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Analyse motion and forces to understand the behaviour of mechanical systems.
Exam‑style questions with instant feedback.
Section 1: Particle Kinematics
Section 2: Particle Kinetics
Section 3: Planar Rigid-Body Kinematics
Section 4: Planar Rigid-Body Kinetics
What you’ll achieve
Understand kinematics and kinetics of particles and rigid bodies.
Apply Newton’s laws to solve real-world engineering problems.
Use work-energy and impulse-momentum methods for motion analysis.
Analyse mechanical systems including vehicles, machinery, and structures.
Develop critical problem-solving skills for engineering design and optimisation.

Course overview
Dynamics introduces the study of motion and the forces that cause it, building on principles from statics and mechanics. Students explore kinematics, kinetics, Newton’s laws, work-energy, and impulse-momentum methods. The course emphasises problem-solving in engineering contexts, including machinery, vehicles, and structural systems. By combining theoretical concepts with practical examples, learners develop the ability to predict, analyse, and optimise the movement of systems under varying conditions. Dynamics equips students with essential skills for mechanical, civil, and aerospace engineering applications.
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