A solution containing the complex formed between Bi(III) and thiourea has a molar absorptivity of 9.32 x 10³ L mol¹ cm¹ at 470 nm. 01 00. gaivlozalb vd b918919 19 anoitulos 1004 (a) What is the absorbance of a 4.25 X 105 M solution of the complex at 470 nm in a 1.00-cm cell? 00.5. a com (b) What is the percent transmittance of the solution described in (a)? 02 doro 101 (allo mo-00.1) comm (c) What is the molar concentration of the complex in a solution that has the absorbance described in (a) when measured at 470 nm in a 2.50-cm cell? 1910 911 1970

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*13-7_ A solution containing the complex formed between Bi(III) and thiourea has a molar absorptivity of
9.32 X 10³ L mol¹ cm¹ at 470 nm.
00.5
701 X
00.A
1910 919
juloa wot
What is the absorbance of a 4.25 × 10-5 M :
I solution of the complex at 470 nm in a 1.00-cm cell?
(a) W
(b)
(alios mo-00.1)
What is the percent transmittance of the solution described in (a)?
(c)
200
What is the molar concentration of the complex in a solution that has the absorbance described in
Torito or tovo
(a) when measured at 470 nm in a 2.50-cm cell?
(non?+ 1rd
Transcribed Image Text:*13-7_ A solution containing the complex formed between Bi(III) and thiourea has a molar absorptivity of 9.32 X 10³ L mol¹ cm¹ at 470 nm. 00.5 701 X 00.A 1910 919 juloa wot What is the absorbance of a 4.25 × 10-5 M : I solution of the complex at 470 nm in a 1.00-cm cell? (a) W (b) (alios mo-00.1) What is the percent transmittance of the solution described in (a)? (c) 200 What is the molar concentration of the complex in a solution that has the absorbance described in Torito or tovo (a) when measured at 470 nm in a 2.50-cm cell? (non?+ 1rd
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