3. The chemical equation for the decomposition of potassium chlorate is 2 KClO3(s) → 2 KCI(s) + 302(g) The molar masses of the elements in this equation are: K 39.1 g/mol, CI 35.4 g/mol, O 16.0 g/mol B. Using the Law of Conservation of Mass, how many grams of oxygen formed when 30.6g potassium chlorate decomposed?

Chemistry for Engineering Students
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Chapter3: Molecules, Moles, And Chemical Equations
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Problem 3.92PAE: 3.92 Many chemical reactions take place in the catalytic con- verter of a car. In one of these...
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3. The chemical equation for the decomposition of
potassium chlorate is
2 KClO3(s) → 2 KCI(s) + 302(g)
The molar masses of the elements in this equation are:
K 39.1 g/mol, CI 35.4 g/mol, O 16.0 g/mol
Transcribed Image Text:3. The chemical equation for the decomposition of potassium chlorate is 2 KClO3(s) → 2 KCI(s) + 302(g) The molar masses of the elements in this equation are: K 39.1 g/mol, CI 35.4 g/mol, O 16.0 g/mol
B. Using the Law of Conservation of Mass, how many
grams of oxygen formed when 30.6g potassium chlorate
decomposed?
Transcribed Image Text:B. Using the Law of Conservation of Mass, how many grams of oxygen formed when 30.6g potassium chlorate decomposed?
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