Molecule and Molecular Mass - UNSOLVED PRACTICE SET
Chapter: Atoms and Molecules | Topic: Molecule and Molecular Mass
MOLECULE AND MOLECULAR MASS - UNSOLVED PRACTICE SET
Topic: Molecule and Molecular Mass
Multiple Choice Questions
Q1. A molecule is defined as:
- The smallest particle of an element or compound that can exist independently
- The smallest particle of an element
- A group of atoms that cannot exist independently
- A charged particle formed by loss or gain of electrons
Q2. The molecular mass of water (HβO) is:
- 16 u
- 17 u
- 18 u
- 20 u
Q3. Which of the following is a diatomic molecule?
- Neon
- Argon
- Nitrogen
- Helium
Q4. The molecular mass of a substance is equal to:
- The sum of atomic masses of all atoms in one molecule
- The mass of one mole of the substance
- The atomic mass of the heaviest element in the molecule
- The number of atoms in one molecule
Q5. Which of the following is NOT a molecule?
- Oβ
- HβO
- Na
- COβ
Q6. The molecular mass of sulphuric acid (HβSOβ) is:
- 96 u
- 97 u
- 98 u
- 100 u
Short Answer Questions
Q7. Define a molecule. Differentiate between a molecule of an element and a molecule of a compound with one example of each.
Q8. Calculate the molecular mass of the following: (i) NHβ, (ii) COβ, (iii) HβSOβ, (iv) CaCOβ.
(Atomic masses: N = 14, H = 1, C = 12, O = 16, S = 32, Ca = 40)
Q9. Your friend says that Oβ and Oβ are both molecules of oxygen. Is he correct? Explain the difference between Oβ and Oβ, and identify what Oβ is called.
Q10. What is a polyatomic ion? Give two examples. How is the molecular mass of a compound containing polyatomic ions calculated?
Q11. Calculate the molecular mass of glucose (CβHββOβ). How many atoms of each element are present in one molecule of glucose?
Q12. Why do elements like helium, neon, and argon exist as monoatomic molecules while oxygen, nitrogen, and hydrogen exist as diatomic molecules?
Long Answer Questions
Q13. Define a molecule and explain the different types of molecules β monoatomic, diatomic, and polyatomic. Give two examples of each type. Calculate the molecular mass of nitrogen gas (Nβ), water (HβO), and calcium carbonate (CaCOβ), showing all steps clearly.
Q14. A student is confused about the difference between atomic mass and molecular mass. Help the student by:
(a) Defining both terms clearly.
(b) Explaining how molecular mass is calculated from atomic masses.
(c) Calculating the molecular mass of ammonium sulphate ((NHβ)βSOβ).
(d) Explaining why molecular mass is important in stoichiometric calculations.
Q15. "Understanding molecules and their masses is essential in fields ranging from medicine to environmental science." Discuss this statement by giving three examples: (i) how molecular mass helps determine the dosage of medicines, (ii) how it is used to calculate the amount of pollutants in air, and (iii) how it helps in understanding nutrition labels on food packets.
Numerical / Application-Based Problems
Q16. The molecular masses of several compounds are to be calculated for a chemistry project:
(a) Calculate the molecular mass of ethanol (CβHβ OH).
(b) Calculate the molecular mass of baking soda (NaHCOβ).
(c) Calculate the molecular mass of washing soda (NaβCOβΒ·10HβO).
(d) A medicine contains 500 mg of paracetamol (CβHβNOβ) per tablet. Calculate the molecular mass of paracetamol and express the mass of one tablet in atomic mass units.
(Atomic masses: C = 12, H = 1, O = 16, N = 14, Na = 23, S = 32)
Q17. In a school laboratory, students are given four unknown compounds and asked to determine their molecular masses:
Compound X: Contains 2 atoms of A and 3 atoms of B; atomic mass of A = 12 u, B = 16 u
Compound Y: Contains 1 atom of C, 4 atoms of D, and 1 atom of E; atomic mass of C = 14 u, D = 1 u, E = 16 u
Compound Z: Contains 1 atom of F and 2 atoms of G; atomic mass of F = 23 u, G = 35.5 u
Compound W: Contains 2 atoms of H, 1 atom of I, and 4 atoms of J; atomic mass of H = 1 u, I = 14 u, J = 16 u
(a) Calculate the molecular mass of each compound.
(b) Identify which real compounds these might represent.
(c) If a student has 10 g of Compound X, how many molecules does it contain? (Use Avogadro's number = 6.022 Γ 10Β²Β³)
Q18. A pharmaceutical company needs to calculate the exact molecular masses of several vitamins for their product labels:
Vitamin C (Ascorbic acid): CβHβOβ
Vitamin B12 (Cyanocobalamin): CββHββCoNββOββP
Vitamin D (Cholecalciferol): CββHββO
(a) Calculate the molecular mass of Vitamin C.
(b) Calculate the molecular mass of Vitamin D.
(c) For Vitamin B12, the company states the molecular mass is approximately 1355 u. Verify this by performing the calculation. (Atomic mass of Co = 59, P = 31)
(d) If a daily recommended dose of Vitamin C is 75 mg, how many molecules of Vitamin C does this represent?
(e) Why is it important for pharmaceutical companies to calculate molecular mass accurately?