6. 1. Consider circle with linear charge density λ = 1nC/cm and radius of 1 cm (like the one discussed in the class and shown in the figure below). This time assume that there are 2 of these charged circles of identical size and charge density, parallel with each other, both centered on the z-axis 2 cm apart. What is the potential on the Z-axis half way between the circles? Segment i with charge ΔΩ R O R² + z² What is the potential here? ........>> Your answer:
6. 1. Consider circle with linear charge density λ = 1nC/cm and radius of 1 cm (like the one discussed in the class and shown in the figure below). This time assume that there are 2 of these charged circles of identical size and charge density, parallel with each other, both centered on the z-axis 2 cm apart. What is the potential on the Z-axis half way between the circles? Segment i with charge ΔΩ R O R² + z² What is the potential here? ........>> Your answer:
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1. Consider circle with linear charge density λ = 1nC/cm and radius of 1 cm (like
the one discussed in the class and shown in the figure below). This time assume that
there are 2 of these charged circles of identical size and charge density, parallel with
each other, both centered on the z-axis 2 cm apart. What is the potential on the
Z-axis half way between the circles?
Segment i
with charge
ΔΩ
R
O
R² + z²
What is the potential here?
........>>
Your answer:"
Transcribed Image Text:6.
1. Consider circle with linear charge density λ = 1nC/cm and radius of 1 cm (like
the one discussed in the class and shown in the figure below). This time assume that
there are 2 of these charged circles of identical size and charge density, parallel with
each other, both centered on the z-axis 2 cm apart. What is the potential on the
Z-axis half way between the circles?
Segment i
with charge
ΔΩ
R
O
R² + z²
What is the potential here?
........>>
Your answer:
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