The pH of the solution that contains the salt C 2 H 5 NH 3 I is to be determined. Concept introduction: Salt is a strong electrolyte that dissociates completely when added to water. When a salt contains a cation that comes from a weak acid, the cation recombines with water to produce a weak base and hydronium ions, and forms an acidic solution. The anion that comes from a strong acid does not recombine and is present in the solution as a free ion without having any effect on the pH of the solution. The reaction of the salt which takes place is: BH + ( a q ) + H 2 O ( l ) ⇌ B ( a q ) + H 3 O + ( a q ) Here, BH + comes from the weak base B and A − comes from strong acid HA . The pH of this solution is determined by the [ H 3 O + ] . The relationship between K b , K a , and K w gives the quantitative basis of the reciprocal relationship between the strength of an acid and its conjugate base or vice-versa. K a × K b = K w …… (1) K a is the measure of dissociation of an acid and is known as acid-ionization constant, which is specific at a particular temperature. K a = [ H 3 O + ] [ B ] [ BH + ] …… (2) The formula to calculate pH is: pH = − log [ H 3 O + ] …… (3)
The pH of the solution that contains the salt C 2 H 5 NH 3 I is to be determined. Concept introduction: Salt is a strong electrolyte that dissociates completely when added to water. When a salt contains a cation that comes from a weak acid, the cation recombines with water to produce a weak base and hydronium ions, and forms an acidic solution. The anion that comes from a strong acid does not recombine and is present in the solution as a free ion without having any effect on the pH of the solution. The reaction of the salt which takes place is: BH + ( a q ) + H 2 O ( l ) ⇌ B ( a q ) + H 3 O + ( a q ) Here, BH + comes from the weak base B and A − comes from strong acid HA . The pH of this solution is determined by the [ H 3 O + ] . The relationship between K b , K a , and K w gives the quantitative basis of the reciprocal relationship between the strength of an acid and its conjugate base or vice-versa. K a × K b = K w …… (1) K a is the measure of dissociation of an acid and is known as acid-ionization constant, which is specific at a particular temperature. K a = [ H 3 O + ] [ B ] [ BH + ] …… (2) The formula to calculate pH is: pH = − log [ H 3 O + ] …… (3)
Solution Summary: The author explains that salt is a strong electrolyte that dissociates completely when added to water. The pH of the solution is determined by the relationship between K_b,
The pH of the solution that contains the salt C2H5NH3I is to be determined.
Concept introduction:
Salt is a strong electrolyte that dissociates completely when added to water.
When a salt contains a cation that comes from a weak acid, the cation recombines with water to produce a weak base and hydronium ions, and forms an acidic solution. The anion that comes from a strong acid does not recombine and is present in the solution as a free ion without having any effect on the pH of the solution.
The reaction of the salt which takes place is:
BH+(aq)+H2O(l)⇌B(aq)+H3O+(aq)
Here, BH+ comes from the weak base B and A− comes from strong acid HA. The pH of this solution is determined by the [H3O+].
The relationship between Kb, Ka, and Kw gives the quantitative basis of the reciprocal relationship between the strength of an acid and its conjugate base or vice-versa.
Ka×Kb=Kw …… (1)
Ka is the measure of dissociation of an acid and is known as acid-ionization constant, which is specific at a particular temperature.
Don't used hand raiting and don't used Ai solution
Don't used hand raiting and don't used Ai solution
2.
200
LOD
For an unknown compound with a molecular ion of 101 m/z:
a.
Use the molecular ion to propose at least two molecular formulas. (show your work)
b.
What is the DU for each of your possible formulas? (show your work)
C.
Solve the structure and assign each of the following spectra.
8
6
4
2
(ppm)
150
100
50
ō (ppm)
4000
3000
2000
1500
1000
500
HAVENUMBERI-11
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