The diagram below shows a charged capacitor with a uniform E-field (red lines). The distance between the plates is D. At the moment shown, particle A (whose charge magnitude is SIX times B's) is released from one plate & particle B is released from the other plate. Additionally, particle A has 5,760 J of PEE. Use this information to fill in the table below for particle B as it moves between the plates (for the last point, D, state the PE & KE that it has just prior to impact with the plate). Assume gravity is negligible as well as any interaction between A & B. ✪ A Particle B's distance from negative plate (m) PEB (3) KER (J) 0 3xD 7 10 XD

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The diagram below shows a charged capacitor with a uniform E-field (red lines). The distance between the plates is D. At the moment shown, particle A (whose charge magnitude is SIX times B's) is released from
one plate & particle B is released from the other plate. Additionally, particle A has 5,760 J of PEE. Use this information to fill in the table below for particle B as it moves between the plates (for the last point, D, state
the PE & KE that it has just prior to impact with the plate). Assume gravity is negligible as well as any interaction between A & B.
B
→
A
Particle B's
distance from
negative plate
(m)
PEB
(J)
KEB
(J)
3 xD
XD
10
XD
D
Transcribed Image Text:The diagram below shows a charged capacitor with a uniform E-field (red lines). The distance between the plates is D. At the moment shown, particle A (whose charge magnitude is SIX times B's) is released from one plate & particle B is released from the other plate. Additionally, particle A has 5,760 J of PEE. Use this information to fill in the table below for particle B as it moves between the plates (for the last point, D, state the PE & KE that it has just prior to impact with the plate). Assume gravity is negligible as well as any interaction between A & B. B → A Particle B's distance from negative plate (m) PEB (J) KEB (J) 3 xD XD 10 XD D
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