2. -0.55 μC at (3,0,0) m a) Is Coulomb force on Q1 due to Q2 is repelling force or attracting force? Why? b) Is Coulomb force on Q1 due to Q2 pointing to Q2 or away from Q2? Find the unit vector of Coulomb force on Q1 due to Q2 d) Find Coulomb force (vector) on Q1 due to Q2 Q₁ = 0.35 µC at (0, 4, 0) m and Q₂ =

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2.
Q₁ = 0.35 µC at (0, 4, 0) m and Q₂
=
-0.55 µC at (3, 0, 0) m
a) Is Coulomb force on Q1 due to Q2 is repelling force or attracting force? Why?
b) Is Coulomb force on Q1 due to Q2 pointing to Q2 or away from Q2?
c) Find the unit vector of Coulomb force on Q1 due to Q2
d) Find Coulomb force (vector) on Q1 due to Q2
e)
Find the E field (vector)at (0,4,0) due to Q2
f) Find the D field(vector) at (0,4,0) due to Q2
g) What is the total flux normal to the closed surface S that encloses Q1 and Q2?
h) Assume Q1 and Q2 are put at the center of a sphere with radius 4m, what is the electric
flux density D (vector) on the sphere?
Transcribed Image Text:2. Q₁ = 0.35 µC at (0, 4, 0) m and Q₂ = -0.55 µC at (3, 0, 0) m a) Is Coulomb force on Q1 due to Q2 is repelling force or attracting force? Why? b) Is Coulomb force on Q1 due to Q2 pointing to Q2 or away from Q2? c) Find the unit vector of Coulomb force on Q1 due to Q2 d) Find Coulomb force (vector) on Q1 due to Q2 e) Find the E field (vector)at (0,4,0) due to Q2 f) Find the D field(vector) at (0,4,0) due to Q2 g) What is the total flux normal to the closed surface S that encloses Q1 and Q2? h) Assume Q1 and Q2 are put at the center of a sphere with radius 4m, what is the electric flux density D (vector) on the sphere?
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