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Question
in an experiment, potassium chlorate decomposed according to the following chemical equation:
\\2\text{kclo}_3 \
ightarrow 2\text{kcl} + 3\text{o}_2\\
(molar mass of \\(\text{kclo}_3 = 122.5\text{ g/mol}\\); \\(\text{kcl} = 74.55\text{ g/mol}\\); \\(\text{o}_2 = 31.998\text{ g/mol}\\))
if the mass of potassium chlorate was 240 grams, which of the following calculations can be used to determine the mass of oxygen gas formed?
- \\((240 \times 2 \times 31.998) \div (122.5 \times 3)\text{ grams}\\)
- \\((240 \times 3 \times 31.998) \div (122.5 \times 2)\text{ grams}\\)
- \\((240 \times 2 \times 122.5) \div (31.998 \times 3)\text{ grams}\\)
- \\((240 \times 3 \times 122.5) \div (31.998 \times 2)\text{ grams}\\)
Set up the dimensional analysis expression
$$
\text{Mass of }\text{O}_2 = 240\text{ g }\text{KClO}_3 \times \frac{1\text{ mol }\text{KClO}_3}{122.5\text{ g }\text{KClO}_3} \times \frac{3\text{ mol }\text{O}_2}{2\text{ mol }\text{KClO}_3} \times \frac{31.998\text{ g }\text{O}_2}{1\text{ mol }\text{O}_2}
$$
Simplify the expression algebraically
$$
\text{Mass of }\text{O}_2 = \frac{240 \times 3 \times 31.998}{122.5 \times 2}\text{ grams}
$$
Match with the given options
$$
(240 \times 3 \times 31.998) \div (122.5 \times 2)\text{ grams}
$$
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- (A) \((240 \times 2 \times 31.998) \div (122.5 \times 3)\text{ grams}\)
- (B) \((240 \times 3 \times 31.998) \div (122.5 \times 2)\text{ grams}\) (Correct answer)
- (C) \((240 \times 2 \times 122.5) \div (31.998 \times 3)\text{ grams}\)
- (D) \((240 \times 3 \times 122.5) \div (31.998 \times 2)\text{ grams}\)