VITEEE PYQs for Motion in a straight line with Solutions: Practice VITEEE Previous Year Questions

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Shivam Yadav

Updated on - Dec 10, 2025

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

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

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VITEEE PYQs for Motion in a straight line with Solutions

VITEEE PYQs for Motion in a straight line with Solutions

  • 1.
    A body is thrown vertically upwards with an initial velocity of \( 10 \, \text{m/s} \). How high will the body rise? (Take \( g = 10 \, \text{m/s}^2 \))

      • \( 5 \, \text{m} \)
      • \( 10 \, \text{m} \)
      • \( 20 \, \text{m} \)
      • \( 50 \, \text{m} \)

    • 2.
      An observer $A$ sees an asteroid with a radioactive element moving by at a speed $=0.3\, c$ and measures the radioactivity decay time to be $T_{A}$. Another observer $B$ is moving with the asteroid and measures its decay time as $T_{B} .$ Then $T_{A}$ and $T_{B}$ are related as

        • $T_{B} < T_{A}$
        • $T_{A}=T_{B}$
        • $T_{B} > T_{A}$
        • Either (A) or (C) depending on whether the asteroid is approaching or moving away from A

      • 3.
        Two balls of equal masses are thrown upwards along the same vertical direction at an interval of $2\, s$, with the same initial velocity of $39.2 \,m/s$. The two balls will collide at a height of

          • 39.2 m
          • 73.5 m
          • 78.4 m
          • 117.6 m

        • 4.
          A ball is dropped from a height of 20 m. What is its velocity just before hitting the ground? (Take \( g = 9.8 \, \text{m/s}^2 \))

            • \( 10 \, \text{m/s} \)
            • \( 14 \, \text{m/s} \)
            • \( 20 \, \text{m/s} \)
            • \( 18 \, \text{m/s} \)

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