EBK FOUNDATIONS OF COLLEGE CHEMISTRY
EBK FOUNDATIONS OF COLLEGE CHEMISTRY
15th Edition
ISBN: 9781119227946
Author: Willard
Publisher: VST
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Chapter 15.1, Problem 15.1P

(a)

Interpretation Introduction

Interpretation:

The formula for the conjugate base of H2CO3 has to be written.

Concept Introduction:

Bronsted-Lowry acid outlined the definition of acids that donate H+ or a proton while bases that accept H+ or a proton. The acidic strength is known from the ability of acid to donate H+ in an aqueous solution. Explicitly the acidity strength is quantified by the magnitude of a parameter called acid ionization constant. The strong acids tend to possess higher magnitudes of acid ionization constant or Ka.

In accordance with Bronsted definition, the most usual type of acid-base reaction involves lone pair of base that reaches out for an acidic proton. Once deprotonation has occurred species assumes a negative charge and is referred to as the conjugate base of acid and other species with a positive charge as a result of proton acceptance is termed conjugate acid of given base. For example;

EBK FOUNDATIONS OF COLLEGE CHEMISTRY, Chapter 15.1, Problem 15.1P

The strength of conjugate acid-base pairs is inversely related to each other; thus strong acid has a weak and strong base has weak conjugate counterparts and vice-versa.

(b)

Interpretation Introduction

Interpretation:

Formula for conjugate base of HNO2 has to be written.

Concept Introduction:

Refer to part (a).

(c)

Interpretation Introduction

Interpretation:

Formula for conjugate base of HC2H3O2 has to be written.

Concept Introduction:

Refer to part (a).

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Potential Energy (kJ) 1. Consider these three reactions as the elementary steps in the mechanism for a chemical reaction. AH = -950 kJ AH = 575 kJ (i) Cl₂ (g) + Pt (s) 2C1 (g) + Pt (s) Ea = 1550 kJ (ii) Cl (g)+ CO (g) + Pt (s) → CICO (g) + Pt (s) (iii) Cl (g) + CICO (g) → Cl₂CO (g) Ea = 2240 kJ Ea = 2350 kJ AH = -825 kJ 2600 2400 2200 2000 1800 1600 1400 1200 1000 a. Draw the potential energy diagram for the reaction. Label the data points for clarity. The potential energy of the reactants is 600 kJ 800 600 400 200 0 -200- -400 -600- -800- Reaction Progress
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Chapter 15 Solutions

EBK FOUNDATIONS OF COLLEGE CHEMISTRY

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