A student investigated the stoichiometry of the reaction of zinc (Zn) with HCI solution and reported the following data: When 0.2158 g of Zn reacted with 10.00 mL of 1.000M HCI, 82.062 g of water was displaced. A total of 36.00 mL of 9.501 x 102M NaOH solution was required to titrate the HCI remaining in the reaction mixture at the end of the reaction. The room temperature was 27.0°C and the barometric pressure was 777 torr. The gram atomic mass of Zn is 65.38 g mol1. The density of water at 27.0 °C is 0.9965 g mL and its vapor pressure is 27.0 torr. R = 8.21 X.10 2 L- atm K1 mol 1 !! Calculate the number of millimoles of HCI remaining in the flask at the end of the reaction

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Chapter4: Chemical Reactions In Solution
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A student investigated the stoichiometry of the reaction of zinc (Zn) with HCI solution
and reported the following data: When 0.2158 g of Zn reacted with 10.00 mL
of 1.000M HCI, 82.062 g of water was displaced. A total of 36.00 mL of 9.501 x 10 M
NaOH solution was required to titrate the HCl remaining in the reaction mixture at
the end of the reaction. The room temperature was 27.0°C and the barometric
pressure was 777 torr. The gram atomic mass of Zn is 65.38 g mol. The density of
water at 27.0 °C is 0.9965 g mLand its vapor pressure is 27.0 torr. R = 8.21 X.10 2 L-
atm K mol 1
Calculate the number of millimoles of HCI remaining in the flask at the end of the
reaction
Transcribed Image Text:A student investigated the stoichiometry of the reaction of zinc (Zn) with HCI solution and reported the following data: When 0.2158 g of Zn reacted with 10.00 mL of 1.000M HCI, 82.062 g of water was displaced. A total of 36.00 mL of 9.501 x 10 M NaOH solution was required to titrate the HCl remaining in the reaction mixture at the end of the reaction. The room temperature was 27.0°C and the barometric pressure was 777 torr. The gram atomic mass of Zn is 65.38 g mol. The density of water at 27.0 °C is 0.9965 g mLand its vapor pressure is 27.0 torr. R = 8.21 X.10 2 L- atm K mol 1 Calculate the number of millimoles of HCI remaining in the flask at the end of the reaction
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