17.41 An equal number of moles of H2 and Cl₂ are mixed and held at 298 K and a total pressure of 1 bar. (a) Calculate the collision frequencies Z12 and Z21, where hydrogen is component 1 and chlorine is component 2. (b) Calculate the collision density Z12. Given: d₁ 0.272 nm and d₂ 0.544 nm. = =

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17.41 An equal number of moles of H2 and Cl2 are mixed and
held at 298 K and a total pressure of 1 bar. (a) Calculate the
collision frequencies Z12 and Z21, where hydrogen is component
1 and chlorine is component 2. (b) Calculate the collision density
Z12. Given: d₁ 0.272 nm and d₂
0.544 nm.
=
=
Transcribed Image Text:17.41 An equal number of moles of H2 and Cl2 are mixed and held at 298 K and a total pressure of 1 bar. (a) Calculate the collision frequencies Z12 and Z21, where hydrogen is component 1 and chlorine is component 2. (b) Calculate the collision density Z12. Given: d₁ 0.272 nm and d₂ 0.544 nm. = =
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