Effervescent tablets contain both citric acid (C6H8O7) and sodium bicarbonate (NaHCO3) and release carbon dioxide gas when dissolved in water as well as forming trisodium citrate (Na3C6H5O7) and water. A typical effervescent tablet contains 1.00 g of citric acid and 1.92 g sodium bicarbonate. (a) Assuming that carbon dioxide acts as an ideal gas, determine the work done due to the evolution of carbon dioxide by the dissolution of one effervescent tablet in water at 25.0 °C and atmospheric pressure (1 atm i.e. 101325 Pa).

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Effervescent tablets contain both citric acid (C6H8O7) and sodium bicarbonate
(NaHCO3) and release carbon dioxide gas when dissolved in water as well as
forming trisodium citrate (Na3C6H5O7) and water. A typical effervescent tablet
contains 1.00 g of citric acid and 1.92 g sodium bicarbonate.
(a) Assuming that carbon dioxide acts as an ideal gas, determine the work
done due to the evolution of carbon dioxide by the dissolution of one
effervescent tablet in water at 25.0 °C and atmospheric pressure (1 atm
i.e. 101325 Pa).
Transcribed Image Text:Effervescent tablets contain both citric acid (C6H8O7) and sodium bicarbonate (NaHCO3) and release carbon dioxide gas when dissolved in water as well as forming trisodium citrate (Na3C6H5O7) and water. A typical effervescent tablet contains 1.00 g of citric acid and 1.92 g sodium bicarbonate. (a) Assuming that carbon dioxide acts as an ideal gas, determine the work done due to the evolution of carbon dioxide by the dissolution of one effervescent tablet in water at 25.0 °C and atmospheric pressure (1 atm i.e. 101325 Pa).
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