Concept explainers
(a)
Interpretation:
The strong acid and strong conjugated base from
Concept Introduction:
The Bronsted-Lowry acid-base theory was purposed by Bronsted and Lowery is called Bronsted-Lowry acid-base theory. It states that acid can give
A strong acid shows complete dissociation to respective anion and
The strength of acid can be determined with the help of acid dissociation constant also. For acid HA the acid dissociation constant in its aqueous solution can be written as:
Here the equilibrium constant is called as acid dissociation constant. It is denoted as
(b)
Interpretation:
The strong acid and strong conjugated base from
Concept Introduction:
The Bronsted-Lowry acid-base theory was purposed by Bronsted and Lowery is called Bronsted-Lowry acid-base theory. It states that acid can give
A strong acid shows complete dissociation to respective anion and
The strength of acid can be determined with the help of acid dissociation constant also. For acid HA the acid dissociation constant in its aqueous solution can be written as:
Here, the equilibrium constant is called as acid dissociation constant. It is denoted as
(c)
Interpretation:
The strong acid and strong conjugated base from
Concept Introduction:
The Bronsted-Lowry acid-base theory was purposed by Bronsted and Lowery is called Bronsted-Lowry acid-base theory. It states that acid can give
A strong acid shows complete dissociation to respective anion and
The strength of acid can be determined with the help of acid dissociation constant also. For acid HA the acid dissociation constant in its aqueous solution can be written as:
Here, the equilibrium constant is called as acid dissociation constant. It is denoted as
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General, Organic, & Biological Chemistry
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- Consider 50.0 mL of a solution of weak acid HA (Ka = 1.00 106), which has a pH of 4.000. What volume of water must be added to make the pH = 5.000?arrow_forwardCalculate the ionization constant for each of the following acids or bases from the ionization constant of its conjugate base or conjugate acid: (a) HTe- (as a base]. (b) (CH3)3 NH+. (c) HAsO43- (as a base). (d) H02 _ (as a base). (e) C6H5NH3+. (f) HSO3- (as a base)arrow_forwardWhich of each pair of acids is stronger? Why? (a) HClO3, HClO4 (b) H2S, H2Searrow_forward
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