I Review | Constants Two air-filled parallel-plate capacitors with capacitances C1 and C2 are connected in series to a battery that has voltage V; C1 = 3.00 µF and C2 = 6.00 µF. The electric field between the plates of capacitor C2 is E02. While the two capacitors remain connected to the battery, a dielectric with dielectric constant K = 4 is inserted between the plates of capacitor C1 , completely filling the space between them. After the dielectric is inserted in C the electric field between the plates is E2. Part B When the dielectric is inserted into C, does the electric field in C2 increase, decrease, or remain the same? O increase capacitor C2 O decrease stay the same Submit Request Answer Part C Repeat the calculation in part A for the two capacitors connected to the battery in parallel. E, %3D E92 Submit Request Answer

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I Review | Constants
Two air-filled parallel-plate capacitors with
capacitances C1 and C2 are connected in series to
a battery that has voltage V; Cı = 3.00 µF and
C2 = 6.00 µF. The electric field between the plates
of capacitor C2 is E02. While the two capacitors
remain connected to the battery, a dielectric with
dielectric constant K = 4 is inserted between the
plates of capacitor C1, completely filling the space
between them. After the dielectric is inserted in C,
the electric field between the plates of capacitor C2
is E2.
Part B
When the dielectric is inserted into C1, does the electric field in C2 increase, decrease, or remain the same?
increase
decrease
stay the same
Submit
Request Answer
Part C
Repeat the calculation in part A for the two capacitors connected to the battery in parallel.
ΑΣφ
?
E2
E02
Submit
Request Answer
Transcribed Image Text:I Review | Constants Two air-filled parallel-plate capacitors with capacitances C1 and C2 are connected in series to a battery that has voltage V; Cı = 3.00 µF and C2 = 6.00 µF. The electric field between the plates of capacitor C2 is E02. While the two capacitors remain connected to the battery, a dielectric with dielectric constant K = 4 is inserted between the plates of capacitor C1, completely filling the space between them. After the dielectric is inserted in C, the electric field between the plates of capacitor C2 is E2. Part B When the dielectric is inserted into C1, does the electric field in C2 increase, decrease, or remain the same? increase decrease stay the same Submit Request Answer Part C Repeat the calculation in part A for the two capacitors connected to the battery in parallel. ΑΣφ ? E2 E02 Submit Request Answer
I Review | Constants
Two air-filled parallel-plate capacitors with
capacitances C1 and C2 are connected in series to
a battery that has voltage V; Cı = 3.00 µF and
C2 = 6.00 µF. The electric field between the plates
of capacitor C2 is E02. While the two capacitors
remain connected to the battery, a dielectric with
dielectric constant K = 4 is inserted between the
plates of capacitor C1, completely filling the space
between them. After the dielectric is inserted in C,
the electric field between the plates of capacitor C2
is E2.
Part A
%3D
What is the ratio E2/E02?
?
E2
E92
Submit
Request Answer
Part B
When the dielectric is inserted into C1, does the electric field in C2 increase, decrease, or remain the same?
increase
decrease
stay the same
Submit
Request Answer
Transcribed Image Text:I Review | Constants Two air-filled parallel-plate capacitors with capacitances C1 and C2 are connected in series to a battery that has voltage V; Cı = 3.00 µF and C2 = 6.00 µF. The electric field between the plates of capacitor C2 is E02. While the two capacitors remain connected to the battery, a dielectric with dielectric constant K = 4 is inserted between the plates of capacitor C1, completely filling the space between them. After the dielectric is inserted in C, the electric field between the plates of capacitor C2 is E2. Part A %3D What is the ratio E2/E02? ? E2 E92 Submit Request Answer Part B When the dielectric is inserted into C1, does the electric field in C2 increase, decrease, or remain the same? increase decrease stay the same Submit Request Answer
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