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Previous year question hub

Principles of Water Chemistry - Environmental Chemistry - Environmental Science & Engineering Previous Year Questions

Practice Principles of Water Chemistry - Environmental Chemistry - Environmental Science & Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

6Papers
6Years
13Questions
1Topics

Principles of Water Chemistry question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Principles of Water Chemistry. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Medium 8 61.5%
Easy 5 38.5%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

Numerical Answer Type (NAT) 9 69.2%
MCQ 4 30.8%

Subject weightage

Top subjects by unique question coverage.

Environmental Science & Engineering
13 Qs

Most asked topics

Top topics across the included previous year papers.

Environmental Chemistry
13 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Principles of Water Chemistry
13 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

Environmental Science & Engineering (ES) 2026
2 Qs
Environmental Science & Engineering (ES) 2025
2 Qs
Environmental Science & Engineering (ES) 2024
3 Qs
Environmental Science & Engineering (ES) 2023
1 Qs
Environmental Science & Engineering (ES) 2022
2 Qs
Environmental Science & Engineering (ES) 2021
3 Qs

Included previous year papers

Newest papers appear first. Sort by year, question coverage or name.

PaperYear / sessionQuestions in this viewOpen
Environmental Science & Engineering (ES) 202620262View paper
Environmental Science & Engineering (ES) 202520252View paper
Environmental Science & Engineering (ES) 202420243View paper
Environmental Science & Engineering (ES) 202320231View paper
Environmental Science & Engineering (ES) 202220222View paper
Environmental Science & Engineering (ES) 202120213View paper

All Principles of Water Chemistry previous year questions

Practice every matching question in batches of 20, with every available option.

1
2024 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2024

A saturated CaCO₃ stock solution is existing at 25°C. In one experiment (i) 25 g Na₂CO₃ is added to the stock solution. In another experiment (ii) 25 g Na₂SO₄ is added to the stock solution. Select the correct statement from the following.

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2
2024 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2024
The pH of a solution containing 0.1M of acetic acid and 0.05 M of sodium acetate is __________ (rounded off to 2 decimal places).
The pKa value of ionization of acetic acid is 4.76.
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3
2024 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2024
An industry discharges 2 million liters per day (MLD) of wastewater with a temperature of 45°C and a pH of 2, whereas the neighboring industry produces 3 MLD of wastewater with a temperature of 30°C and pH of 8. If both the wastewaters are mixed and carried through a pipeline, then the resultant pH of mixed wastewater is __________ (rounded off to 2 decimal places).
Neglect buffering capacity of the system and the temperature effect on pH.
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4
2025 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2025
A researcher added certain amount of HgCl₂ to water at pH 10. He calculated the expected concentration of mercury in the water. He asked his student to measure the concentration. His student used an instrument that can measure only the free metal, Hg²⁺. The student observed that the concentration measured by him was significantly less than the concentration calculated by the researcher. How can he explain the paradox to the researcher? Explanation 1: Significant fraction of the mercury would have changed phase from aqueous to gaseous phase, thus leaving less mercury in the water Explanation 2: Fraction of the mercury added to water would have formed aqueous complexes Explanation 3: Fraction of the mercury added to water could have precipitated Choose the correct option from the following
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5
2025 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2025

Correctly label the speciation diagram below:

Source question diagram

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6
2021 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2021
What is the pH of a water sample having H⁺ concentration of 10 mg/L? The atomic weight of H is 1 g/mol.
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7
2021 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2021
The molar concentrations (M, i.e. mol/L) of some ionic species in a water sample were estimated as follows:
Na⁺ = 0.25 M; Ca²⁺ = 0.12 M; Cl⁻ = 0.32 M; HCO₃⁻ = 0.05 M.
The ionic strength of this water sample is ______________ M (correct up to two decimal places).
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8
2021 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2021
Excess amount of solid calcium sulphate (CaSO₄) was added to a pure water sample (pH = 7) so that some solids remain undissolved at the equilibrium. The solubility product of CaSO₄ is 2×10⁻⁵ mol²/L². The molar concentration of SO₄²⁻ in this water sample at equilibrium will be ______________ mol/L (rounded off to three decimal places).
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9
2022 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2022
A solution has 0.001 mole/L zinc ions having pH of 6. Solubility product of zinc hydroxide is given as \(8 \times 10^{-18}\) (mole/L)\(^3\). Ignoring activity corrections, the ratio (rounded off to two decimal places) of reaction coefficient to solubility product would be __________
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10
2022 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2022
The Henry’s law constant of CO\(_2\) is \(3.4\times 10^{-2}\) M per atm in neutral water at 25°C. The dissolved CO\(_2\) (i.e., CO\(_2\cdot\)H\(_2\)O) at equilibrium undergoes the following reactions.

CO\(_2\cdot\)H\(_2\)O \(\rightleftharpoons\) H\(^+\) + HCO\(_3^-\) (Equilibrium constant = \(4.3 \times 10^{-7}\) M)
HCO\(_3^-\) \(\rightleftharpoons\) H\(^+\) + CO\(_3^{2-}\) (Equilibrium constant = \(4.7 \times 10^{-11}\) M)

If ambient CO\(_2\) concentration is 300 ppm, the total dissolved CO\(_2\) (in μM, rounded off to one decimal place) is __________.
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11
2023 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2023
The solubility of gas A is 16 mg/L in water and its vapor pressure is 0.042 atm. at 25 °C. In a closed system, the gas phase concentration of A is \(10^{-3}\) mol/L. Assuming Ideal gas constant (R) value as 0.0821 L-atm/mol-K, the concentration of gas A in water at 25 °C is ______________ (in mg/L, rounded off to two decimal places).
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12
2026 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2026
The following two reactions describe the chemistry of S(IV) in an aquatic system.
Under ideal conditions, the equilibrium constants for reactions (i) and (ii) are 1.3 × 10⁻² M (Kₛ₁) and 6.6 × 10⁻⁸ M (Kₛ₂), respectively.
If the pH of the system is 4.0 and the equilibrium concentration of SO₂(aq) is 1.0 M, the equilibrium concentration of SO₃²⁻ is ______ mM (rounded off to one decimal place).
\[ SO_2(aq) ightleftharpoons H^+ + HSO_3^- \quad (i) \]
\[ HSO_3^- ightleftharpoons H^+ + SO_3^{2-} \quad (ii) \]
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13
2026 · Environmental Science & Engineering · Environmental Chemistry · Principles of Water Chemistry
Environmental Science & Engineering (ES) 2026
The calibration graph between absorbance and the concentration of chromate (CrO₄²⁻) in a water sample is shown in the figure.
For an absorbance of 0.35 in a water sample, the estimated Cr(VI) concentration is ______ mg/L (rounded off to two decimal places).
Use the atomic weight (g/mol) of Cr and O as 52 and 16, respectively.
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