PECTAA 2026 Syllabus

Class 9 Β· Physics

Chapter 2: Kinematics

Complete study resources β€” short questions, long questions, numericals, MCQs & more.

✍️ Prepared by Muhammad Tayyab
πŸš— Rest and Motion ➑️ Scalars and Vectors πŸ“ Equations of Motion πŸ“Š Graphical Analysis πŸƒ Speed & Velocity
6 Resource Types
40+ Short Q&As
100% Exam-Focused

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Select any resource below to access detailed notes and exam preparation material.

6 Resources PDF Download
Exercise

Exercise Short Answer Questions

Complete set of exercise short questions with exam-ready answers. Covers scalar vs vector, head-to-tail rule, distance-time & speed-time graphs, free fall acceleration, and uniform speed vs velocity.

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Q&A

Short Answer Questions

Important short questions with concise answers. Covers mechanics branches, scalar vs vector, types of motion (translatory, rotatory, vibratory), distance vs displacement, speed vs velocity, acceleration types, and graphical analysis.

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In-Depth

Comprehensive Questions

Detailed long-answer questions with complete explanations. Covers graphical representation of vectors, types of motion with examples, distance vs displacement, gradient of graphs, area under speed-time graph proof, and equations of motion under gravity.

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Numericals

Numerical Problems

Step-by-step solutions for all numerical problems. Includes vector representation, speed, acceleration, equations of motion, free fall, and average velocity calculations with complete formula applications.

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MCQs

Multiple Choice Questions

Comprehensive MCQs with answer key and explanations. Covers displacement, rest, free fall, acceleration, gradient of graphs, area under graphs, and velocity concepts with detailed reasoning.

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Exam Prep

Constructed Response Questions

Open-ended questions for deeper learning and critical thinking. Covers distance vs displacement comparison, muzzle velocity acceleration, average vs instantaneous velocity, graph interpretation, and velocity-zero-at-instant concepts.

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⚑ Key Formulas – Kinematics

\[ v = \frac{d}{t} \]
Speed (Average)
\[ a = \frac{v_f - v_i}{t} \]
Acceleration
\[ v_f = v_i + at \]
First Equation of Motion
\[ S = v_i t + \frac{1}{2}at^2 \]
Second Equation of Motion
\[ 2aS = v_f^2 - v_i^2 \]
Third Equation of Motion
\[ \text{Scalars vs Vectors} \]
Magnitude only vs Magnitude + Direction

πŸ“– Complete syllabus coverage for Class 9 Physics (PECTAA 2026) – Chapters 1 to 9

Created by Hira Science Academy | Aligned with PECTAA 2026 Syllabus

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