20 4. A sample containing ethanol and water was found to have n = 1.3400. Calculate the exact percentage of ethanol and water in this example. Show your work. (Hint: Solve this mathematically. Assume a linear relationship between concentration and refractive index. You can make the y-intercept the refractive index of water, and use the slope formula to find the slope. The x axis (concentration) will be from 0% ethanol to 100% ethanol. From this information, you can get the equation of the line, then plug in your numbers from there.)

Biochemistry
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ISBN:9781319114671
Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Publisher:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Chapter1: Biochemistry: An Evolving Science
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4. A sample containing ethanol and water was found to have n6 = 1.3400. Calculate the
exact percentage of ethanol and water in this example. Show your work. (Hint: Solve
this mathematically. Assume a linear relationship between concentration and refractive
index. You can make the y-intercept the refractive index of water, and use the slope
formula to find the slope. The x axis (concentration) will be from 0% ethanol to 100%
ethanol. From this information, you can get the equation of the line, then plug in your
numbers from there.)
Transcribed Image Text:20 4. A sample containing ethanol and water was found to have n6 = 1.3400. Calculate the exact percentage of ethanol and water in this example. Show your work. (Hint: Solve this mathematically. Assume a linear relationship between concentration and refractive index. You can make the y-intercept the refractive index of water, and use the slope formula to find the slope. The x axis (concentration) will be from 0% ethanol to 100% ethanol. From this information, you can get the equation of the line, then plug in your numbers from there.)
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