(Na2SO4=142.05g/mol; Na2S-78.05g/mol, C=12.01g/mol; CO=28.01g/mol) Sodium sulfide, Na2S, is used in the leather industry to remove hair from hides. The Na₂S is made by the reaction Na2SO4(s) + C(s) → Na2S(s) + CO(g). Suppose you mix 20.0 g of Na2SO4 and 12.26 g of C. Which is the limiting reactant? What mass of Na2S is produced? How much of the excess reagent remains if the reaction is completed?
(Na2SO4=142.05g/mol; Na2S-78.05g/mol, C=12.01g/mol; CO=28.01g/mol) Sodium sulfide, Na2S, is used in the leather industry to remove hair from hides. The Na₂S is made by the reaction Na2SO4(s) + C(s) → Na2S(s) + CO(g). Suppose you mix 20.0 g of Na2SO4 and 12.26 g of C. Which is the limiting reactant? What mass of Na2S is produced? How much of the excess reagent remains if the reaction is completed?
Chemistry: Principles and Practice
3rd Edition
ISBN:9780534420123
Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Chapter3: Equation, The Mole, And Chemical Formulas
Section: Chapter Questions
Problem 3.50QE
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![(Na2SO4=142.05g/mol; Na2S-78.05g/mol, C=12.01 g/mol; CO=28.01g/mol)
Sodium sulfide, Na₂S, is used in the leather industry to remove hair from hides.
The Na₂S is made by the reaction Na2SO4(s) + C(s) → Na2S(s) + CO(g). Suppose
you mix 20.0 g of Na2SO4 and 12.26 g of C.
Which is the limiting reactant?
What mass of Na2S is produced?
How much of the excess reagent remains if the reaction is completed?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4a972aaa-031e-40b0-885e-bd4618e51bef%2Ffbf491c5-ae82-4143-ad96-285787ed8c05%2Fe1c01t1_processed.png&w=3840&q=75)
Transcribed Image Text:(Na2SO4=142.05g/mol; Na2S-78.05g/mol, C=12.01 g/mol; CO=28.01g/mol)
Sodium sulfide, Na₂S, is used in the leather industry to remove hair from hides.
The Na₂S is made by the reaction Na2SO4(s) + C(s) → Na2S(s) + CO(g). Suppose
you mix 20.0 g of Na2SO4 and 12.26 g of C.
Which is the limiting reactant?
What mass of Na2S is produced?
How much of the excess reagent remains if the reaction is completed?
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