6. Arsenic can be extracted from its ores by first reacting the ore with oxygen, (called roasting), to form solid As O6, which is then reduced using carbon. As,06(s) + 6 C(s) As4(g) + 6 CO(g) 69, Predict the direction of the shift of the equilibrium position in response to each of the following changes in conditions: a) addition of CO(g) b) addition or removal of carbon or arsenic (III) oxide, As 06 c) removal of gaseous arsenic, As4(g)
6. Arsenic can be extracted from its ores by first reacting the ore with oxygen, (called roasting), to form solid As O6, which is then reduced using carbon. As,06(s) + 6 C(s) As4(g) + 6 CO(g) 69, Predict the direction of the shift of the equilibrium position in response to each of the following changes in conditions: a) addition of CO(g) b) addition or removal of carbon or arsenic (III) oxide, As 06 c) removal of gaseous arsenic, As4(g)
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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
Transcribed Image Text:6. Arsenic can be extracted from its ores by first
reacting the ore with oxygen, (called roasting),
to form solid As¸O6, which is then reduced
using carbon.
As,06(s) + 6 C(s) As4(g) + 6 CO(g)
Predict the direction of the shift of the
equilibrium position in response to each of the
following changes in conditions:
a) addition of CO(g)
b) addition or removal of carbon or
arsenic (III) oxide, As406
c) removal of gaseous arsenic, As4(g)
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