Millikan Oil Drop Lab 5. Use the zoomed in image to measure the radius of the droplet. Take note that the units on the scale are in nanometers (nm), 1 nm = 10 m. Record the droplet radius and the 'AV between plates values in Data Table 1 below. You are viewing the drop that is in Equilibrium 6. Repeat this process for ten (10) more droplets that are at rest. It is Measure the radius of the drop recommended that this table be recreated in a spreadsheet utility like MS Excel or Google Sheets. The oil density is 900 kg/m"3 Data Table 1. Raw Data 田 Calculate the Volume and Mass of the drop AV between Run Droplet radius Calculate the Fg on the drop plates UNITS! Set Fe = Fg 600 500 400 300 200 100 L 100 200 300 400 500 600 The capacitor plates are 3.0 mm apart Droplet AV The AV between plates is 15.0 V Volume V E-field E Mass Weight Run radius between plates' m mg Calculate the Electric Field betwoen the plates. JNITS! Find the charge on the oil drop. 1 scale in nm Return to Main Data lable 3. Charge & Number of Electrons Droplet + % error Charge on Number of Rounded # electrons Weight E-field Run droplet of electrons mg E q/e n UNITS! 1
Millikan Oil Drop Lab 5. Use the zoomed in image to measure the radius of the droplet. Take note that the units on the scale are in nanometers (nm), 1 nm = 10 m. Record the droplet radius and the 'AV between plates values in Data Table 1 below. You are viewing the drop that is in Equilibrium 6. Repeat this process for ten (10) more droplets that are at rest. It is Measure the radius of the drop recommended that this table be recreated in a spreadsheet utility like MS Excel or Google Sheets. The oil density is 900 kg/m"3 Data Table 1. Raw Data 田 Calculate the Volume and Mass of the drop AV between Run Droplet radius Calculate the Fg on the drop plates UNITS! Set Fe = Fg 600 500 400 300 200 100 L 100 200 300 400 500 600 The capacitor plates are 3.0 mm apart Droplet AV The AV between plates is 15.0 V Volume V E-field E Mass Weight Run radius between plates' m mg Calculate the Electric Field betwoen the plates. JNITS! Find the charge on the oil drop. 1 scale in nm Return to Main Data lable 3. Charge & Number of Electrons Droplet + % error Charge on Number of Rounded # electrons Weight E-field Run droplet of electrons mg E q/e n UNITS! 1
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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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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
Transcribed Image Text:Millikan Oil Drop Lab
5. Use the zoomed in image to measure the radius of the droplet. Take note
that the units on the scale are in nanometers (nm), 1 nm = 10-9 m. Record
the droplet radius and the 'AV between plates' values in Data Table 1 below.
You are viewing the drop that is in Equilibrium
6. Repeat this process for ten (10) more droplets that are at rest. It is
Measure the radius of the drop
recommended that this table be recreated in a spreadsheet utility like MS
Excel or Google Sheets.
The oil density is 900 kg/m^3
Data Table 1. Raw Data
Calculate the Volume and Mass of the drop
Droplet radius
AV between
Calculate the Fg on the drop
Run
plates"
UNITS!
Set Fe = Fg
---
600 500 400 300 200 100
100 200 300 400 500 600
The capacitor plates are 3.0 mm apart
Droplet
radius
AV
The AV between plates is 15.0 V
Volume
Mss
Weight
E-field
Run
between
plates'
V
mg
E
Calculate the Electric Field between the plates.
JNITS!
Find the charge on the oil drop.
1
scale in nm
Return to Main
Data lable 3. Charge & Number of Electrons Droplet + % error
Charge on Number of Rounded #
electrons
Weight
Run
E-field
E
droplet
of electrons
mg
q/e
UNITS!
1
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