WBJEE 2020 Question Paper with Solution PDFs

WBJEE 2020 Question Paper is provided here for Mthematics, Physics and Chemistry. The exam was deemed difficult, especially the Mathematics paper (Paper-I). The only respite in the entire exam was provided by the Chemistry section which was comparatively easier and thus more scoring. 

WBJEE 2020 Question Paper with Solution PDF

Exam Date Subject Question Paper
February 2, 2020 Mathematics Check Here
Physics & Chemistry 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.

WBJEE 2020 Questions

  • 1.
    Which logic gate is represented by the following combination of logic gates?
    logic gate is represented by the following combination of logic gates

      • NAND
      • AND
      • NOR
      • OR

    • 2.
      Ruma reached the metro station and found that the escalator was not working. She walked up the stationary escalator with velocity \( v_1 \) in time \( t_1 \). On another day, if she remains stationary on the escalator moving with velocity \( v_2 \), the escalator takes her up in time \( t_2 \). The time taken by her to walk up with velocity \( v_1 \) on the moving escalator will be:

        • \( \frac{t_1}{t_2} \)
        • \( \frac{t_1 + t_2}{t_2 - t_1} \)
        • \( \frac{t_1 + t_2}{v_1 + v_2} \)
        • \( \frac{t_1 t_2}{t_1 + t_2} \)

      • 3.
        The variation of displacement with time of a simple harmonic motion (SHM) for a particle of mass \( m \) is represented by: \[ y = 2 \sin \left( \frac{\pi}{2} + \phi \right) \, \text{cm} \] The maximum acceleration of the particle is:

          • \( \frac{\pi^2}{2} \, \text{cm/sec}^2 \)
          • \( \frac{\pi}{2m} \, \text{cm/sec}^2 \)
          • \( \frac{\pi^2}{2m} \, \text{cm/sec}^2 \)
          • \( \frac{\pi^2}{2} \, \text{cm/sec}^2 \)

        • 4.
          A force \( \mathbf{F} = ai + bj + ck \) is acting on a body of mass \( m \). The body was initially at rest at the origin. The co-ordinates of the body after time \( t \) will be:

            • \( \frac{ar^2}{2m} i + \frac{br^2}{2m} j + \frac{cr^2}{2m} k \)
            • \( \frac{ar^2}{2m} i + \frac{br^2}{2m} j + \frac{cr^2}{2m} k \)
            • \( \frac{ar}{m} i + \frac{br}{m} j + \frac{cr}{m} k \)
            • \( \frac{ar}{m} i + \frac{br}{m} j + \frac{cr}{m} k \)

          • 5.

            A quantity \( X \) is given by: \[ X = \frac{\epsilon_0 L \Delta V}{\Delta t} \] where:
            - \( \epsilon_0 \) is the permittivity of free space,
            - \( L \) is the length,
            - \( \Delta V \) is the potential difference,
            - \( \Delta t \) is the time interval.
            The dimension of \( X \) is the same as that of:

              • Resistance
              • Charge
              • Voltage
              • Current

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