Chloral hydrate (C 2 H 3 Cl 3 O 2 ) is a drug formerly used as a sedative and hypnotic. It is the compound used to make “Mickey Finns” in detective stories. a. Calculate the molar mass of chloral hydrate. b. What amount (moles) of C 2 H 3 Cl 3 O 2 molecules are in 500.0 g chloral hydrate? c. What is the mass in grams of 2.0 × 10 −2 mole of chloral hydrate? d. What number of chlorine atoms are in 5.0 g chloral hydrate? e. What mass of chloral hydrate would contain 1.0 g CI? f. What is the mass of exactly 500 molecules of chloral hydrate?
Chloral hydrate (C 2 H 3 Cl 3 O 2 ) is a drug formerly used as a sedative and hypnotic. It is the compound used to make “Mickey Finns” in detective stories. a. Calculate the molar mass of chloral hydrate. b. What amount (moles) of C 2 H 3 Cl 3 O 2 molecules are in 500.0 g chloral hydrate? c. What is the mass in grams of 2.0 × 10 −2 mole of chloral hydrate? d. What number of chlorine atoms are in 5.0 g chloral hydrate? e. What mass of chloral hydrate would contain 1.0 g CI? f. What is the mass of exactly 500 molecules of chloral hydrate?
Chloral hydrate (C2H3Cl3O2) is a drug formerly used as a sedative and hypnotic. It is the compound used to make “Mickey Finns” in detective stories.
a. Calculate the molar mass of chloral hydrate.
b. What amount (moles) of C2H3Cl3O2 molecules are in 500.0 g chloral hydrate?
c. What is the mass in grams of 2.0 × 10−2 mole of chloral hydrate?
d. What number of chlorine atoms are in 5.0 g chloral hydrate?
e. What mass of chloral hydrate would contain 1.0 g CI?
f. What is the mass of exactly 500 molecules of chloral hydrate?
(a)
Expert Solution
Interpretation Introduction
Interpretation: The answers are to be given for the given options.
Concept introduction: The atomic mass is defined as the sum of number of protons and number of neutrons.
Molar mass of a substance is defined as the mass of the substance in gram of one mole of that compound.
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.
To determine: The molar mass of chloral hydrate
(C2H3Cl3O2).
Explanation of Solution
The atomic weight of carbon
(C) is
12.01g/mol.
The atomic weight of oxygen
(O) is
16.00g/mol.
The atomic weight of hydrogen
(H) is
1.008g/mol.
The atomic weight of chlorine
(Cl) is
35.453g/mol.
In compound
C2H3Cl3O2, two carbon, two oxygen, three chlorine and three hydrogen atoms are present. Hence, molar mass of
C2H3Cl3O2 is calculated as,
Molar mass is defined as mass of
6.022×1023 atoms or molecules of that substance.
(b)
Expert Solution
Interpretation Introduction
Interpretation: The answers are to be given for the given options.
Concept introduction: The atomic mass is defined as the sum of number of protons and number of neutrons.
Molar mass of a substance is defined as the mass of the substance in gram of one mole of that compound.
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.
To determine: The number of moles in
500.00g of
C2H3Cl3O2.
Explanation of Solution
Given
The mass of
C2H3Cl3O2 is
500.00g.
The molar mass of
C2H3Cl3O2 is
165.403g/mol
Formula
The number of moles in
C2H3Cl3O2 is calculated as,
The number of moles in
500.00g of
C2H3Cl3O2 is
3.0229mol_.
Conclusion
Number of moles is calculated by dividing the given mass with the molar mass of that compound.
(c)
Expert Solution
Interpretation Introduction
Interpretation: The answers are to be given for the given options.
Concept introduction: The atomic mass is defined as the sum of number of protons and number of neutrons.
Molar mass of a substance is defined as the mass of the substance in gram of one mole of that compound.
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.
Mass of molecule is calculated by multiplying the number of moles and molar mass of that molecule.
(d)
Expert Solution
Interpretation Introduction
Interpretation: The answers are to be given for the given options.
Concept introduction: The atomic mass is defined as the sum of number of protons and number of neutrons.
Molar mass of a substance is defined as the mass of the substance in gram of one mole of that compound.
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.
To determine: The number of chlorine
(Cl) atoms in
5.00g of
C2H3Cl3O2.
Explanation of Solution
Given
The mass of
C2H3Cl3O2 is
5.00g.
The molar mass of
C2H3Cl3O2 is
165.403g/mol.
Formula
The number of moles of
C2H3Cl3O2 is calculated as,
The number of chlorine
(Cl) atoms in
5.00g of
C2H3Cl3O2 is
5.46×1022atoms_.
Conclusion
The number of atoms is calculated by multiplying the number of moles with Avogadro’s number.
(e)
Expert Solution
Interpretation Introduction
Interpretation: The answers are to be given for the given options.
Concept introduction: The atomic mass is defined as the sum of number of protons and number of neutrons.
Molar mass of a substance is defined as the mass of the substance in gram of one mole of that compound.
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.
To determine: The mass of
C2H3Cl3O2. in
1.00g of
Cl.
Explanation of Solution
Given
The mass of
Cl is
1.00g.
The atomic mass of
Cl is
35.453g/mol
The molar mass of
C2H3Cl3O2 is
165.403g/mol.
Formula
The moles of
Cl is calculated as,
MolesofCl=MassofClAtomicmassofCl
Substitute the values of mass and atomic mass of
C2H3Cl3O2 in above equation.
Mass of molecule is calculated by multiplying the number of moles and molar mass of that molecule.
(f)
Expert Solution
Interpretation Introduction
Interpretation: The answers are to be given for the given options.
Concept introduction: The atomic mass is defined as the sum of number of protons and number of neutrons.
Molar mass of a substance is defined as the mass of the substance in gram of one mole of that compound.
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.
To determine: The mass of exactly
500molecules of
C2H3Cl3O2.
Explanation of Solution
Given
The total molecules in
C2H3Cl3O2 is
500molecules.
The molar mass of
C2H3Cl3O2 is
165.403g/mol.
Since one mole of atoms always contains
6.022×1023 molecules. Therefore, number of moles in
500molecules is,
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