The balanced chemical equation has to be derived from the expression for the equilibrium constant. Concept introduction: A system is said to be in equilibrium when all the measurable properties of the system remains unchanged with the time. Equilibrium constant is the ratio of the rate constants of the forward and reverse reactions at a given temperature. In other words it is the ratio of the concentrations of the products to concentrations of the reactants. Each concentration term is raised to a power, which is same as the coefficients in the chemical reaction . Consider the reaction where the reactant A is giving product P . A ⇌ P Rate of forward reaction = Rate of reverse reaction k f [ A ] =k r [ B ] On rearranging, [ A ] [ B ] = k f k r = K c Where, k f is the rate constant of the forward reaction. k r is the rate constant of the reverse reaction. K c is the equilibrium constant.
The balanced chemical equation has to be derived from the expression for the equilibrium constant. Concept introduction: A system is said to be in equilibrium when all the measurable properties of the system remains unchanged with the time. Equilibrium constant is the ratio of the rate constants of the forward and reverse reactions at a given temperature. In other words it is the ratio of the concentrations of the products to concentrations of the reactants. Each concentration term is raised to a power, which is same as the coefficients in the chemical reaction . Consider the reaction where the reactant A is giving product P . A ⇌ P Rate of forward reaction = Rate of reverse reaction k f [ A ] =k r [ B ] On rearranging, [ A ] [ B ] = k f k r = K c Where, k f is the rate constant of the forward reaction. k r is the rate constant of the reverse reaction. K c is the equilibrium constant.
Solution Summary: The author explains that the balanced chemical equation has to be derived from the expression for the equilibrium constant.
Definition Definition Study of the speed of chemical reactions and other factors that affect the rate of reaction. It also extends toward the mechanism involved in the reaction.
Chapter 14, Problem 14.38QP
Interpretation Introduction
Interpretation:
The balanced chemical equation has to be derived from the expression for the equilibrium constant.
Concept introduction:
A system is said to be in equilibrium when all the measurable properties of the system remains unchanged with the time. Equilibrium constant is the ratio of the rate constants of the forward and reverse reactions at a given temperature. In other words it is the ratio of the concentrations of the products to concentrations of the reactants. Each concentration term is raised to a power, which is same as the coefficients in the chemical reaction.
Consider the reaction where the reactant A is giving product P.
A⇌P
Rate of forward reaction = Rate of reverse reactionkf[A]=kr[B]
7)
8)
FCI II
-C-C-C=C-C
||
Br Br
||
-C=C-Br
-CEC-C-C-
10)
11)
F Br
i
OH
مله
12)
Br
i
13)
14)
15)
CH3CHFCHFC=CH
C(OH)Br2CHF(CH2)4CH2CH3
CH3(CH2)3CH=CH(CH2)2CH3
Name
1) 3-fluoro, 1-butene
2) 2-heptene
2,3-difluoro-
1-pentene
4) 6-iodo,4-methyl-
2-decyne
5) 4,4-dibromo-
1,2-butandiol
Complete structural formula
F
-C=C-C-C-
Line formula
Condensed structural formula
N
F
CH2=CHCHFCH3
1.
Part 1: Naming Organic Compounds
он
H₁C-C-CH3
CH3
Br
CI CI
2. Br-CH-CH-CH₂
H₂C-CH-C= -CH-CH2-CH3
3.
HC-CH-CH-C-OH
5. H₂C-CH-CH₂-OH
7.
OH
4.
CH
CH₂-CH₂
6.
сно
CH-CH-CH-CH₂-CH₂
H₁₂C-CH-CH-CH-CH₁₂-CH₁₂
8.
OH
Chapter 14 Solutions
Student Solutions Manual for Ebbing/Gammon's General Chemistry
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