Problem * : Two dipoles are placed on the corners of a rectangle with dimensions L=3.4 cm and W=0.1 cm as shown in the figure. Dipole 1 has charge adipole 1-1. 1 nC with charge separation S₁ =0.9 mm while dipole 2 has charge adipole 2-0.5 nC with charge separation S₂ = 2.4 mm, respectively. Another two positive point charges Q₁ =27 nC and Q2-1 nC were placed on the other corners of the same rectangle as shown. E Dipole 1 Y S₁ Q₂ ->Find the net force on Q₁. 2. ( FQ1 =< Please answer all parts of the question. N/C+ S₂ > N ‒‒‒‒‒‒ W > Find the electric field vector due to the two dipoles at the location of Q₁. ----- Q₁ Dipole 2

Principles of Physics: A Calculus-Based Text
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Chapter19: Electric Forces And Electric Fields
Section: Chapter Questions
Problem 28P: Three equal positive charges q are at the comers of an equilateral triangle of side a as shown in...
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Problem *
: Two dipoles are placed on the corners of a rectangle with dimensions L=3.4 cm and W=0.1 cm as shown in the figure.
Dipole 1 has charge adipole 1-1. 1 nC with charge separation S₁ =0.9 mm while dipole 2 has charge adipole 2-0.5 nC with charge separation S₂ =
2.4 mm, respectively. Another two positive point charges Q₁ =27 nC and Q2-1 nC were placed on the other corners of the same rectangle as
shown.
E
Dipole 1
Y
S₁
Q₂
->Find the net force on Q₁.
2. (
FQ1 =<
Please answer all parts of the question.
N/C+
S₂
> N
‒‒‒‒‒‒
W
> Find the electric field vector due to the two dipoles at the location of Q₁.
-----
Q₁
Dipole 2
Transcribed Image Text:Problem * : Two dipoles are placed on the corners of a rectangle with dimensions L=3.4 cm and W=0.1 cm as shown in the figure. Dipole 1 has charge adipole 1-1. 1 nC with charge separation S₁ =0.9 mm while dipole 2 has charge adipole 2-0.5 nC with charge separation S₂ = 2.4 mm, respectively. Another two positive point charges Q₁ =27 nC and Q2-1 nC were placed on the other corners of the same rectangle as shown. E Dipole 1 Y S₁ Q₂ ->Find the net force on Q₁. 2. ( FQ1 =< Please answer all parts of the question. N/C+ S₂ > N ‒‒‒‒‒‒ W > Find the electric field vector due to the two dipoles at the location of Q₁. ----- Q₁ Dipole 2
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