1. What is the relationship between the scale divisions marked on the graduated cylinders in Part A and the estimated uncertainty in volume measurements? 2. Which graduated cylinder(s) gave the most precise volume measurement? Does the number of significant figures allowed for each volume measurement in Part A reflect the precision of the graduated cylinders?

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Class/Lab Period:
Introduction to Measurement
Data Table A. Volume Measurements
Graduated
Major Scale
Minor Scale
Volume of
Estimated
Cylinder
Сaраcity
Divisions
Divisions
Liquid
Uncertainty
77.77-7.8
10mL
7.7mL
A
Ti9.-
la.02ML
76.5ml76.5-76-61
5 mL
•5ML
.0 ImL
5mL
25 mL
.62
100m L
S00 m L
l OmL
Som L
月7-261
1000m L
100ML
10m L
898 mL l 1898-9001
1898-90ol
E
Transcribed Image Text:Class/Lab Period: Introduction to Measurement Data Table A. Volume Measurements Graduated Major Scale Minor Scale Volume of Estimated Cylinder Сaраcity Divisions Divisions Liquid Uncertainty 77.77-7.8 10mL 7.7mL A Ti9.- la.02ML 76.5ml76.5-76-61 5 mL •5ML .0 ImL 5mL 25 mL .62 100m L S00 m L l OmL Som L 月7-261 1000m L 100ML 10m L 898 mL l 1898-9001 1898-90ol E
1. What is the relationship between the scale divisions marked on the graduated cylinders in
Part A and the estimated uncertainty in volume measurements?
2. Which graduated cylinder(s) gave the most precise volume measurement? Does the
number of significant figures allowed for each volume measurement in Part A reflect the
precision of the graduated cylinders?
Transcribed Image Text:1. What is the relationship between the scale divisions marked on the graduated cylinders in Part A and the estimated uncertainty in volume measurements? 2. Which graduated cylinder(s) gave the most precise volume measurement? Does the number of significant figures allowed for each volume measurement in Part A reflect the precision of the graduated cylinders?
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