The mass percentage of Mg in a magnesium-aluminium alloy that has a mass of 0.263 g is to be determined. 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 compound mass of mixture )
The mass percentage of Mg in a magnesium-aluminium alloy that has a mass of 0.263 g is to be determined. 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 compound mass of mixture )
The mass percentage of Mg in a magnesium-aluminium alloy that has a mass of 0.263 g is to be determined.
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)
(b)
Interpretation Introduction
Interpretation:
The mass percentage of Mg in a magnesium-aluminium alloy that reacts with excess aqueous HCl and forms 1.38×10−2molH2 is to be determined.
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.
(c)
Interpretation Introduction
Interpretation:
The mass percentage of Mg in a magnesium-aluminium alloy that reacts with excess O2 and forms 0.483g of oxide is to be determined.
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.
How is the resonance structure formed to make the following reaction product. Please hand draw the arrows showing how the electrons move to the correct position. Do not use an AI answer. Please draw it yourself or don't bother.
Part II Calculate λ max of the following compounds using wood ward- Fiecer rules
a)
b)
c)
d)
e)
OH
OH
dissolved in dioxane
Br
Br
dissolved in methanol.
NH₂
OCH 3
OH
6. Match each of the lettered items in the column on
the left with the most appropriate numbered
item(s) in the column on the right. Some of the
numbered items may be used more than once
and some not at all.
a.
Z = 37
1.
b.
Mn
2.
C.
Pr
element in period 5 and group
14
element in period 5 and group
15
d. S
e. [Rn] 7s¹
f.
d block
metal
3. highest metallic character of all
the elements
4. paramagnetic with 5 unpaired
electrons
5. 4f36s2
6. isoelectronic with Ca²+ cation
7.
an alkaline metal
8. an f-block element
Chapter 4 Solutions
Chemistry: The Molecular Nature of Matter and Change
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