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Calculate the value of the transfer number for silicon combustion in air. Show all the stoichiometric relationships in the calculation. 3. A carbon particle is large enough so that the burning rate is...

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Calculate the value of the transfer number for silicon combustion in air. Show all the stoichiometric relationships in the calculation. 3. A carbon particle is large enough so that the burning rate is diffusioncontrolled. In one case the carbon monoxide leaving the surface burns to carbon dioxide in the gas phase; in another, no further carbon monoxide combustion takes place. Is the burning rate of the particle different in the two cases? If so, which is larger? Explain.
Answered 69 days After May 25, 2022

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Aditi answered on Aug 02 2022
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