Q Search this co References Use the References to access important values if needed for this question. According to the following reaction, how many grams of chlorine gas are required for the complete reaction of 26.3 grams of phosphorus (P)? Phosphorus (P,)(s) + chlorine(g) > phosphorus trichloride(l) grams chlorine gas Submit Answer : This is group attempt 1 of 5 Stolchiometry of Roactions: Gra... Next Beck FED tv

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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According to the following reaction, how many grams of chlorine gas
are required for the complete reaction of 26.3 grams of phosphorus
(P)?
Phosphorus (P,)(s) + chlorine(g)
> phosphorus trichloride(l)
grams chlorine gas
Submit Answer
: This is group attempt 1 of 5
Stolchiometry of Roactions: Gra...
Next
Beck
FED
tv
Transcribed Image Text:Q Search this co References Use the References to access important values if needed for this question. According to the following reaction, how many grams of chlorine gas are required for the complete reaction of 26.3 grams of phosphorus (P)? Phosphorus (P,)(s) + chlorine(g) > phosphorus trichloride(l) grams chlorine gas Submit Answer : This is group attempt 1 of 5 Stolchiometry of Roactions: Gra... Next Beck FED tv
Expert Solution
Step 1

The number of moles for a given chemical species refers to the ratio of mass of the species to that of its molar mass. The formula is shown below:

Chemistry homework question answer, step 1, image 1

Step 2

In the given problem, the reaction is as follows:

Chemistry homework question answer, step 2, image 1

Step 3

The balanced chemical equation for the given reaction is as follows:

Chemistry homework question answer, step 3, image 1

Step 4

The mass of phosphorus is given to be 26.3 g.

From the balanced chemical equation, it is clear that  1 mole of phosphorus requires 6 moles of chlorine gas. The number of moles of phosphorus present in 26.3 grams of phosphorus can be calculated as follows:

Chemistry homework question answer, step 4, image 1

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