The pH of a 0.045- M aqueous solution of a weak base B with a K b of 4.2 × 10 − 10 has to be calculated Concept Information: Strong base and weak base: Strong base dissociates into its constituent ions fully. It produces more of hydroxide ions while dissolved in water. Weak bases partially dissociates into its constituent ions. According to Bronsted-Lowry, strong base is a good proton acceptor whereas weak base is a poor proton acceptor Since, the ionization of a weak base is incomplete, it is treated in the same way as the ionization of a weak acid. The ionization of a weak base B is given by the below equation. B (aq) +H 2 O (l) → HB + (aq) +OH - (aq) The equilibrium expression for the ionization of weak base B will be, K b = [ HB + ] [ OH - ] [ B ] Where, K b is base ionization constant, [ OH − ] is concentration of hydroxide ion [ HB + ] is concentration of conjugate acid [ B] is concentration of the base pOH definition: The pOH of a solution is defined as the negative base-10 logarithm of the hydroxide ion [OH - ] concentration. pOH scale is analogous to pH scale. pOH = -log[OH - ] Relationship between pH and pOH pOH is similar to pH . The only difference is that in pOH the concentration of hydroxide ion is used as a scale while in pH , the concentration of hydronium ion is used. The relationship between the hydronium ion concentration and the hydroxide ion concentration is given by the equation, pH + pOH = 14, at 25 o C As pOH and pH are opposite scale, the total of both has to be equal to 14. To Calculate: The pH of the given weak base B
The pH of a 0.045- M aqueous solution of a weak base B with a K b of 4.2 × 10 − 10 has to be calculated Concept Information: Strong base and weak base: Strong base dissociates into its constituent ions fully. It produces more of hydroxide ions while dissolved in water. Weak bases partially dissociates into its constituent ions. According to Bronsted-Lowry, strong base is a good proton acceptor whereas weak base is a poor proton acceptor Since, the ionization of a weak base is incomplete, it is treated in the same way as the ionization of a weak acid. The ionization of a weak base B is given by the below equation. B (aq) +H 2 O (l) → HB + (aq) +OH - (aq) The equilibrium expression for the ionization of weak base B will be, K b = [ HB + ] [ OH - ] [ B ] Where, K b is base ionization constant, [ OH − ] is concentration of hydroxide ion [ HB + ] is concentration of conjugate acid [ B] is concentration of the base pOH definition: The pOH of a solution is defined as the negative base-10 logarithm of the hydroxide ion [OH - ] concentration. pOH scale is analogous to pH scale. pOH = -log[OH - ] Relationship between pH and pOH pOH is similar to pH . The only difference is that in pOH the concentration of hydroxide ion is used as a scale while in pH , the concentration of hydronium ion is used. The relationship between the hydronium ion concentration and the hydroxide ion concentration is given by the equation, pH + pOH = 14, at 25 o C As pOH and pH are opposite scale, the total of both has to be equal to 14. To Calculate: The pH of the given weak base B
Solution Summary: The author explains how the pH of a 0.045-M reaqueous solution of weak base B is calculated. Strong base dissociates into its constituent ions fully.
The pH of a 0.045-M aqueous solution of a weak base
B with a
Kb of
4.2×10−10 has to be calculated
Concept Information:
Strong base and weak base:
Strong base dissociates into its constituent ions fully. It produces more of hydroxide ions while dissolved in water. Weak bases partially dissociates into its constituent ions.
According to Bronsted-Lowry, strong base is a good proton acceptor whereas weak base is a poor proton acceptor
Since, the ionization of a weak base is incomplete, it is treated in the same way as the ionization of a weak acid.
The ionization of a weak base
B is given by the below equation.
B(aq)+H2O(l)→HB+(aq)+OH-(aq)
The equilibrium expression for the ionization of weak base
B will be,
Kb=[HB+][OH-][B]
Where,
Kb is base ionization constant,
[OH−] is concentration of hydroxide ion
[HB+] is concentration of conjugate acid
[B] is concentration of the base
pOHdefinition:
The
pOH of a solution is defined as the negative base-10 logarithm of the hydroxide ion
[OH-] concentration.
pOH scale is analogous to pH scale.
pOH=-log[OH-]
Relationship betweenpH andpOH
pOH is similar to
pH. The only difference is that in
pOH the concentration of hydroxide ion is used as a scale while in
pH, the concentration of hydronium ion is used.
The relationship between the hydronium ion concentration and the hydroxide ion concentration is given by the equation,
pH+pOH=14,at25oC
As
pOH and
pH are opposite scale, the total of both has to be equal to 14.
1. For the following reactions, predict the major product. Show stereochemistry where appropriate.
неу
b) 7
HBr
XV
ROOR
H₂504
c) N/
H20
H+2
d) ~
Pt
c)
f.
MCPBA
->
сна сла
(solvent)
(1)BH 3-THE
(3) Надрон
B177
H20
9)
For the following reactions, predict the major product. Show stereochemistry where appro
How is
Talu home quer in Org. Chemistry
propose
a
3-butanal prepared from ketone?
complete reaction for this, (to start from the guignand
Meagent.
②what pocubble products could be produced from
the reaction of
:
CA₂ CH₂ CH₂
dil H.504
A
CH3
1 OBCH₂OH Naz Cr₂ 07
12504
NazCD
4
CH3CH2 07
AzS04
H3C H3C
CH3-C - C - Atz
но
но
+
H, CH3 07
>
⑦Colts
C614501 + (215) 504
кон
4
Chapter 16 Solutions
GEN COMBO CHEMISTRY: ATOMS FIRST; ALEKS 360 2S ACCESS CARD CHEMISTRY:ATOMS FIRST
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