MHT CET Question Paper 2022 (Available): Check Previous Year Question Paper with Solution PDF (2023-2015)

MHT CET 2022 Question Paper with answer key PDF is now available in this article. Candidates were asked 150 MCQ-based questions for the PCM paper and 200 MCQ-based questions for the PCB paper. In the Mathematics paper, 2 marks were awarded for every correct answer and 1 mark for Physics & Chemistry Paper. 

MHT CET 2022 Question Paper

Paper Date Shift Question Paper PDF
PCM August 5, 2022 Shift 1 Check Here
PCM August 5, 2022 Shift 2 Check Here
PCM August 6, 2022 Shift 1 Check Here
PCM August 6, 2022 Shift 2 Check Here
PCM August 7, 2022 Shift 1 Check Here
PCM August 7, 2022 Shift 2 Check Here
PCM August 8, 2022 Shift 1 Check Here
PCM August 8, 2022 Shift 2 Check Here

*The article might have information for the previous academic years, which will be updated soon subject to the notification issued by the University/College.

MHT CET 2022 Questions

  • 1.
    Evaluate the integral: \[ \int \frac{1}{\sin^2 2x \cdot \cos^2 2x} \, dx \]

      • \( \frac{1}{2} \tan 2x \)
      • \( \frac{1}{2} \cot 2x \)
      • \( \frac{1}{4} \cot 2x \)
      • \( \frac{1}{4} \tan 2x \)

    • 2.
      A die was thrown \( n \) times until the lowest number on the die appeared. If the mean is \( \frac{n}{g} \), then what is the value of \( n \)?

        • \( 2 \)
        • \( 3 \)
        • \( 4 \)
        • \( 5 \)

      • 3.
        The equation for the RMS velocity is given as \[ v_{\text{rms}} = \sqrt{\frac{3RT}{M_0}} \] where \( R \) is the gas constant, \( T \) is the temperature, and \( M_0 \) is the molecular mass. If the temperature is increased, find the new RMS velocity \( v_{\text{rms}} \) when the temperature is doubled.}

          • \( \sqrt{3} v_{\text{rms}} \)
          • \( 2 v_{\text{rms}} \)
          • \( \sqrt{2} v_{\text{rms}} \)
          • \( \frac{v_{\text{rms}}}{\sqrt{2}} \)

        • 4.
          If \( \tan^{-1} (\sqrt{\cos \alpha}) - \cot^{-1 (\cos \alpha) = x \), then what is \( \sin \alpha \)?}

            • \( \tan \left( \frac{x}{2} \right) \)
            • \( \cot \left( \frac{x}{2} \right) \)
            • \( \cot^2 \left( \frac{x}{2} \right) \)
            • \( \tan^2 \left( \frac{x}{2} \right) \)

          • 5.
            A body of mass 0.2 kg is attached to a light string of length 1 m and revolved in a vertical circle. What is the minimum speed at the lowest point so that the body can complete the circular motion? (Take \( g = 10 \, \text{m/s}^2 \))

              • 2 m/s
              • 3.16 m/s 
                 

              • 5 m/s
              • 6.32 m/s

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