Data Table. C C₁ = 25,6 mf C₂ = Series Connection 11.4mF C3 = 5,55 mf Ceg Qave V bat Ceq,measured 3.25MF Ceq,predicted = = V V₁ = 0.77 V V₂ = 1.960 V3 = 3,1V V pat 5.98 V = Q 0.77V 1.90% Qave Nothing here
Data Table. C C₁ = 25,6 mf C₂ = Series Connection 11.4mF C3 = 5,55 mf Ceg Qave V bat Ceq,measured 3.25MF Ceq,predicted = = V V₁ = 0.77 V V₂ = 1.960 V3 = 3,1V V pat 5.98 V = Q 0.77V 1.90% Qave Nothing here
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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SI units please

Transcribed Image Text:Data Table.
C
C₁ =
25,6 mf
C₂ =
Series Connection
11.4MF
C3 =
5,55 mf
Ceq
Qave
= V bat
Ceq,measured
3.25 MF
Ceq predicted
V
V₁ =
0.77 V
V₂ =
1.960
V3 =
3,1V
Vbat =
5.98 V
Q
0.77V
1,90 V
lave
Nothing here

Transcribed Image Text:Analysis:
Series connection:
For each case calculate the charge on each capacitor using the relation Q = CV.
Find the average value of the charge:
lave = 1 (Q₁ + Q₂ + Q3)
This is the charge on the equivalent capacitor.
Calculate the experimental equivalent capacitance Ceq
=
(eq.4)
Qave and record it the
V bat
data table.
Use eq. (2) to calculate the equivalent capacitance predicted by theory Ceq,predicted
and record it in the data table.
Compare the results for Ceq-
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