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NEET 2022 Chemistry Question Paper with Solutions PDF Code S5
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Sachin Gupta

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NEET 2022 Chemistry Question Paper with Solutions PDF Code S5 is available for download. NEET 2022 S5 Chemistry Question Paper comprises 50 MCQs out of which only 45 are to be attempted. NEET 2022 Chemistry question paper code S5 is divided into 2 sections- A (35 questions) and B (15 questions).

NEET 2022 Chemistry Question Paper with Solutions PDF Code S5

NEET 2022 Chemistry Question Paper S5 PDF NEET 2022 Chemistry Answer Key S5 PDF
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NEET Questions

1. What will be the equilibrium constant of the given reaction carried out in a $ 5 \,L $ vessel and having equilibrium amounts of $ A_2 $ and $ A $ as $ 0.5 $ mole and $ 2 \times 10^{-6} $ mole respectively ? The reaction : $ \ce{A2 <=> 2A} $

    • $ 0.16 \times 10^{-11} $
    • $ 0.25 \times 10^{5} $
    • $ 0.4 \times 10^{-5} $
    • $ 0.2 \times 10^{-11} $

    2.

    Write a balanced equation for the reaction of molecular nitrogen (N2) and oxygen (O2) to form dinitrogen pentoxide. \((f(x)=x^2)\)

      • N2 + O2 → N2O5 (unbalanced equation)
      • 2N2 + 5O2 → 2N2O5
      • option 3

      3.
      The reagent which can do the conversion $CH _{3} COOH \longrightarrow CH _{3}- CH _{2}- OH $ is

        • $LiAIH_4$ / ether
        • $H_2, Pt$
        • $NaBH_4$
        • $Na$ and $C_2H_5OH$

        4.
        Minority carriers in a $p-type$ semiconductor are

          • Holes
          • Free electrons
          • Both holes and free electrons
          • Neither holes nor free electrons

          5.
          Which of the following is not true for oxidation?

            • addition of oxygen
            • addition of electronegative element
            • removal of hydrogen
            • removal of electronegative element

            6. At a certain temperature in a 5 L vessel, 2 moles of carbon monoxide and 3 moles of chlorine were allowed to reach equilibrium according to the reaction,$CO + Cl_{2} <=> COCl_2 $ At equilibrium, if one mole of CO is present then equilibrium constant $(K_c)$ for the reaction is :

              • 2
              • 2.5
              • 3
              • 4

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