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Chapter 5 of 9
Important Questions

Chemical Thermodynamics

ICSE · Class 11 · Chemistry

Most important questions from Chemical Thermodynamics for ICSE Class 11 Chemistry board exam 2026. MCQs, short answer, and long answer questions with marks.

91 questions44 flashcards5 concepts

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A diagram illustrating the three types of thermodynamic systems: open, closed, and isolated, showing the exchange of matter and energy with the surroundings.
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91 Questions·
multiple choice

Sample Questions

1multiple choice
1 marks

The standard entropy change (ΔS°) for the reaction SO₂(g) + ½O₂(g) → SO₃(g) is calculated using S° values: SO₂ = 248.5, O₂ = 205.0, SO₃ = 256.2 J K⁻¹ mol⁻¹. What is ΔS°?

Show answer

-94.8 J K⁻¹ mol⁻¹

Step 1: ΔS° = ΣS°(products) - ΣS°(reactants). Step 2: S°(products) = S°[SO₃(g)] = 256.2. Step 3: S°(reactants) = S°[SO₂(g)] + ½ × S°[O₂(g)] = 248.5 + ½×205.0 = 248.5 + 102.5 = 351.0. Step 4: ΔS° = 256.2 - 351.0 = -94.8 J K⁻¹ mol⁻¹. The negative sign makes sense because gas moles decrease (fewer gaseous molecules = less disorder). Option B has wrong sign. Option C uses full O₂ (not ½).

2multiple choice
1 marks

For the reaction Ag₂O(s) ⇌ 2Ag(s) + ½O₂(g), ΔH = +30.54 kJ mol⁻¹ and ΔS = +0.06 kJ K⁻¹ mol⁻¹. The temperature at which ΔG = 0 is:

Show answer

509 K

Step 1: At equilibrium, ΔG = 0, so ΔH = TΔS. Step 2: T = ΔH/ΔS. Step 3: T = 30.54 kJ mol⁻¹ ÷ 0.06 kJ K⁻¹ mol⁻¹ = 509 K. Step 4: Below 509 K, TΔS < ΔH, so ΔG > 0 (non-spontaneous forward). Above 509 K, TΔS > ΔH, so ΔG < 0 (spontaneous forward — Ag₂O decomposes). Option B incorrectly uses ΔS in J units without converting. Option C uses an incorrect formula.

3multiple choice
1 marks

The standard free energy change ΔG° for a reaction at 300 K is +38.74 kJ. What is the value of equilibrium constant K at this temperature? (R = 8.314 J K⁻¹ mol⁻¹)

Show answer

1.8 × 10⁻⁷

Step 1: Use ΔG° = -2.303RT log K. Step 2: log K = -ΔG°/(2.303RT) = -(38740)/(2.303 × 8.314 × 300) = -38740/5748 = -6.74. Step 3: K = 10⁻⁶·⁷⁴ = 1.8 × 10⁻⁷. Step 4: A positive ΔG° means the products are not favoured at standard conditions (K < 1). Option B is the reciprocal (K > 1, which would require ΔG° < 0). Option C uses wrong sign in the exponent.

4multiple choice
1 marks

A system absorbs 400 J of heat and does 150 J of work on the surroundings. Then the system undergoes a cyclic process returning to initial state. What is the total change in internal energy after the complete cycle?

Show answer

Zero

Step 1: Internal energy (U) is a state function — it depends only on the current state of the system, not the path. Step 2: In a cyclic process, the initial state and final state are identical. Step 3: Therefore, ΔU = U_final - U_initial = 0. Step 4: Even though q = +400 J and w = -150 J in one step (giving ΔU = 250 J for that step), returning to the initial state means the sum of all ΔU over the entire cycle is zero. The values of q and w mentioned are distractors — the key concept is that ΔU_cycle = 0.

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Frequently Asked Questions

What are the important topics in Chemical Thermodynamics for ICSE Class 11 Chemistry?
Key topics in Chemical Thermodynamics include Thermodynamic Concepts Hierarchy, Thermodynamic Processes and Energy Flow, Chemical Thermodynamics: Comprehensive Concept Map. These are the concepts ICSE Class 11 examiners draw on most — study them first, then practise related questions.
How to score full marks in Chemical Thermodynamics — ICSE Class 11 Chemistry?
Understand the core concepts first, then work through the 91 practice questions available for this chapter. Revise formulas and definitions regularly, and use flashcards for quick recall before the exam.
How many important questions are there in Chemical Thermodynamics?
There are 91 practice questions available for Chemical Thermodynamics. These cover multiple question types including MCQs, short answer, and long answer questions.

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