Prelab Spectrophotometry and Beer's Law uis Cranzaler Name oi30 pm Time м T WRF Write the mathematical expression for Beer's law and explain each symbol in the expression. 1. A-ebc bConcentration Parh lengthincm aosorbonce Molar absorphvity lo g CI/I Use Figure 7.2 to estimate the approximate wavelength of maximum absorption for an aque- ous solution of each of the following: 2. Hemoglobin (the molecule that gives blood its color) a. 670nm b. Chlorophyll (the pigment that gives algae their color) 20nm Fill in the following for the correspondence between % transmittance and absorbance: 3. absorbance 1.00 absorbance = % T 100.0 % T = 0.50 absorbance = absorbance % T 50.0 % T =

Chemistry for Engineering Students
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How do I do question #3 about correspondence between % transmittance and absorbance? Thank you

Prelab
Spectrophotometry
and Beer's Law
uis Cranzaler
Name
oi30 pm
Time
м
T WRF
Write the mathematical expression for Beer's law and explain each symbol in the expression.
1.
A-ebc
bConcentration
Parh lengthincm
aosorbonce
Molar absorphvity
lo g CI/I
Use Figure 7.2 to estimate the approximate wavelength of maximum absorption for an aque-
ous solution of each of the following:
2.
Hemoglobin (the molecule that gives blood its color)
a.
670nm
b.
Chlorophyll (the pigment that gives algae their color)
20nm
Fill in the following for the correspondence between % transmittance and absorbance:
3.
absorbance
1.00 absorbance =
% T
100.0 % T =
0.50 absorbance =
absorbance
% T
50.0 % T =
Transcribed Image Text:Prelab Spectrophotometry and Beer's Law uis Cranzaler Name oi30 pm Time м T WRF Write the mathematical expression for Beer's law and explain each symbol in the expression. 1. A-ebc bConcentration Parh lengthincm aosorbonce Molar absorphvity lo g CI/I Use Figure 7.2 to estimate the approximate wavelength of maximum absorption for an aque- ous solution of each of the following: 2. Hemoglobin (the molecule that gives blood its color) a. 670nm b. Chlorophyll (the pigment that gives algae their color) 20nm Fill in the following for the correspondence between % transmittance and absorbance: 3. absorbance 1.00 absorbance = % T 100.0 % T = 0.50 absorbance = absorbance % T 50.0 % T =
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