(Q8-Q9). A parallel-plate capacitor is constructed of two large plates spaced 5.0 mm apart. It's fully charged by a battery of 500 V. Q8. Compare the electric potential (V) and the magnitudes of electric field (E) at points 1 and 2 as shown. A. V₁ < V₂, E₁ E₂ B. V₁ < V₂. E1 < Fi OV Imm 500 V Imm

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010
(Q8-Q9). A parallel-plate capacitor is constructed of two large plates spaced 5.0 mm apart. It's
fully charged by a battery of 500 V.
H.
Q8. Compare the electric potential (V) and the magnitudes of
electric field (E) at points 1 and 2 as shown.
A. V₁ < V₂, E1 = E₂
B. V₁ < V₂, E₁ < E2
I.
C. V₁ < V₂, E₁> E₂
D. V₁
V₂, E₁ E2
E. V₁
V2, E₁ < E₂
F. V₁ = V₂, E₁> E2
G. V₁ V2, E1
E2
H. V₁> V2, E1 < E2
I. V₁ V2, E₁> E2
J.
Q9. What is the electric field at point 2?
A. 5.0 x 105 N/C, to the right
B. 5.0 x 105 N/C, to the left
C. 3.0 x 105 N/C, to the right
D. 3.0 x 105 N/C, to the left
E. 2.0 x 105 N/C, to the right
F. 2.0 x 105 N/C, to the left
Not enough information
G. 1.0 x 105 N/C, to the right
1.0 x 105 N/C, to the left
none of the above
ov
Imm
3 mm
500 V
Imm
+++++++++++++++
LANE
Transcribed Image Text:010 (Q8-Q9). A parallel-plate capacitor is constructed of two large plates spaced 5.0 mm apart. It's fully charged by a battery of 500 V. H. Q8. Compare the electric potential (V) and the magnitudes of electric field (E) at points 1 and 2 as shown. A. V₁ < V₂, E1 = E₂ B. V₁ < V₂, E₁ < E2 I. C. V₁ < V₂, E₁> E₂ D. V₁ V₂, E₁ E2 E. V₁ V2, E₁ < E₂ F. V₁ = V₂, E₁> E2 G. V₁ V2, E1 E2 H. V₁> V2, E1 < E2 I. V₁ V2, E₁> E2 J. Q9. What is the electric field at point 2? A. 5.0 x 105 N/C, to the right B. 5.0 x 105 N/C, to the left C. 3.0 x 105 N/C, to the right D. 3.0 x 105 N/C, to the left E. 2.0 x 105 N/C, to the right F. 2.0 x 105 N/C, to the left Not enough information G. 1.0 x 105 N/C, to the right 1.0 x 105 N/C, to the left none of the above ov Imm 3 mm 500 V Imm +++++++++++++++ LANE
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