MHT CET PYQs for Motion in a plane with Solutions: Practice MHT CET Previous Year Questions

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Shivam Yadav

Educational Content Expert | Updated on - Nov 26, 2025

Motion in a plane is an important topic in the Physics section in MHT CET exam. Practising this topic will increase your score overall and make your conceptual grip on MHT CET exam stronger.

This article gives you a full set of MHT CET PYQs for Motion in a plane with explanations for effective preparation. Practice of MHT CET Physics PYQs including Motion in a plane questions regularly will improve accuracy, speed, and confidence in the MHT CET 2026 exam.

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MHT CET PYQs for Motion in a plane with Solutions

  • 1.
    If $\sqrt{A^{2}+B^{2}}$ represents the magnitude of resultant of two vectors $(A + B)$ and $(A - B)$, then the angle between two vectors is

      • $cos^{-1}\left[-\frac{2\left(A^{2}-B^{2}\right)}{\left(A^{2}+B^{2}\right)}\right]$
      • $cos^{-1}\left[-\frac{A^{2}-B^{2}}{A^{2}\,B^{2}}\right]$
      • $cos^{-1}\left[-\frac{\left(A^{2}+B^{2}\right)}{2\left(A^{2}-B^{2}\right)}\right]$
      • $cos^{-1}\left[-\frac{\left(A^{2}-B^{2}\right)}{A^{2}+B^{2}}\right]$

    • 2.
      An electric fan has blades of length 30 cm as measured from the axis of rotation. If the fan is rotating at 1200 rpm, the acceleration of a point on the tip of the blade is about

        • 1600 $ms^{-2}$
        • 4740 $ms^{-2}$
        • 2370 $ms^{-2}$
        • 5055 $ms^{-2}$

      • 3.
        A ball is thrown vertically upwards with an initial velocity of $ 20 \, \text{m/s} $. How high will the ball rise? (Take $ g = 10 \, \text{m/s}^2 $)

          • \( 40 \, \text{m} \)

          • \(20 \, \text{m} \)

          • \( 10 \, \text{m} \)
          • \( 25 \, \text{m} \)

        • 4.
          The relative angular speed of hour hand and second hand of a clock is (in rad/s)

            • \(\frac {421π}{11600}\)
            • \(\frac {19π}{15600}\)
            • \(\frac {719π}{21600}\)
            • \(\frac {311π}{57800}\)

          • 5.
            Angular velocity of hour hand of a watch is

              • $\frac{\pi}{43200}rads^{-1}$
              • $\frac{\pi}{30}rads^{-1}$
              • $\frac{\pi}{21600}rads^{-1}$
              • $\frac{\pi}{1800}rads^{-1}$

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