4. A solution containing complexes of Bi (III) and thiourea has a molar absorptivity of 9.32 x 103 L/cm.M at 470 nm. Calculate the absorbance of a 6.24 x 10-5 M solution in a 1.00 cm cell. O 58.15 x 10-2 O 5.815 x 109 O 1.494 x 108 O 5.815 x 10-7
4. A solution containing complexes of Bi (III) and thiourea has a molar absorptivity of 9.32 x 103 L/cm.M at 470 nm. Calculate the absorbance of a 6.24 x 10-5 M solution in a 1.00 cm cell. O 58.15 x 10-2 O 5.815 x 109 O 1.494 x 108 O 5.815 x 10-7
Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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![4. A solution containing
complexes of Bi (III) and thiourea
has a molar absorptivity of 9.32 x
103 L/cm.M at 470 nm. Calculate
the absorbance of a 6.24 x 10-5
M solution in a 1.00 cm cell.
58.15 x 10-2
5.815 x 109
1.494 x 108
O 5.815 x 10-7](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5d5fc844-d778-4ab0-ad26-87c27ec06917%2Fb0c9554e-9a02-4547-9c8f-79d8a1153d04%2Fl30irjr_processed.jpeg&w=3840&q=75)
Transcribed Image Text:4. A solution containing
complexes of Bi (III) and thiourea
has a molar absorptivity of 9.32 x
103 L/cm.M at 470 nm. Calculate
the absorbance of a 6.24 x 10-5
M solution in a 1.00 cm cell.
58.15 x 10-2
5.815 x 109
1.494 x 108
O 5.815 x 10-7
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