MHT CET 2020 PCB Question Paper with Answer Key PDFs (October 6 - Shift 1)

MHT CET 2020 PCB Question Paper with Answer Key pdf is available for download. The exam was conducted by The Department of Higher and Technical Education on October 6, 2020 in the Shift 1. The question paper comprised a total of 200 questions from General Aptitude and PCB topics.

MHT CET 2020 PCB Question Paper with Answer Key PDFs -Shift 1

MHT CET 2020 PCB Question Paper PDF MHT CET 2020 PCB Answer Key PDF
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MHT CET Previous Year Question Paper with Answer Key PDFs

Collegedunia has provided MHT CET Previous Year Question paper pdf with answer key in the links given below:

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MHT CET Questions

  • 1.
    Which of the following is NOT a layer of the urinary bladder? \begin{enumerate}

      • Mucosa
      • Submucosa
      • Epidermis
      • Muscularis \end{enumerate}

    • 2.
      If a copper rod carries a direct current, the magnetic field associated with the current will be? \begin{enumerate}

        • Parallel to the rod
        • Perpendicular to the rod
        • Circular around the rod
        • No magnetic field \end{enumerate}

      • 3.
        Which of the following does not obey the octet rule? \begin{enumerate}

          • \( SF_6 \)
          • \( H_2O \)
          • \( CO_2 \)
          • \( CH_4 \) \end{enumerate}

        • 4.
          Which of the following correctly represents the AND logic gate? \begin{enumerate}

            • Output = 1 if at least one input is 1
            • Output = 1 only if all inputs are 1
            • Output = 0 if all inputs are 0
            • Output = 1 if all inputs are 0 \end{enumerate}

          • 5.
            Find the ratio of K.E. and P.E. when a particle performs SHM and is at \( \frac{1}{n} \) times its amplitude from the mean position. \begin{enumerate}

              • \( n^2 - 1:1 \)
              • \( 1:n^2 - 1 \)
              • \( 1:n \)
              • \( n:1 \) \end{enumerate}

            • 6.
              A pendulum having a negatively charged metal knob is oscillating on a positively charged surface. The time of the pendulum will be: \begin{enumerate}

                • Increase
                • Decrease
                • Will remain the same
                • Will increase and then decrease \end{enumerate}

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