Express your answer in newton times meters squared per coulomb. IVE ΑΣΦΗ Φ = Submit Part E Φ = Submit Request Answer Find the net electric flux through the closed surface S5 shown in cross section in the figu Express your answer in newton times meters squared per coulomb. 1G | ΑΣΦ Part F Request Answer ? www. N.m²/C ? N.m²/C Do your answers to parts A through E depend on how the charge is distributed over each

University Physics Volume 2
18th Edition
ISBN:9781938168161
Author:OpenStax
Publisher:OpenStax
Chapter6: Gauss's Law
Section: Chapter Questions
Problem 25P: A square surface of area 2 cm2 is in a space of uniform electric field of magnitude 103 N/C . The...
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The three small spheres shown in (Figure 1) carry
charges q₁ = 3.75 nC, q2 = -8.00 nC, and
93 = 2.25 nC.
Figure
091
93
S3
092
S₂
Jaanua
1 of 1
Surface What it encloses
91
92
91 and 92
91 and 93
91 and 92 and 93
Part D
Find the net electric flux through the closed surface S4 shown in cross section in the figure.
Express your answer in newton times meters squared per coulomb.
ΑΣΦ
$ =
Submit
Part E
$ =
Submit
U/
Part F
Request Answer
Find the net electric flux through the closed surface S5 shown in cross section in the figure.
Express your answer in newton times meters squared per coulomb.
ΑΣΦ
?
Request Answer
N.m²/C
2 ?
N.m²/C
Do your answers to parts A through E depend on how the charge is distributed over each small sphere?
Transcribed Image Text:The three small spheres shown in (Figure 1) carry charges q₁ = 3.75 nC, q2 = -8.00 nC, and 93 = 2.25 nC. Figure 091 93 S3 092 S₂ Jaanua 1 of 1 Surface What it encloses 91 92 91 and 92 91 and 93 91 and 92 and 93 Part D Find the net electric flux through the closed surface S4 shown in cross section in the figure. Express your answer in newton times meters squared per coulomb. ΑΣΦ $ = Submit Part E $ = Submit U/ Part F Request Answer Find the net electric flux through the closed surface S5 shown in cross section in the figure. Express your answer in newton times meters squared per coulomb. ΑΣΦ ? Request Answer N.m²/C 2 ? N.m²/C Do your answers to parts A through E depend on how the charge is distributed over each small sphere?
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