(s) (i) Define molar mass of a substance. (ii) State the method used to determine the molar mass of a volatile liquid. (ii) 2.15g ofa volatile liquid produced 84.3cm' of gas at 37°Cand 0.97 atm. calculate the molar mass of the liquia. .............. .....

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter12: Chemical Equilibrium
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(a)
(i)
Define molar mass of a substance.
(ii)
State the method used to determine the molar mass of a volatile liquid.
2.15g ofa volatile liquid produced 84.3cm' of gas at 37°C and 0.97 atm. calculate the molar
mass of the liquia.
(iii)
(b)
(i)
State the equilibrium law.
TAG
(ii)
How will an increase in temperature affect the position of equilibrium of the reaction?
N2O(g) = 2NO2(g)
AH®=+54 kJ molľ
Calculate the pH of an equivolume mixture of a 0.04 moldm® solution of CH3COOH and 0,3 moldm
solution of CH3COONA (Ka = 2.0 x 10° moldm)
(c)
%3D
Transcribed Image Text:(a) (i) Define molar mass of a substance. (ii) State the method used to determine the molar mass of a volatile liquid. 2.15g ofa volatile liquid produced 84.3cm' of gas at 37°C and 0.97 atm. calculate the molar mass of the liquia. (iii) (b) (i) State the equilibrium law. TAG (ii) How will an increase in temperature affect the position of equilibrium of the reaction? N2O(g) = 2NO2(g) AH®=+54 kJ molľ Calculate the pH of an equivolume mixture of a 0.04 moldm® solution of CH3COOH and 0,3 moldm solution of CH3COONA (Ka = 2.0 x 10° moldm) (c) %3D
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