Exam 19: Fundamentals of Spectrophotometry
Exam 1: The Analytical Process20 Questions
Exam 2: Chemical Measurements21 Questions
Exam 3: Tools of the Trade19 Questions
Exam 4: Experimental Error20 Questions
Exam 5: Statistics22 Questions
Exam 6: Quality Assurance and Calibration Methods20 Questions
Exam 7: Chemical Equilibrium20 Questions
Exam 8: Let the Titrations Begin20 Questions
Exam 9: Activity and the Systematic Treatment of Equilibrium20 Questions
Exam 10: Monoprotic Acid-Base Equilibria20 Questions
Exam 11: Polyprotic Acid-Base Equilibria20 Questions
Exam 12: Acid-Base Titrations20 Questions
Exam 13: Edta Titrations20 Questions
Exam 14: Advanced Topics in Equilibrium20 Questions
Exam 15: Fundamentals of Electrochemistry20 Questions
Exam 16: Electrodes and Potentiometry20 Questions
Exam 17: Redox Titrations20 Questions
Exam 18: Electroanalytical Techniques20 Questions
Exam 19: Fundamentals of Spectrophotometry23 Questions
Exam 20: Applications of Spectrophotometry20 Questions
Exam 21: Spectrophotometers20 Questions
Exam 22: Atomic Spectroscopy20 Questions
Exam 23: Mass Spectrometry20 Questions
Exam 24: Introduction to Analytical Separations20 Questions
Exam 25: Gas Chromatography20 Questions
Exam 26: High-Performance Liquid Chromatography20 Questions
Exam 27: Chromatographic Methods and Capillary Electrophoresis20 Questions
Exam 28: Gravimetric and Combustion Analysis20 Questions
Exam 29: Sample Preparation19 Questions
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Which of the following is TRUE for excitation spectra?
Free
(Multiple Choice)
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Correct Answer:
B
A 10.00 mL sample is titrated with 0.50 mL of titrant.The observed absorbance is 0.3219.Calculate the corrected absorbance.
Free
(Multiple Choice)
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Correct Answer:
D
After 10.00 mL titrant has been added to 50.00 mL analyte the absorbance was measured to be 0.4639.Calculate corrected absorbance.
Free
(Short Answer)
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Correct Answer:
0.5567
Which of the following is NOT true for light modeled as a particle?
(Multiple Choice)
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Which of the following are correct for Beers Law?
I Absorbance increases as concentration increases.
II Absorbance decreases as pathlength increases.
III The molar absorptivity value is chromophore and wavelength specific.
IV The absorption spectrum is a graph showing absorbance changes with wavelength.
(Multiple Choice)
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The iron content of a well water sample must be quantified.A 10.00 mL aliquot of well water is transferred to a 100.0-mL volumetric flask and 20 mL of 0.10 M nitric acid is added to oxidize iron(II)to iron(III).Next 30 mL of a 0.1 M sodium thiocyanate solution is added to form the deep red complex iron(III)thiocyanate.The solution is diluted to volume with distilled deionized water.A reagent blank is similarly prepared.If the absorbance of the iron thiocyanate solution is 0.5483 and the reagent blank absorbance is 0.0282,calculate the iron concentration for the water sample.The molar absorptivity for iron(III)thiocyanate is 3200 M−1 cm−1.Assume a pathlength of 1 cm and a 100% yield.
Fe3+ (aq)+ SCN- (aq)____________________ FeSCN2+ (aq)
(Short Answer)
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Which of the statements below is FALSE for the excited and ground states of molecules?
(Multiple Choice)
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A transmittance of 0.3847 is measured for a 0.00023 M solution.Assuming a pathlength of 1 cm,calculate the molar absorptivity of the solute.
(Essay)
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Quinine sulfate in 0.5 M sulfuric acid is excited at 310 nm and fluoresces at 450 nm.How many Joules were dissipated through nonradiative transitions on a per molecule basis?
(Essay)
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Beer's law works for____________________ radiation passing through a____________________ solution in which the absorbing species is____________________ in a concentration-dependent equilibrium.
(Multiple Choice)
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Which of the following is NOT true for light modeled as a wave?
(Multiple Choice)
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The basic spectrophotometer is composed of four components.Which component listed below is NOT one of the four?
(Multiple Choice)
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The part of a spectrophotometer that selects the wavelength to irradiate the sample is called the:
(Multiple Choice)
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Absorbance measured during a spectrophotometric titration must be corrected due to
(Multiple Choice)
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Calculate the energy of a photon with a frequency of 573.8 nm.
(Multiple Choice)
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