The moles of iodate form per mole of thyroxine are to be calculated. Concept introduction: Stoichiometry of a reaction is utilized to determine the amount of any species in the reaction by the relationship between the reactants and products. Consider the general reaction, A + 2 B → 3 C One mole of A reacts with two moles of B to produce three moles of C . The stoichiometric ratio between A and B is 1:2, the stoichiometric ratio between A and C is 1:3 and the stoichiometric ratio between B and C is 2:3.
The moles of iodate form per mole of thyroxine are to be calculated. Concept introduction: Stoichiometry of a reaction is utilized to determine the amount of any species in the reaction by the relationship between the reactants and products. Consider the general reaction, A + 2 B → 3 C One mole of A reacts with two moles of B to produce three moles of C . The stoichiometric ratio between A and B is 1:2, the stoichiometric ratio between A and C is 1:3 and the stoichiometric ratio between B and C is 2:3.
Definition Definition Chemical reactions involving both oxidation and reduction processes. During a redox reaction, electron transfer takes place in such a way that one chemical compound gets reduced and the other gets oxidized.
Chapter 4, Problem 4.144P
(a)
Interpretation Introduction
Interpretation:
The moles of iodate form per mole of thyroxine are to be calculated.
Concept introduction:
Stoichiometry of a reaction is utilized to determine the amount of any species in the reaction by the relationship between the reactants and products.
Consider the general reaction,
A+2B→3C
One mole of A reacts with two moles of B to produce three moles of C. The stoichiometric ratio between A and B is 1:2, the stoichiometric ratio between A and C is 1:3 and the stoichiometric ratio between B and C is 2:3.
(b)
Interpretation Introduction
Interpretation:
The oxidizing and reducing agents in the reaction are to be identified. Also, the number of moles of iodine produced per mole of thyroxine is to be calculated.
Concept introduction:
A redox reaction is a type of reaction that involves the change in oxidation number of a molecule, atom or ion changes due to the transfer of an electron from one species to another.
An oxidizing agent is a substance that oxidizes another species and itself gets reduced in a chemical reaction. A reducing agent is the one that reduces another species and itself gets oxidized in a chemical reaction.
(c)
Interpretation Introduction
Interpretation:
The mass percent of thyroxine in the thyroid extract is to be calculated.
Concept introduction:
Mass percent is employed to determine the concentration of one compound in a mixture of the compound. The formula to calculate mass percent is as follows:
Mass percent of compound=(mass of the compoundmass of mixture)100
The expression to calculate the amount of compound in moles when molarity of solution and volume of solution is given is as follows:
Moles of solute=(volume of solution)(molarity of solution) (3)
Question 2
show work. don't
Compound
give Ai generated
solution
So (J K-1 mol-1)
A
26
B
54
C
39
D
49
At 298 K, AG° is 375 kJ for the reaction
1A + 1B → 4C + 2D
Calculate AH° for this reaction in kJ.
1. Provide a complete IUPAC name for each of the following compounds.
a)
b)
c)
OH
OH
OH
a)
b)
c)
2. Provide a complete IUPAC name for each of the following compounds.
a)
b)
a)
OH
b)
он
c)
OB
>=
c)
3. Provide a common name for each of the following alcohols.
a)
a)
OH
b)
OH
c)
HO
b)
c)
4. Provide a common name for each of the following compounds.
b)
OH
a)
5
a)
Y
OH
c)
OH
Chapter 4 Solutions
Chemistry: The Molecular Nature of Matter and Change
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