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Single Magnet- N Pole Enters First Area of First Peak-0002 Maximum Voltage of First Peak 20 v V*s Area of Second Peak L. oog-Single Magnet-S Pole Enters First Area of First Peak 0.004 v s Maximum Voltage of First Peak ( V Area of Second Peak.0OVs Ma1) Why are there two regions (one above and one below the axis) for each drop? (That is, why are the peaks opposite in direct2b) Should they are should they not be equal? Why? 3) Why is the outgoing peak higher than the incoming peak?

Single Magnet- N Pole Enters First Area of First Peak-0002 Maximum Voltage of First Peak 20 v V*s Area of Second Peak L. oog- V's Maximum Voltage of Second Peak Single Magnet-N Pole Enters First Time
Single Magnet-S Pole Enters First Area of First Peak 0.004 v s Maximum Voltage of First Peak ( V Area of Second Peak.0OV's Maximum Voltage of Second Peak-.227 v Single Magnet s Pole Enters First Time
1) Why are there two regions (one above and one below the axis) for each drop? (That is, why are the peaks opposite in direction? a) Is the incoming flux equal to the outgoing flux? Compute the % Difference between them.
2b) Should they are should they not be equal? Why? 3) Why is the outgoing peak higher than the incoming peak?
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Answer #1

AuStoo la S po Quter Pis volta Je t、Me vostag Hae peaks ame epposite in one ea eppesite to the field at ottes esh d. auYo Mag2 moqne ontvea3. % naan-k Λ.ue in cel. So 산 ao lux, eav ver on re are a. bin Put In mag n 1002,00 %. IM df D n a

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