3. Determine the Rydberg constant from the data. Since for n, = 2: 1 1 = R H. 1 Equation 1 n? n 1 RH 22 1 =-RH RH Equation 2 4 which is of the form y = mx + b That is, Equation 2 is of the form of a straight line; hence the Rydberg constant is the negative of the slope. Plot m = -R. Be sure to label the axes of the graph. As a check, compare this value of R, with the y-intercept, which should equal R/4. To make it easy, set up a table (next page) for the data. Use meters for wavelength; the units of R, will be meterl. Show your calculations in y = 1/A vs. X = 1/n, Excel or Google Sheets), then determine the slope %3D the space below:

Principles of Instrumental Analysis
7th Edition
ISBN:9781305577213
Author:Douglas A. Skoog, F. James Holler, Stanley R. Crouch
Publisher:Douglas A. Skoog, F. James Holler, Stanley R. Crouch
Chapter15: Molecular Luminescence Spectrometry
Section: Chapter Questions
Problem 15.1QAP
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need help with 3 pls just the equations 

3.
Hydrogen Emission Lines
Wavelength
Scale Reading (from calibration
curve)
Assigned
Transition
Line
HATE
1.
てと
2.
Tah wunsh Muh
410 nm
4.
PART B.
Flame Tests
Solution
Color and Intensity
Duration
noliendil
20
Baalz
wedkyellow
1271
1つ7
wealk
van
Unknown
Unknown number: 2
12
Identity of unknown:icz
18
Transcribed Image Text:3. Hydrogen Emission Lines Wavelength Scale Reading (from calibration curve) Assigned Transition Line HATE 1. てと 2. Tah wunsh Muh 410 nm 4. PART B. Flame Tests Solution Color and Intensity Duration noliendil 20 Baalz wedkyellow 1271 1つ7 wealk van Unknown Unknown number: 2 12 Identity of unknown:icz 18
3. Determine the Rydberg constant from the data. Since for
= 2:
= R,
n? n
Equation 1
H.
9,
R,
H.
- RH
22
|
4.
1
R
H.
RH
Equation 2
4.
which is of the form y = mx + b
That is, Equation 2 is of the form of a straight line; hence the Rydberg constant is the negative
of the slope. Plot y =
m = -R. Be sure to label the axes of the graph. As a check, compare this value of R,
the y-intercept, which should equal R/4. To make it easy, set up a table (next page) for the
data. Use meters for wavelength; the units of R, will be meter-1. Show your calculations in
y%3D
1A vs. x = 1/n (in Excel or Google Sheets), then determine the slope
%3D
with
%3D
H'
H.
the space below:
Transcribed Image Text:3. Determine the Rydberg constant from the data. Since for = 2: = R, n? n Equation 1 H. 9, R, H. - RH 22 | 4. 1 R H. RH Equation 2 4. which is of the form y = mx + b That is, Equation 2 is of the form of a straight line; hence the Rydberg constant is the negative of the slope. Plot y = m = -R. Be sure to label the axes of the graph. As a check, compare this value of R, the y-intercept, which should equal R/4. To make it easy, set up a table (next page) for the data. Use meters for wavelength; the units of R, will be meter-1. Show your calculations in y%3D 1A vs. x = 1/n (in Excel or Google Sheets), then determine the slope %3D with %3D H' H. the space below:
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