The balanced chemical equation for the neutralization is: H₂SO4 + 2 NaOH → Na2SO4 + 2 H₂O Determine the moles of sodium hydroxide in the Erlenmeyer flask at the start of the titration. (To avoid introducing rounding errors on intermediate calculations, enter your answer to four significant figures.) Moles of base = mol Average titer Acid concentration 0.350 M Base volume Acid moles 35.55 mL 30.0 mL 0.01244 mol

Principles of Modern Chemistry
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ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
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Chapter11: Solutions
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d The balanced chemical equation for the neutralization is:
H₂SO4 + 2 NaOH → Na2SO4 + 2 H₂O
Determine the moles of sodium hydroxide in the Erlenmeyer
flask at the start of the titration.
(To avoid introducing rounding errors on intermediate
calculations, enter your answer to four significant figures.)
Moles of base =
mol
Average titer
35.55 mL
Acid concentration 0.350 M
Base volume
Acid moles
30.0 mL
0.01244 mol
Transcribed Image Text:d The balanced chemical equation for the neutralization is: H₂SO4 + 2 NaOH → Na2SO4 + 2 H₂O Determine the moles of sodium hydroxide in the Erlenmeyer flask at the start of the titration. (To avoid introducing rounding errors on intermediate calculations, enter your answer to four significant figures.) Moles of base = mol Average titer 35.55 mL Acid concentration 0.350 M Base volume Acid moles 30.0 mL 0.01244 mol
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