Use the References to access important values if needed for this question. Aluminum reacts with aqueous sodium hydroxide to produce hydrogen gas according to the following equation: 2Al(s) + 2NaOH(aq) + 6H₂O()→ 2NaAl(OH), (aq) + 3H₂(g) The product gas, H₂, is collected over water at a temperature of 20 °C and a pressure of 752,0 mm Hg. If the wet H₂ gas formed occupies a volume of 9.83 L, the number of grams of Hy formed is 9. The vapor pressure of water is 17.5 mm Hg at 20 °C. Submit Answer Ray En Grup mare group attempts remaining

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Aluminum reacts with aqueous sodium hydroxide to produce hydrogen gas according to the following equation:
2Al(s) + 2NaOH(aq) + 6H₂O()→ 2NaAl(OH), (ag) + 3H₂(g)
The product gas, H₂, is collected over water at a temperature of 20 °C and a pressure of 752,0 mm Hg. If the wet H₂ gas formed occupies a
volume of 9.83 L, the number of grams of H₂ formed is 9. The vapor pressure of water is 17.5 mm Hg at 20 °C.
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Transcribed Image Text:Use the References to access important values if needed for this question. Aluminum reacts with aqueous sodium hydroxide to produce hydrogen gas according to the following equation: 2Al(s) + 2NaOH(aq) + 6H₂O()→ 2NaAl(OH), (ag) + 3H₂(g) The product gas, H₂, is collected over water at a temperature of 20 °C and a pressure of 752,0 mm Hg. If the wet H₂ gas formed occupies a volume of 9.83 L, the number of grams of H₂ formed is 9. The vapor pressure of water is 17.5 mm Hg at 20 °C. Submit Answer Ratry Entre Grup mare group attempts remaining
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