Suppose you are studying the copper cycle of reactions, starting with 1.00 g of copper. 1)...
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Suppose you are studying the copper cycle of reactions, starting with 1.00 g of copper. 1) The first step is the reaction of copper metal with excess nitric acid to form copper(II) nitrate. Cu (s) + 4HNO3(aq) - → Cu(NO3)2 (aq) + 2 H₂O (1) +2 NO₂2 (g) What is the theoretical yield of copper(II) nitrate in the first step? g 2) The second step is the reaction of copper(II) nitrate with sodium hydroxide to produce copper(II) hydroxide. Using your mass of copper(II) nitrate from the first step, what is the theoretical yield of copper(II) hydroxide in the second step? 9 3) The third step is the reaction of copper(II) hydroxide with sulfuric acid to produce copper(II) sulfate. Using your mass of copper(II) hydroxide from the second step, what is the theoretical yield of copper(II) sulfate in the third step? 9 4) The fourth step is the reaction of copper(II) sulfate with sodium phosphate to produce copper(II) phosphate. Using your mass of copper(II) sulfate from the third step, what is the theoretical yield of copper(II) phosphate in the fourth step? 5) The fifth step is the reaction of copper(II) phosphate with hydrochloric acid to produce copper(II) chloride. Using your mass of copper(II) phosphate from the fourth step, what is the theoretical yield of copper(II) chloride in the fifth step? g 6) The sixth and final step is the reaction of copper(II) chloride with magnesium to reform the copper metal. Using your mass of copper(II) chloride from the fifth step, what is the theoretical yield of copper in the sixth step? 9 Suppose you are studying the copper cycle of reactions, starting with 1.00 g of copper. 1) The first step is the reaction of copper metal with excess nitric acid to form copper(II) nitrate. Cu (s) + 4HNO3(aq) - → Cu(NO3)2 (aq) + 2 H₂O (1) +2 NO₂2 (g) What is the theoretical yield of copper(II) nitrate in the first step? g 2) The second step is the reaction of copper(II) nitrate with sodium hydroxide to produce copper(II) hydroxide. Using your mass of copper(II) nitrate from the first step, what is the theoretical yield of copper(II) hydroxide in the second step? 9 3) The third step is the reaction of copper(II) hydroxide with sulfuric acid to produce copper(II) sulfate. Using your mass of copper(II) hydroxide from the second step, what is the theoretical yield of copper(II) sulfate in the third step? 9 4) The fourth step is the reaction of copper(II) sulfate with sodium phosphate to produce copper(II) phosphate. Using your mass of copper(II) sulfate from the third step, what is the theoretical yield of copper(II) phosphate in the fourth step? 5) The fifth step is the reaction of copper(II) phosphate with hydrochloric acid to produce copper(II) chloride. Using your mass of copper(II) phosphate from the fourth step, what is the theoretical yield of copper(II) chloride in the fifth step? g 6) The sixth and final step is the reaction of copper(II) chloride with magnesium to reform the copper metal. Using your mass of copper(II) chloride from the fifth step, what is the theoretical yield of copper in the sixth step? 9
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Related Book For
Elementary Principles of Chemical Processes
ISBN: 978-1119498759
4th edition
Authors: Richard M. Felder, ? Ronald W. Rousseau, ? Lisa G. Bullard
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