To purify hydrogen gas, it can be diffused through a 5 mm palladium sheet. Two kilograms of hydrogen can pass through this palladium sheet per hour at 580°C. Assume a diffusion coefficient of 1.65 x 108 m2/s under steady-state conditions and concentrations of 2.5 kg (on side 1) and 0.9 kg (on side 2) of hydrogen per cubic meter of palladium. Determine the area of the sheet.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Engineering
To purify hydrogen gas, it can be diffused through a 5 mm palladium sheet. Two
kilograms of hydrogen can pass through this palladium sheet per hour at 580°C.
Assume a diffusion coefficient of 1.65 x 108 m2/s under steady-state
conditions and concentrations of 2.5 kg (on side 1) and 0.9 kg (on side 2) of
hydrogen per cubic meter of palladium. Determine the area of the sheet.
252 mm2
105.2 m2
1005 mm2
105219 m2
102 mm2
2.5 m2
1.94 m2
O 50 m2
378 m2
None of the answers is correct.
Transcribed Image Text:Engineering To purify hydrogen gas, it can be diffused through a 5 mm palladium sheet. Two kilograms of hydrogen can pass through this palladium sheet per hour at 580°C. Assume a diffusion coefficient of 1.65 x 108 m2/s under steady-state conditions and concentrations of 2.5 kg (on side 1) and 0.9 kg (on side 2) of hydrogen per cubic meter of palladium. Determine the area of the sheet. 252 mm2 105.2 m2 1005 mm2 105219 m2 102 mm2 2.5 m2 1.94 m2 O 50 m2 378 m2 None of the answers is correct.
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