2. An experiment was carried out to determine the enthalpy change of combustion of propan-1-ol. The experimental set-up was shown below. a beaker water (500.0 cm³) propan-1-ol (a) Write the equation for the complete combustion of propan-1-ol (C3H¬OH). (b) Give a suggestion to the above set-up so as to minimize heat loss to the surroundings. (c) Burning 2.88 g of propan-1-ol caused the temperature of 500.0 cm³ of water to rise by 46.0°C. Calculate the enthalpy change of combustion of propan-1-ol. (Assume that the specific heat capacity and the density of water are 4.2 J g' K-' and 1.0 g cm-³ respectively.) (Molar mass of propan-1-ol: 60 g)

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Chapter6: Thermochemistry
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Problem 68E: In a coffee-cup calorimeter, 1.60 g NH4NO3 is mixed with 75.0 g water at an initial temperature of...
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2. An experiment was carried out to determine the enthalpy change of combustion of propan-1-ol. The experimental
set-up was shown below.
a beaker
water (500.0 cm³)
propan-1-ol
(a) Write the equation for the complete combustion of propan-1-ol (C;H¬OH).
(b) Give a suggestion to the above set-up so as to minimize heat loss to the surroundings.
(c) Burning 2.88 g of propan-1-ol caused the temperature of 500.0 cm³ of water to rise by 46.0°C.
Calculate the enthalpy change of combustion of propan-1-ol.
(Assume that the specific heat capacity and the density of water are 4.2 J g- K-l and 1.0 g cm-
respectively.) (Molar mass of propan-1-ol: 60 g)
-3
(d)
The enthalpy change obtained in (c) cannot be called as 'standard enthalpy change'. Explain why.
Transcribed Image Text:2. An experiment was carried out to determine the enthalpy change of combustion of propan-1-ol. The experimental set-up was shown below. a beaker water (500.0 cm³) propan-1-ol (a) Write the equation for the complete combustion of propan-1-ol (C;H¬OH). (b) Give a suggestion to the above set-up so as to minimize heat loss to the surroundings. (c) Burning 2.88 g of propan-1-ol caused the temperature of 500.0 cm³ of water to rise by 46.0°C. Calculate the enthalpy change of combustion of propan-1-ol. (Assume that the specific heat capacity and the density of water are 4.2 J g- K-l and 1.0 g cm- respectively.) (Molar mass of propan-1-ol: 60 g) -3 (d) The enthalpy change obtained in (c) cannot be called as 'standard enthalpy change'. Explain why.
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