1. Eighty grams of Silver was obtained from one hundred and forty grams of Silver nitrate. The Silver metal is prepared by reducing its nitrate. The chemical equation of the reaction is: Cu + AgNO3 = Cu(NO3)2 + Ag a. Balance the chemical equation b. Indentify the limiting reactant and excess reactant if applicable C. Compute for the theoretical yield d. Determine the perecnt yield of the reaction e. Calculate the percent erorr f. Compute for the excess amount of the excess reactant if applicable. g. Show the complete solutions for your answers in a separate paper.
1. Eighty grams of Silver was obtained from one hundred and forty grams of Silver nitrate. The Silver metal is prepared by reducing its nitrate. The chemical equation of the reaction is: Cu + AgNO3 = Cu(NO3)2 + Ag a. Balance the chemical equation b. Indentify the limiting reactant and excess reactant if applicable C. Compute for the theoretical yield d. Determine the perecnt yield of the reaction e. Calculate the percent erorr f. Compute for the excess amount of the excess reactant if applicable. g. Show the complete solutions for your answers in a separate paper.
Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter3: Chemical Reactions
Section: Chapter Questions
Problem 141QRT
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1. Eighty grams of Silver was obtained from one hundred and forty grams of Silver nitrate. The Silver metal is prepared by reducing its nitrate. The chemical equation of the reaction is:
Cu + AgNO3 = Cu(NO3)2 + Ag
a. Balance the chemical equation
b. Indentify the limiting reactant and excess reactant if applicable
C. Compute for the theoretical yield
d. Determine the perecnt yield of the reaction
e. Calculate the percent erorr
f. Compute for the excess amount of the excess reactant if applicable.
g. Show the complete solutions for your answers in a separate paper.
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