a continuacion se muestra una tabla en la cual se indica la variacion de creximiento de una muestra de crsitales de una determinada sal quimica
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Repeat Problem 13.26 for a certain Utah coal that contains, according to the coal analysis, $68.2 \% \mathrm{C}$, $4.8 \% \mathrm{H},$ and $15.7 \% \mathrm{O}$ on a mass basis. The exiting product gas contains $30.9 \% \mathrm{CO}, 26.7 \% \mathrm{H}_{2}$, $15.9 \% \mathrm{CO}_{2},$ and $25.7 \% \mathrm{H}_{2} \mathrm{O}$ on a mole basis.
Repeat Problem 14.26 for a certain Utah coal that contains, according to the coal analysis, $68.2 \% \mathrm{C}$, $4.8 \% \mathrm{H},$ and $15.7 \% \mathrm{O}$ on a mass basis. The exiting product gas contains $30.9 \% \mathrm{CO}, 26.7 \% \mathrm{H}_{2}$ $15.9 \% \mathrm{CO}_{2},$ and $25.7 \% \mathrm{H}_{2} \mathrm{O}$ on a mole basis.
Gasification of char (primarily carbon) with steam following coal pyrolysis yields a gas mixture of 1 kmol $\mathrm{CO}$ and $1 \mathrm{kmol} \mathrm{H}_{2}$. We wish to upgrade the hydrogen content of this syngas fuel mixture, so it is fed to an appropriate catalytic reactor along with $1 \mathrm{kmol}$ of $\mathrm{H}_{2} \mathrm{O}$. Exiting the reactor is a chemical equilibrium gas mixture of $\mathrm{CO}, \mathrm{H}_{2}, \mathrm{H}_{2} \mathrm{O},$ and $\mathrm{CO}_{2}$ at $600 \mathrm{K}, 500 \mathrm{kPa}$. Determine the equilibrium composition. Note: See Example 15.4
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