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Free MCQs & Online Quiz Practice for Exams

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    Q: For CO + H₂O ⇌ CO₂ + H₂, unit of Kc is: (ETEA 2010)

    A) Mol L⁻¹
    B) L mol⁻¹
    C) Dimensionless
    D) Mol cm⁻³

    Q: Extent of completion of 2Cl₂O ⇌ products depends on Kc; mostly Cl₂ when: (ETEA 2010)

    A) Kc very large
    B) Kc very small
    C) Kc moderate
    D) Kc = 1

    Q: Mass-action forces proportional to active masses is statement of: (ETEA 2012)

    A) Raoult’s law
    B) Le-Chatelier principle
    C) Conservation of energy
    D) Law of mass action

    Q: Why simple crystallization is NOT used for NaCl purification? (ETEA 2012)

    A) Solubility constant with temp
    B) Less soluble
    C) increases with temp
    D) Decreases with temperature

    Q: If Kc is large, at equilibrium: (ETEA 2012)

    A) Reactant concentration high
    B) Product concentration low
    C) Product concentration high
    D) Reactant & product equal

    Q: For endothermic reaction N₂ + O₂ ⇌ 2NO, increasing temperature: (ETEA 2012)

    A) Shifts backward
    B) No change
    C) Shifts forward
    D) All

    Q: Haber process is best represented by: (ETEA 2013)

    A) N₂ + 3H₂ → 2NH₃
    B) NH₃ + 3OH⁻ → 2NH₂⁻
    C) MgN₂ + H₂O →…
    D) Li₃N + H₂O → …

    Q: AB ⇌ A⁺ + B⁻, Ksp = 4×10⁻¹²; molar solubility is: (ETEA 2013)

    A) 4×10⁻¹²
    B) 2×10⁻⁶
    C) 8×10⁻⁶
    D) 2×10⁻⁴

    Q: Guldberg & Waage stated: (ETEA 2014)

    A) Acid-base equilibria
    B) Periodic law
    C) Law of mass action
    D) Rule of multiplicity

    Q: Purification of NaCl by HCl is based on: (ETEA 2014)

    A) Volatility
    B) Common-ion effect
    C) Ionization
    D) None

    Q: For NH₄OH ⇌ NH₄⁺ + OH⁻, adding NH₄Cl shifts equilibrium: (ETEA 2015)

    A) Right
    B) Left
    C) No change
    D) Reached quickly

    Q: K of NH₃ + H₂O ⇌ NH₄⁺ + OH⁻ if [NH₃]=10⁻⁸, [NH₄⁺]=1.0, [OH⁻]=0.15: (ETEA 2015)

    A) 1.5×10⁻⁶
    B) 1.5×10⁻⁸
    C) 7.5×10⁻¹
    D) 1×10⁻⁶

    Q: BaSO₄ dissolved in water; if Ksp=1×10⁻¹⁰, [Ba²⁺] is: (ETEA 2016)

    A) Kp = Kc
    B) Kp > Kc
    C) Kp < Kc
    D) None

    Q: Solubility of Ag₂CrO₄ is 7.3×10⁻⁵; Ksp is: (ETEA 2017)

    A) [7.3×10⁻⁵]²[1.3×10⁻⁵]
    B) [2.6×10⁻⁴]²[1.3×10⁻⁵]
    C) [1.3×10⁻⁵][7.3×10⁻⁵]
    D) [1.3×10⁻⁴]²

    Q: For PCl₅ ⇌ PCl₃ + Cl₂, Kp=0.85 at 500 K. Kc equals: (ETEA 2017)

    A) 0.85/(0.082×500)
    B) 0.82
    C) 0.85×500
    D) 0.85/0.82

    Q: Solubility of AgCr₂O₇ at 25 °C = 2×10⁻⁵ M. Ksp = (ETEA 2018)

    A) 3.2×10⁻¹⁰
    B) 4.0×10⁻¹⁰
    C) 8.0×10⁻²⁶
    D) 8.0×10⁻¹⁰

    Q: For CO + O₂ ⇌ CO₂: (ETEA 2018)

    A) Kp > Kc
    B) Kp < Kc
    C) Kp = Kc
    D) Kp ≥ Kc

    Q: If initial N₂=1 mol, O₂=1 mol, and at equilibrium O₂=0.25 mol, NO formed is: (ETEA 2018)

    A) 0.50
    B) 0.125
    C) 1.50
    D) 0.75

    Q: Highest Kc among: (ETEA 2018)

    A) H₂ + I₂ ⇌ 2HI
    B) Esterification
    C) Cl + Cl → Cl₂
    D) C + 2H₂ → CH₄

    Q: Heating CaCO₃ in open container; increasing pressure: (ETEA 2018)

    A) Shifts right
    B) Shifts left
    C) No effect
    D) System not at equilibrium
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