On your paper, sketch this configuration of two charged, non-parallel conducting plates. Add the electric field lines and relative distribution of charges on each electrode. Do not enter anything into the space for this question. Show all work on your HW paper. ... From the list below, match the proper concept to your drawing.

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On your paper, sketch this configuration of two charged, non-parallel conducting plates. Add the electric
field lines and relative distribution of charges on each electrode. Do not enter anything into the space for
this question. Show all work on your HW paper.
From the list below, match the proper concept to your drawing.
Prompts
Submitted Answers
Direction of E field
Choose a match
Strength of E field
Curved to emanate and terminate
perpendicular to electrodes.
Shape of E field lines
From negative plate (anode) to positive
plate (cathode).
Question 3
Straight line vectors from one electrode
to other.
For the charge configuration and electric field patterns
same signs?
Stronger in region where plates are
closer together.
0.995
Uniform from left end to right end of
plates.
From positive plate (cathode) to
negative plate (anode).
Transcribed Image Text:On your paper, sketch this configuration of two charged, non-parallel conducting plates. Add the electric field lines and relative distribution of charges on each electrode. Do not enter anything into the space for this question. Show all work on your HW paper. From the list below, match the proper concept to your drawing. Prompts Submitted Answers Direction of E field Choose a match Strength of E field Curved to emanate and terminate perpendicular to electrodes. Shape of E field lines From negative plate (anode) to positive plate (cathode). Question 3 Straight line vectors from one electrode to other. For the charge configuration and electric field patterns same signs? Stronger in region where plates are closer together. 0.995 Uniform from left end to right end of plates. From positive plate (cathode) to negative plate (anode).
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