Bauxite, the principal ore used in the production of aluminum, has a molecular formula of Al 2 O 3 · 2H 2 O. The ·H 2 O in the formula are called waters of hydration. Each formula unit of the compound contains two water molecules. a. What is the molar mass of bauxite? b. What is the mass of aluminum in 0.58 mole of bauxite? c. How many atoms of aluminum are in 0.58 mole of bauxite? d. What is the mass of 2.1 × 10 24 formula units of bauxite?
Bauxite, the principal ore used in the production of aluminum, has a molecular formula of Al 2 O 3 · 2H 2 O. The ·H 2 O in the formula are called waters of hydration. Each formula unit of the compound contains two water molecules. a. What is the molar mass of bauxite? b. What is the mass of aluminum in 0.58 mole of bauxite? c. How many atoms of aluminum are in 0.58 mole of bauxite? d. What is the mass of 2.1 × 10 24 formula units of bauxite?
Bauxite, the principal ore used in the production of aluminum, has a molecular formula of Al2O3 · 2H2O. The ·H2O in the formula are called waters of hydration. Each formula unit of the compound contains two water molecules.
a. What is the molar mass of bauxite?
b. What is the mass of aluminum in 0.58 mole of bauxite?
c. How many atoms of aluminum are in 0.58 mole of bauxite?
d. What is the mass of 2.1 × 1024 formula units of bauxite?
(a)
Expert Solution
Interpretation Introduction
Interpretation:
The molar mass of bauxite, mass and number of aluminum atoms has to be determined. Also, the mass of given formula units of Bauxite has to be determined.
Concept introduction:
Molar mass:
Molar mass of a substance is defined as the mass of the substance in grams of one mole of that substance.
The molar mass of any compound can be calculated by adding of atomic weight of individual atoms present in it.
The amount of substance containing
12g of pure carbon is called a mole. One mole of atoms always contains
6.022×1023 molecules. The number of molecules in one mole is also called Avogadro’s number.
Answer to Problem 64E
The molar mass of bauxite is
137.992g/mol._
Explanation of Solution
The molar mass of Bauxite
(Al2O3.2H2O)
The atomic weight of Aluminum
(Al) is
26.98g/mol.
The atomic weight of Oxygen
(O) is
16.00g/mol.
The atomic weight of Hydrogen
(H) is
1.008g/mol.
Calculate the molar mass of Bauxite
In Bauxite
(Al2O3.2H2O), two Aluminum, five Oxygen and four Hydrogen atoms are present.
The molar mass of bauxite, mass and number of aluminum atoms has to be determined. Also, the mass of given formula units of Bauxite has to be determined.
Concept introduction:
Molar mass:
Molar mass of a substance is defined as the mass of the substance in grams of one mole of that substance.
The molar mass of any compound can be calculated by adding of atomic weight of individual atoms present in it.
The amount of substance containing
12g of pure carbon is called a mole. One mole of atoms always contains
6.022×1023 molecules. The number of molecules in one mole is also called Avogadro’s number.
Answer to Problem 64E
The mass of aluminum is
31.3g._
Explanation of Solution
The mass of Aluminum
(Al) in
0.58mol of Bauxite.
The moles of Bauxite is
0.58mol.
Since, one mole of
Al2O3.2H2O is equal to two moles of Aluminum, Therefore,
0.58mol of
Al2O3.2H2O is equal to,
2×0.58mol = 1.16mol of Aluminum
(Al)
The atomic mass of Aluminum
(Al) is
26.98g/mol.
Calculate the mass of aluminum
The mass of Aluminum
(Al) in
Al2O3.2H2O is calculated as,
The molar mass of bauxite, mass and number of aluminum atoms has to be determined. Also, the mass of given formula units of Bauxite has to be determined.
Concept introduction:
Molar mass:
Molar mass of a substance is defined as the mass of the substance in grams of one mole of that substance.
The molar mass of any compound can be calculated by adding of atomic weight of individual atoms present in it.
The amount of substance containing
12g of pure carbon is called a mole. One mole of atoms always contains
6.022×1023 molecules. The number of molecules in one mole is also called Avogadro’s number.
Answer to Problem 64E
The number of aluminum atoms is
6.986×1023atoms._
Explanation of Solution
The number of Aluminum
(Al) atoms in
0.58mol of Bauxite.
0.58mol of
Al2O3.2H2O is equal to
1.16mol of Aluminum
(Al).
The atomic weight of Aluminum
(Al) is
26.98g/mol.
Calculate the number of Aluminum atoms in
Al2O3.2H2O
The molar mass of bauxite, mass and number of aluminum atoms has to be determined. Also, the mass of given formula units of Bauxite has to be determined.
Concept introduction:
Molar mass:
Molar mass of a substance is defined as the mass of the substance in grams of one mole of that substance.
The molar mass of any compound can be calculated by adding of atomic weight of individual atoms present in it.
The amount of substance containing
12g of pure carbon is called a mole. One mole of atoms always contains
6.022×1023 molecules. The number of molecules in one mole is also called Avogadro’s number.
Answer to Problem 64E
The mass of bauxite in
2.1×1024 formula unit is
481.2g._
Explanation of Solution
The mass of
2.1×1024 formula units of Bauxite.
The formula units of Bauxite is
2.1×1024.
The molar mass of Bauxite is
137.99g.
Calculate the mass of Bauxite in
2.1×1024 formula units,
5. A solution of sucrose is fermented in a vessel until the evolution of CO2 ceases. Then, the
product solution is analyzed and found to contain, 45% ethanol; 5% acetic acid; and 15%
glycerin by weight.
If the original charge is 500 kg, evaluate;
e. The ratio of sucrose to water in the original charge (wt/wt).
f. Moles of CO2 evolved.
g. Maximum possible amount of ethanol that could be formed.
h. Conversion efficiency.
i. Per cent excess of excess reactant.
Reactions:
Inversion reaction: C12H22O11 + H2O →2C6H12O6
Fermentation reaction: C6H12O6 →→2C2H5OH + 2CO2
Formation of acetic acid and glycerin: C6H12O6 + C2H5OH + H₂O→ CH3COOH + 2C3H8O3
Show work. don't give Ai generated solution. How many carbons and hydrogens are in the structure?
13. (11pts total) Consider the arrows pointing at three different carbon-carbon bonds in the
molecule depicted below.
Bond B
2°C. +2°C. cleavage
Bond A
•CH3 + 26.← Cleavage
2°C. +
Bond C
+3°C•
CH3 2C
Cleavage
E
2°C. 26.
weakest bond
Intact molecule
Strongest 3°C 20.
Gund
Largest
argest
a. (2pts) Which bond between A-C is weakest? Which is strongest? Place answers in
appropriate boxes.
C
Weakest
bond
A
Produces
Most
Bond
Strongest
Bond
Strongest Gund
produces least stable
radicals
Weakest
Stable radical
b. (4pts) Consider the relative stability of all cleavage products that form when bonds A,
B, AND C are homolytically cleaved/broken. Hint: cleavage products of bonds A, B,
and C are all carbon radicals.
i. Which ONE cleavage product is the most stable? A condensed or bond line
representation is fine.
13°C. formed in
bound C
cleavage
ii. Which ONE cleavage product is the least stable? A condensed or bond line
representation is fine.
• CH3
methyl radical
Formed in Gund A Cleavage
c.…
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