Silver sulfadiazine burn-treating cream creates a barrier against bacterial invasion and releases antimicrobial agents directly into the wound. In a lab, 50.0 g of Ag20 is reacted with 100.0 g of C10H10N4SO2 (molar mass = 250.3 g/mol), to produce AgC10H9N4SO2 (molar mass = 357.1 g/mol), . Using the chemical equation: Ag20 + 2C10H10N4SO2 2AgC10H9N4SO2 + H2O

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Chapter4: Stoichiometry Of Chemical Reactions
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Silver sulfadiazine burn-treating cream creates a barrier against bacterial invasion and releases
antimicrobial agents directly into the wound. In a lab, 50.0 g of Ag20 is reacted with 100.0 g of
C10H10N4SO2 (molar mass = 250.3 g/mol), to produce AgC1oH9N4SO2 (molar mass = 357.1 g/mol), . Using
the chemical equation:
%3D
Ag20 +
2C10H10N4SO2
2A£C10H9N4SO2 + H20
a. Identify the limiting reactant:
b. Calculate the amount of AgC10H9N4SO2 produced.
C.
How much excess reactant/reagent is left unreacted?
d. If the actual amount of AgC10H9N4SO2 produced was 120.13g, calculate the % yield.
Transcribed Image Text:Silver sulfadiazine burn-treating cream creates a barrier against bacterial invasion and releases antimicrobial agents directly into the wound. In a lab, 50.0 g of Ag20 is reacted with 100.0 g of C10H10N4SO2 (molar mass = 250.3 g/mol), to produce AgC1oH9N4SO2 (molar mass = 357.1 g/mol), . Using the chemical equation: %3D Ag20 + 2C10H10N4SO2 2A£C10H9N4SO2 + H20 a. Identify the limiting reactant: b. Calculate the amount of AgC10H9N4SO2 produced. C. How much excess reactant/reagent is left unreacted? d. If the actual amount of AgC10H9N4SO2 produced was 120.13g, calculate the % yield.
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