A student carried out the synthesis of aspirin as described using 3.00 g of salicylic acid and 6.0 ml. of acetic anhydride and obtained 1.306 g of aspirin. (a) Calculate the amount of salicylic acid used in moles: (salicylic acid molar mass: 138.12 g/mol) (b) Calculate the mass (g) of acetic anhydride used: (acetic anhydride density: 1.08 g/cm³, Molar mass: 102.09 g/mol) (c) Calculate the amount of acetic anhydride used in moles: (d) Which one is the limiting reactant?
A student carried out the synthesis of aspirin as described using 3.00 g of salicylic acid and 6.0 ml. of acetic anhydride and obtained 1.306 g of aspirin. (a) Calculate the amount of salicylic acid used in moles: (salicylic acid molar mass: 138.12 g/mol) (b) Calculate the mass (g) of acetic anhydride used: (acetic anhydride density: 1.08 g/cm³, Molar mass: 102.09 g/mol) (c) Calculate the amount of acetic anhydride used in moles: (d) Which one is the limiting reactant?
Introductory Chemistry: A Foundation
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- A student carried out the synthesis of aspirin as described using 3.00 g of salicylic acid and 6.0 ml. of acetic anhydride and obtained 1.306 g of aspirin.
(a) Calculate the amount of salicylic acid used in moles:
(salicylic acid molar mass: 138.12 g/mol)
(b) Calculate the mass (g) of acetic anhydride used:
(acetic anhydride density: 1.08 g/cm³, Molar mass: 102.09 g/mol)
(c) Calculate the amount of acetic anhydride used in moles:
(d) Which one is the limiting reactant?
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