
uC (Submit
3) A dielectric having dielectric
constant K = 4.1 is now inserted in
between the plates of the
capacitor as shown. The dielectric
has area A = 2080 cm2 and
thickness equal to half of the
separation (= 0.22 cm) . What is
the charge on the top plate of this
capacitor?
Įd/2
0.004038
µC ( Submit
4) What is U, the energy stored in this capacitor?
-75.24*10^(-10)
J(Submit
Your submissions:
-75.24*10 (-10) x
Computed value: -7.524E-09
Feedback:
Submitted: Tuesday, November 17 at 10:46 AM
5) The battery is now disconnected from the
capacitor and then the dielectric is
withdrawn. What is V, the voltage across
the capacitor?
V=?
d.
Submit
Transcribed Image Text:+ Wi-Fi Calling ? 10:53 AM @ 7 14% 0 A flipitphysics.com – Private A = 2080cm² are connected to the terminals of a battery of voltage Vp 6 V as shown. The plates are separated by a distance d = 0.44cm. You may assume (contrary to the drawing) that the separation between the plates is small compared to a linear dimension of the plate. %3D d 1) What is C, the capacitance of this parallel plate capacitor? 0.000419 uF (Submit 2) What is Q, the charge stored on the top plate of the this capacitor?. 0.0025 uC (Submit 3) A dielectric having dielectric constant K = 4.1 is now inserted in between the plates of the capacitor as shown. The dielectric has area A = 2080 cm2 and thickness equal to half of the separation (= 0.22 cm) . What is the charge on the top plate of this capacitor? Įd/2 0.004038 µC ( Submit 4) What is U, the energy stored in this capacitor? -75.24*10^(-10) J(Submit Your submissions: -75.24*10 (-10) x Computed value: -7.524E-09 Feedback: Submitted: Tuesday, November 17 at 10:46 AM 5) The battery is now disconnected from the capacitor and then the dielectric is withdrawn. What is V, the voltage across the capacitor? V=? d. Submit
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