2 2 points A stock solution of red dye solution is in a reagent hood ready to be used in the reaction. Molarity of red dye stock solution = 2.8 x 10-5 mol/L The experiment is carried out with the following volumes (Vol) of reagents: Vol of dye solution (mL) 2.5 Vol of CIO solution (mL) Vol of deionized water (mL) 10.0 17.5 Total volume of the reaction solution in the test tube is therefore 30.0 mL. The dilution equation is M1V1 = M2V2. What is the concentration of red dye, in units of mol/L, in the reaction mixture (in the test tube) at the start of the reaction? 2.2 × 10-6 mol/L 2.5 x 10-6 mol/L 2.8 x 106 mol/L 2.3 x 10-6 mol/L

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A stock solution of red dye solution is in a reagent hood ready to be used in the reaction. Molarity of red dye stock solution =
2.8 x 10-5 mol/L
The experiment is carried out with the following volumes (Vol) of reagents:
Vol of dye solution (mL)
2.5
Vol of CIO solution (mL) Vol of deionized water (mL)
10.0
17.5
Total volume of the reaction solution in the test tube is therefore 30.0 mL. The dilution equation is M1V1 = M2V2.
What is the concentration of red dye, in units of mol/L, in the reaction mixture (in the test tube) at the start of the reaction?
2.2 × 10-6 mol/L
2.5 x 10-6 mol/L
2.8 x 106 mol/L
2.3 x 10-6 mol/L
Transcribed Image Text:2 2 points A stock solution of red dye solution is in a reagent hood ready to be used in the reaction. Molarity of red dye stock solution = 2.8 x 10-5 mol/L The experiment is carried out with the following volumes (Vol) of reagents: Vol of dye solution (mL) 2.5 Vol of CIO solution (mL) Vol of deionized water (mL) 10.0 17.5 Total volume of the reaction solution in the test tube is therefore 30.0 mL. The dilution equation is M1V1 = M2V2. What is the concentration of red dye, in units of mol/L, in the reaction mixture (in the test tube) at the start of the reaction? 2.2 × 10-6 mol/L 2.5 x 10-6 mol/L 2.8 x 106 mol/L 2.3 x 10-6 mol/L
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