(a) the concentration gradient of hydrogen and (b) the flux of hydrogen through the foil.

Chemistry for Engineering Students
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Chapter12: Chemical Equilibrium
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Problem 12.101PAE: 12.101 An engineer working on a design to extract petroleum from a deep thermal reservoir wishes to...
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Q1:A- A 0.025 mm. BCC iron foil is used to separate a high hydrogen content gas from a low hydrogen content gas at
650°C. 5 * 108 H atoms/ cm³ are in equilibrium on one side of the foil, and 2* 10³ H atoms cm³ are in equilibrium with
the other side if the diffusion of N in BCC iron is 3.64* 107 cm²/s. Determine
(a) the concentration gradient of hydrogen and
(b) the flux of hydrogen through the foil.
Transcribed Image Text:Q1:A- A 0.025 mm. BCC iron foil is used to separate a high hydrogen content gas from a low hydrogen content gas at 650°C. 5 * 108 H atoms/ cm³ are in equilibrium on one side of the foil, and 2* 10³ H atoms cm³ are in equilibrium with the other side if the diffusion of N in BCC iron is 3.64* 107 cm²/s. Determine (a) the concentration gradient of hydrogen and (b) the flux of hydrogen through the foil.
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