Ecv max o 3 2 v r mirror 1c 1c series c

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Unformatted text preview: OBJECT FRONT Eye OBJECT BACK Eye FOCAL POINT FOCAL POINT Alternating Current RMS o P.E. = ½ Q / C CONVEX MIRROR FOCAL POINT CONVERGING LENS OBJECT negative virtual upright Positive real inverted = √2 V i P = 1 / ƒ = 1 / d + 1 / d 2 P.E. = ½ C V MAX o 3 2 V = ½ r MIRROR ) = (1 / C ) + (1 / C ) + … (series) = C + C + C + … (parallel) EFF LIGHT Mirrors &...
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This note was uploaded on 07/11/2012 for the course PHY 2048 taught by Professor Criss during the Spring '08 term at University of South Florida - Tampa.

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