Part A A point charge q-3 10 nC is located on the x- axis at a= 1.85 m, and a second point charge q2--6. 90 nC is on the y-axis at y = 1.30 m. What is the total electric flux due to these two point charges through a spherical surface centered at the origin and with radius r=0 480 m? Express your answer in newton times meters squared per coulomb. ΑΣΦ

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B7
Part C
What is the total electric flux due to these two point
charges through a spherical surface centered at the
origin and with radius r3 = 2.65 m?
hs Express your answer in newton times meters
squared per coulomb.
ΑΣφ
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Transcribed Image Text:Part C What is the total electric flux due to these two point charges through a spherical surface centered at the origin and with radius r3 = 2.65 m? hs Express your answer in newton times meters squared per coulomb. ΑΣφ Submit Request Answer
A point charge q = 3.10 nC is located on the x-
axis at z = 1.85 m, and a second point charge
q2 = -6.90 nC is on the y-axis at y = 1.30 m
Part A
What is the total electric flux due to these two point
charges through a spherical surface centered at the
origin and with radius r = 0.480 m?
Express your answer in newton times meters
squared per coulomb.
AE
Submit
Request Answer
Part B
Part B
What is the total electric flux due to these two point
charges through a spherical surface centered at the
origin and with radius r2 = 1.45 m?
A Express your answer in newton times meters
squared per coulomb.
Transcribed Image Text:A point charge q = 3.10 nC is located on the x- axis at z = 1.85 m, and a second point charge q2 = -6.90 nC is on the y-axis at y = 1.30 m Part A What is the total electric flux due to these two point charges through a spherical surface centered at the origin and with radius r = 0.480 m? Express your answer in newton times meters squared per coulomb. AE Submit Request Answer Part B Part B What is the total electric flux due to these two point charges through a spherical surface centered at the origin and with radius r2 = 1.45 m? A Express your answer in newton times meters squared per coulomb.
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