weighed 3.893 g of Nickel(II) Chloride Hexahydrate, dissolved it in water and reacted it with an excess of concentrated ammonia solution. She isolated 2.468 g of the desired product. Nickel(II) Chloride Hexahydrate + 6 NH3 → hexaaminenickel (II) chloride + 6 H2O (Note: The molar mass of Nickel(II) Chloride Hexahydrate is 237.7 g/mol and the molar mass of the
weighed 3.893 g of Nickel(II) Chloride Hexahydrate, dissolved it in water and reacted it with an excess of concentrated ammonia solution. She isolated 2.468 g of the desired product. Nickel(II) Chloride Hexahydrate + 6 NH3 → hexaaminenickel (II) chloride + 6 H2O (Note: The molar mass of Nickel(II) Chloride Hexahydrate is 237.7 g/mol and the molar mass of the
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter22: Organic And Biological Molecules
Section: Chapter Questions
Problem 157CP
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Question
In the synthesis of hexaaminenickel (II) chloride as in the equation below, a student weighed 3.893 g of Nickel(II) Chloride Hexahydrate, dissolved it in water and reacted it with an excess of concentrated ammonia solution. She isolated 2.468 g of the desired product.
Nickel(II) Chloride Hexahydrate + 6 NH3 → hexaaminenickel (II) chloride + 6 H2O
(Note: The molar mass of Nickel(II) Chloride Hexahydrate is 237.7 g/mol and the molar mass of the hexaaminenickel (II) chloride is 231.7 g/mol.)
Calculate the percent yield of the reaction.
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