Copper (II) oxalate tetrahydrate can be produced by the reaction of copper(Il) chloride tetrahydrate with oxalic acid as follows: CuCl2 · 4H20(aq) + H2C2O4(aq) → CuC204 · 4H20(s) +2H2O() + 2HCI(aq) What is the theoretical yield of CuC204-4H20 that can be produced by 3.28 g of CuCl2 4H20 with an excess of oxalic acid? Use the following molar masses: CuCl2 · 4H20 - 206.52 g/mol H2C204- 99.04 g/mol CuC204 4H20- 223.63 g/mol

Chemistry: Principles and Practice
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Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
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Chapter4: Chemical Reactions In Solution
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Copper (II) oxalate tetrahydrate can be produced by the reaction of copper(II)
chloride tetrahydrate with oxalic acid as follows:
CuCl2 · 4H20(ag) + H2C2O4(aq) CuC204 · 4H20(s) +2H2O() + 2HCI(aq)
What is the theoretical yield of CuC204.4H20 that can be produced by 3.28 g of
CuCl2 4H20 with an excess of oxalic acid?
Use the following molar masses:
CuCl2 · 4H20 - 206.52 g/mol
H2C204- 99.04 g/mol
CuC204 4H20- 223.63 g/mol
Transcribed Image Text:Copper (II) oxalate tetrahydrate can be produced by the reaction of copper(II) chloride tetrahydrate with oxalic acid as follows: CuCl2 · 4H20(ag) + H2C2O4(aq) CuC204 · 4H20(s) +2H2O() + 2HCI(aq) What is the theoretical yield of CuC204.4H20 that can be produced by 3.28 g of CuCl2 4H20 with an excess of oxalic acid? Use the following molar masses: CuCl2 · 4H20 - 206.52 g/mol H2C204- 99.04 g/mol CuC204 4H20- 223.63 g/mol
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