Compare the amount of copper predicted in part A with the amount measured in part B. What percentage of the predicted amount was obtained?

Chemistry for Engineering Students
3rd Edition
ISBN:9781285199023
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter1: Introduction To Chemistry
Section: Chapter Questions
Problem 1.83PAE
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Compare the amount of copper predicted in part A with the amount measured in part B. What percentage of the predicted amount was obtained? Why aren’t these values the same?
you may come back to it the next day. A If yo
it's in a safe location away from young children and pets. Make
dust or other impurity settles on it.
6. Weigh the dry filter paper (with the solid on it) on the electronic
filter paper to determine the mass of the solid.
BIU
Font Sizes
三 =
Mass of filter paper (g)
0.54
Mass of filter
(g)
рaper
and
copper
1.26
Mass of copper (g)
0.72
Characters used: 97/15000
Transcribed Image Text:you may come back to it the next day. A If yo it's in a safe location away from young children and pets. Make dust or other impurity settles on it. 6. Weigh the dry filter paper (with the solid on it) on the electronic filter paper to determine the mass of the solid. BIU Font Sizes 三 = Mass of filter paper (g) 0.54 Mass of filter (g) рaper and copper 1.26 Mass of copper (g) 0.72 Characters used: 97/15000
Part A
Copper atoms are heavier than magnesium atoms. So, although each atom of magnesium c
one atom of copper, the masses won't be the same. The ratio of the atomic weight of coppe
weight of magnesium is about 2.61. Given this ratio and the initial mass of the magnesium st
in task 1, part A, calculate the mass of copper that can be produced. Recall: Mg + Cu(NO,),
Mg(NO3)2
BIU×
三 E EE 三三
Font Sizes
A -
Mass of Cu produced 0.9918
Characters used: 28 /15000
Transcribed Image Text:Part A Copper atoms are heavier than magnesium atoms. So, although each atom of magnesium c one atom of copper, the masses won't be the same. The ratio of the atomic weight of coppe weight of magnesium is about 2.61. Given this ratio and the initial mass of the magnesium st in task 1, part A, calculate the mass of copper that can be produced. Recall: Mg + Cu(NO,), Mg(NO3)2 BIU× 三 E EE 三三 Font Sizes A - Mass of Cu produced 0.9918 Characters used: 28 /15000
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