Chemistry: Principles and Practice
Chemistry: Principles and Practice
3rd Edition
ISBN: 9780534420123
Author: Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher: Cengage Learning
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Consider the following chemical equation

Assuming that 19.14 g of NaHCO3 was mixed with 10.00 mL of H3PO4 (d = 1.34 g/mL); determine the following:
H3PO4
NaHCO3
Na3PO4
H₂O
CO₂
Molecular Weight
(g/mol)
97.994
84.007
163.94
18.02
44.01
a. Write the balanced chemical equation
b. Determine the moles of H3PO4 (show all your calculations)
c. Determine the moles for NaHCO3 (show all your calculations)
saimtup constr golianA 8
nobsh
O 097
inbauben sb noise d
sinsbixo 91935->
d. Determine the Theoretical Yield for Na3PO4 from the limiting reagent (show all your calculations)
cobubong
otsubong l
09 On nousbixo ah onamon.)
e. Determine the experimental yield, if a 75% yield is obtained for Na3PO4 (show all your
calculations)
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Transcribed Image Text:Assuming that 19.14 g of NaHCO3 was mixed with 10.00 mL of H3PO4 (d = 1.34 g/mL); determine the following: H3PO4 NaHCO3 Na3PO4 H₂O CO₂ Molecular Weight (g/mol) 97.994 84.007 163.94 18.02 44.01 a. Write the balanced chemical equation b. Determine the moles of H3PO4 (show all your calculations) c. Determine the moles for NaHCO3 (show all your calculations) saimtup constr golianA 8 nobsh O 097 inbauben sb noise d sinsbixo 91935-> d. Determine the Theoretical Yield for Na3PO4 from the limiting reagent (show all your calculations) cobubong otsubong l 09 On nousbixo ah onamon.) e. Determine the experimental yield, if a 75% yield is obtained for Na3PO4 (show all your calculations)
H3PO4 (ac) + NaHCO3 (s) Na3PO4 (ac) + H2O (l) + CO2 (g)
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Transcribed Image Text:H3PO4 (ac) + NaHCO3 (s) Na3PO4 (ac) + H2O (l) + CO2 (g)
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