The thermal decomposition of phosphine (PH3) into phosphorus and molecular hydrogen is a first-order reaction: 4PH3(g) P4(g) + 6H₂(g) The half-life of the reaction is 31.9 s at 680 °C. Part: 0 / 2 Part 1 of 2 Calculate the first-order rate constant for the reaction. Round your answer to 3 significant digits. I Part: 1 / 2 - Part 2 of 2 x 0 X 00 Calculate the time required for 87.0 percent of the phosphine to decompose. Round your answer to 3 significant digits. 09

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Chapter1: Chemical Foundations
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The thermal decomposition of phosphine (PH3) into phosphorus and molecular hydrogen is a first-order reaction:
4PH₂(g) P₂(g) + 6H₂
6 H₂(g)
The half-life of the reaction is 31.9 s at 680 °C.
Part: 0 / 2
Part 1 of 2
Calculate the first-order rate constant for the reaction. Round your answer to 3 significant digits.
Part: 1 / 2
Part 2 of 2
x10
X
Ś
x10
Calculate the time required for 87.0 percent of the phosphine to decompose. Round your answer to 3 significant digits.
010
↑
Transcribed Image Text:The thermal decomposition of phosphine (PH3) into phosphorus and molecular hydrogen is a first-order reaction: 4PH₂(g) P₂(g) + 6H₂ 6 H₂(g) The half-life of the reaction is 31.9 s at 680 °C. Part: 0 / 2 Part 1 of 2 Calculate the first-order rate constant for the reaction. Round your answer to 3 significant digits. Part: 1 / 2 Part 2 of 2 x10 X Ś x10 Calculate the time required for 87.0 percent of the phosphine to decompose. Round your answer to 3 significant digits. 010 ↑
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