In practice the standard solutions are made by pipetting a known amount of a stock solution with a certain amount of distilled water. Assuming the stock solution is 900. µM, determine the concentrations of the standards A through E (give your values to three sig figs). Soln ml stock ml distilled standard conc absorbance water (µM) A 5.00 5.00 5.00 9.00 5.00 13.00 5.00 17.00 5.00 21.00

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Determine the standard concentration of A through E and then the absorbance. I just need clarification on if I add together the two ml values given.

Chem 116L; Fundamentals of Chemistry 1I Laboratory: Calibration Curves (Virtual Lab)
4. Using Excel (or another graphing package of your preference) draw a 'scatter with smooth
lines and markers' plot (see 'intro_excel section C) of absorbance (y-axis) vs. wavelength (x-
axis) and estimate the maximum absorbance wavelength (the wavelength at which the
absorbance is a maximum). Appropriately format the graph and label the graph and axis
('intro_excel' section D and section F)
Maximum absorbance wavelength
540nm
Note that in the simulation it is assumed that the spectrophotometer has already been
calibrated with a blank
Part 2. Create a calibration plot
In order to determine the concentration of an unknown solution, we first construct a
calibration curve. This is done by creating five standard solutions of known concentration
and measuring the absorbance of each.
In practice the standard solutions are made by pipetting a known amount of a stock solution
with a certain amount of distilled water. Assuming the stock solution is 900. µM, determine
the concentrations of the standards A through E (give your values to three sig figs).
Soln
ml stock
ml distilled
standard conc
absorbance
water
(µM).
A.
B.
teanT old
00 6
13.00
C.
17.00
D.
5.00
21.00
Show your calculations with working
Transcribed Image Text:Chem 116L; Fundamentals of Chemistry 1I Laboratory: Calibration Curves (Virtual Lab) 4. Using Excel (or another graphing package of your preference) draw a 'scatter with smooth lines and markers' plot (see 'intro_excel section C) of absorbance (y-axis) vs. wavelength (x- axis) and estimate the maximum absorbance wavelength (the wavelength at which the absorbance is a maximum). Appropriately format the graph and label the graph and axis ('intro_excel' section D and section F) Maximum absorbance wavelength 540nm Note that in the simulation it is assumed that the spectrophotometer has already been calibrated with a blank Part 2. Create a calibration plot In order to determine the concentration of an unknown solution, we first construct a calibration curve. This is done by creating five standard solutions of known concentration and measuring the absorbance of each. In practice the standard solutions are made by pipetting a known amount of a stock solution with a certain amount of distilled water. Assuming the stock solution is 900. µM, determine the concentrations of the standards A through E (give your values to three sig figs). Soln ml stock ml distilled standard conc absorbance water (µM). A. B. teanT old 00 6 13.00 C. 17.00 D. 5.00 21.00 Show your calculations with working
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