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the claim
Voltage increases when capacitor plates are separated while holding charge constant
the verdict
CONTESTED
contested - the weight sits with the supporting side
refutedsupported
the weight of evidence
1 source for · 0 against

The source notes that electrostatic energy increases or decreases depending on whether the charge or the voltage is held constant, but does not specifically confirm that voltage increases when plates are separated while holding charge constant.

Evidence for · 1
2005 · cited by 0
When capacitor plates are separated, the capacitor's electrostatic energy either increases or decreases, depending upon whether the charge or the voltage is held constant. For the constant-voltage case, an interesting puzzle can be posed to students: How is it possible that an external agent does positive work on the capacitor while at the same time the capacitor's stored energy decreases? An energy flow diagram, as suggested by Art Hobson's TPT article,1 helps to visualize the movements of energy among different parts of the system. What Richard Feynman calls a “surprising factor of one-half” in the expression for the force between capacitor plates confronts students with an additional puzzle to decipher.2
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The analysis

rails:sufficiency:supported:single_source:for=1+0p:against=0+0p | v55:sufficiency | v55:coherence_repaired:what=both

Everything we examined (1)
This check searched the claim as stated. It did not run a separate search for evidence against it.
  1. Energy Flow for a Variable-Gap Capacitorpeer-reviewedno side taken
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