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Previous year question hub

Motion In A Straight Line - Mechanics - Physics Previous Year Questions

Practice Motion In A Straight Line - Mechanics - Physics previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

2Papers
2Years
3Questions
1Topics

Motion In A Straight Line question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Motion In A Straight Line. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Not classified 3 100%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

Multiple Choices 3 100%

Subject weightage

Top subjects by unique question coverage.

Physics
3 Qs

Most asked topics

Top topics across the included previous year papers.

Mechanics
3 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Motion In A Straight Line
3 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

IAT IISER 2023
2 Qs
IAT IISER 2022
1 Qs

Included previous year papers

Newest papers appear first. Sort by year, question coverage or name.

PaperYear / sessionQuestions in this viewOpen
IAT IISER 202320232View paper
IAT IISER 202220221View paper

All Motion In A Straight Line previous year questions

Practice every matching question in batches of 20, with every available option.

1
2022 · Physics · Mechanics · Motion In A Straight Line
IAT IISER 2022
A particle experiences an acceleration $\vec{a}=\alpha \vec{v}$, where $\vec{v}$ is the velocity of the particle and $\alpha$ is a constant. If the distances traveled by the particle in the time intervals $t_2-t_1$ and $t_3-t_1$ are $S_{12}$ and $S_{13}$, respectively, which of the following relations is true?
A
$\frac{S_{13}}{S_{12}}=\frac{\log \left[\alpha\left(t_3-t_1\right)\right]}{\log \left[\alpha\left(t_2-t_1\right)\right]}$
B
$\frac{S_{13}}{S_{12}}=\frac{\exp \left[\alpha\left(t_3-t_1\right)\right]}{\exp \left[\alpha\left(t_2-t_1\right)\right]}$
C
$\frac{S_{13}}{S_{12}}=\frac{\exp \left[\alpha\left(t_3-t_1\right)\right]-1}{\exp \left[\alpha\left(t_2-t_1\right)\right]-1}$
D

$\frac{S_{13}}{S_{12}}=\frac{\log \left[\alpha\left(t_3-t_1\right)\right]-1}{\log \left[\alpha\left(t_2-t_1\right)\right]-1}$

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2
2023 · Physics · Mechanics · Motion In A Straight Line
IAT IISER 2023
A ball is thrown vertically upwards with an initial speed $u$ from a height $h$ above the ground. The ball eventually hits the ground with a speed $v$. The acceleration due to gravity is $g$ and air resistance is negligible. What is the average speed of the ball over its entire trajectory?
A
$\frac{g h}{2(u+v)}$
B
$\frac{u+v}{2}$
C
$\frac{u^2+v^2}{2(u+v)}$
D
$\frac{u^2+g h}{2(u+v)}$
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3
2023 · Physics · Mechanics · Motion In A Straight Line
IAT IISER 2023

The velocity $v(t)$ of a particle moving in one dimension is given by:

$$v(t)= \begin{cases}\alpha t, & 0 \leq t \leq T / 3 \\ \alpha T / 3, & T / 3 \leq t \leq 2 T / 3 \\ \alpha(T-t), & 2 T / 3 \leq t \leq T\end{cases}$$

where $\alpha(\neq 0)$ is a constant. What is the displacement of the particle from time $t=0$ to $T$ ?

A
$\frac{2 \alpha T^2}{9}$
B
$\frac{4 \alpha T^2}{9}$
C
$\frac{8 \alpha T^2}{9}$
D
$\frac{7 \alpha T^2}{9}$
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