Each of the given base is to be classified as a strong or weak base. Concept Introduction: Acids and bases can each be categorized as strong or weak, depending on how much they ionize or dissociate in their aqueous solution. The strong bases ionize completely in aqueous solution, thus, they are called strong electrolyte and their ionization are shown by a single arrow pointing to the right in the reaction equation. The ionization of weak bases does not occur completely, thus, they are called weak electrolyte and their ionization are shown by two opposing arrows pointing to the right as well as left in the reaction equation.
Each of the given base is to be classified as a strong or weak base. Concept Introduction: Acids and bases can each be categorized as strong or weak, depending on how much they ionize or dissociate in their aqueous solution. The strong bases ionize completely in aqueous solution, thus, they are called strong electrolyte and their ionization are shown by a single arrow pointing to the right in the reaction equation. The ionization of weak bases does not occur completely, thus, they are called weak electrolyte and their ionization are shown by two opposing arrows pointing to the right as well as left in the reaction equation.
Solution Summary: The author explains that acids and bases can be classified as strong or weak, depending on how much they ionize or dissociate in their aqueous solution.
Each of the given base is to be classified as a strong or weak base.
Concept Introduction:
Acids and bases can each be categorized as strong or weak, depending on how much they ionize or dissociate in their aqueous solution.
The strong bases ionize completely in aqueous solution, thus, they are called strong electrolyte and their ionization are shown by a single arrow pointing to the right in the reaction equation.
The ionization of weak bases does not occur completely, thus, they are called weak electrolyte and their ionization are shown by two opposing arrows pointing to the right as well as left in the reaction equation.
The table includes macrostates characterized by 4 energy levels (&) that are
equally spaced but with different degrees of occupation.
a) Calculate the energy of all the macrostates (in joules). See if they all have
the same energy and number of particles.
b) Calculate the macrostate that is most likely to exist. For this macrostate,
show that the population of the levels is consistent with the Boltzmann
distribution.
macrostate 1 macrostate 2 macrostate 3
ε/k (K) Populations
Populations
Populations
300
5
3
4
200
7
9
8
100
15
17
16
0
33
31
32
DATO: k = 1,38×10-23 J K-1
Don't used Ai solution
In an experiment, the viscosity of water was measured at different
temperatures and the table was constructed from the data obtained.
a) Calculate the activation energy of viscous flow (kJ/mol).
b) Calculate the viscosity at 30°C.
T/°C
0
20
40
60
80
η/cpoise 1,972 1,005 0,656 0,469 0,356
Chapter 14 Solutions
Modified Mastering Chemistry with Pearson eText -- Standalone Access Card -- for Introductory Chemistry (6th Edition)
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