750 g potassium iodide 237 mL per bottle Potassium 950 g elemental iodine 1.5 kgs potassium hydroxide 1 g per ml Oral Saturated Solution iodide IC. SYNTHESIS AND PACKAGING Mass to Mass Stoichiometry Calculation KIO, 950g 12 = 267.0019044 g KIO. 1500 KOH = 953.5496403 g KIO, KI 950g 12 = 1035.579853 g KI 1500 KOH = 3698.388588 g KI H20 950g 12 = 67.4308353 g H20 1500 KOH = 240.8171915 g H20 Limiting Reagent Excess Reagent кон Amount (g) in excess KOH = 1079.987407 grams % Yield 69.45% Number of dosage form and packaging that can be produced from stoichiometric calculation
750 g potassium iodide 237 mL per bottle Potassium 950 g elemental iodine 1.5 kgs potassium hydroxide 1 g per ml Oral Saturated Solution iodide IC. SYNTHESIS AND PACKAGING Mass to Mass Stoichiometry Calculation KIO, 950g 12 = 267.0019044 g KIO. 1500 KOH = 953.5496403 g KIO, KI 950g 12 = 1035.579853 g KI 1500 KOH = 3698.388588 g KI H20 950g 12 = 67.4308353 g H20 1500 KOH = 240.8171915 g H20 Limiting Reagent Excess Reagent кон Amount (g) in excess KOH = 1079.987407 grams % Yield 69.45% Number of dosage form and packaging that can be produced from stoichiometric calculation
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:1 g per
950 g elemental iodine +
1.5 kgs potassium
hydroxide
750 g
potassium
iodide
Potassium
Oral
237 mL per
iodide
ml
Saturated
bottle
Solution
IC. SYNTHESIS AND PACKAGING
Mass to Mass Stoichiometry
Calculation
KIO:
950g 12 = 267.0019044 g KIO3
1500 KOH = 953.5496403 g KIO3
KI
950g 12 = 1035.579853 g KI
1500 KOH = 3698.388588 g KI
H20
950g 12 = 67.4308353 g H20
1500 KOH = 240.8171915 g H20
Limiting Reagent
Excess Reagent
Кон
Amount (g) in excess
KOH = 1079.987407 grams
% Yield
69.45%
Number of dosage form and
packaging
that can be produced from
stoichiometric calculation
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