The mass of each compound in the mixture of 10.0 g of NaNO 3 and KF dissolve in 100.0 g of water that find the temperature rise by 2.22 °C should be determined. NaNO 3(s) → NaNO 3(aq) ΔH = +20 .4 kJ/mol KF (s) → KF (aq) ΔH = -17 .7 kJ/mol Concept introduction: The Gibb’s equation of thermodynamic purposed a relation between ΔS , ΔH and ΔG with temperature. With the help of this equation the change in ΔS , ΔH and ΔG can be predicted. For any reaction, the ΔH and ΔS can be calculated with the help of: ΔrS°= Σ ΔrS°product - ∑ ΔrS°reactant ΔrH°= Σ ΔrH°product - ∑ ΔrH°reactant The change in temperature for the addition of two substances at two different temperatures can be calculated with the help of calorimetric equation: Q = m × C × ΔT Here: Q = heat change m = mass C = specific heat ΔT=change in T
The mass of each compound in the mixture of 10.0 g of NaNO 3 and KF dissolve in 100.0 g of water that find the temperature rise by 2.22 °C should be determined. NaNO 3(s) → NaNO 3(aq) ΔH = +20 .4 kJ/mol KF (s) → KF (aq) ΔH = -17 .7 kJ/mol Concept introduction: The Gibb’s equation of thermodynamic purposed a relation between ΔS , ΔH and ΔG with temperature. With the help of this equation the change in ΔS , ΔH and ΔG can be predicted. For any reaction, the ΔH and ΔS can be calculated with the help of: ΔrS°= Σ ΔrS°product - ∑ ΔrS°reactant ΔrH°= Σ ΔrH°product - ∑ ΔrH°reactant The change in temperature for the addition of two substances at two different temperatures can be calculated with the help of calorimetric equation: Q = m × C × ΔT Here: Q = heat change m = mass C = specific heat ΔT=change in T
Solution Summary: The author explains how the Gibb's equation of thermodynamic purposed a relation between S,
Science that deals with the amount of energy transferred from one equilibrium state to another equilibrium state.
Chapter 9, Problem 9.148MP
Interpretation Introduction
Interpretation:
The mass of each compound in the mixture of 10.0 g of NaNO3 and KF dissolve in 100.0 g of water that find the temperature rise by 2.22 °C should be determined.
The Gibb’s equation of thermodynamic purposed a relation between ΔS, ΔH and ΔG with temperature. With the help of this equation the change in ΔS, ΔH and ΔG can be predicted. For any reaction, the ΔH and ΔS can be calculated with the help of:
6. Consider the following exothermic reaction below.
2Cu2+(aq) +41 (aq)2Cul(s) + 12(aq)
a. If Cul is added, there will be a shift left/shift right/no shift (circle one).
b. If Cu2+ is added, there will be a shift left/shift right/no shift (circle one).
c. If a solution of AgNO3 is added, there will be a shift left/shift right/no shift (circle one).
d. If the solvent hexane (C6H14) is added, there will be a shift left/shift right/no shift (circle
one). Hint: one of the reaction species is more soluble in hexane than in water.
e. If the reaction is cooled, there will be a shift left/shift right/no shift (circle one).
f. Which of the changes above will change the equilibrium constant, K?
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