The reaction starts with 12.31 g of S, (MW 256.56 g/mol) and 7.86 g of CI, (MW 70.90 g/mol). Set up the table below that represents 10% yield with the given reaction conditions. Set up the table below that represents 100% yield with the given reaction conditions.. S,(1) 4CI,(9) 4S,CI,(1) + Before (mol) Change (mol) After (mol)

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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Question 9 of 12
Disulfide dichloride (S.CI,) is used in the preparation of rubber. The addition of
this compound to natural rubber increases the elasticity and tensile strength.
Disulfide dichloride can be prepared using the reaction below. Calculate the
percent yield for this reaction.
S,(1) + 4CI,(g) → 4S,C,(1)
2
3
NEXT
>
The reaction starts with 12.31 g of S, (MW 256.56 g/mol) and 7.86 g of CI, (MW 70.90 g/mol). Set
up the table below that represents 100% yield with the given reaction conditions. Set up the table
below that represents 100% yield with the given reaction conditions..
S,(1)
4CI,(g)
4S,CI,(1)
Before (mol)
Change (mol)
After (mol)
2 RESET
0.010
-0.010
0.020
-0.020
0.028
-0.028
0.111
-0.111
0.444
-0.444
9.02
-9.02
20.8
-20.8
0.048
-0.048
18.54
-18.54
Transcribed Image Text:Question 9 of 12 Disulfide dichloride (S.CI,) is used in the preparation of rubber. The addition of this compound to natural rubber increases the elasticity and tensile strength. Disulfide dichloride can be prepared using the reaction below. Calculate the percent yield for this reaction. S,(1) + 4CI,(g) → 4S,C,(1) 2 3 NEXT > The reaction starts with 12.31 g of S, (MW 256.56 g/mol) and 7.86 g of CI, (MW 70.90 g/mol). Set up the table below that represents 100% yield with the given reaction conditions. Set up the table below that represents 100% yield with the given reaction conditions.. S,(1) 4CI,(g) 4S,CI,(1) Before (mol) Change (mol) After (mol) 2 RESET 0.010 -0.010 0.020 -0.020 0.028 -0.028 0.111 -0.111 0.444 -0.444 9.02 -9.02 20.8 -20.8 0.048 -0.048 18.54 -18.54
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