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Lecture 30 - Supplementary - Relative velocity and rotating planar axes
Lecture 28 - Fixed-axis rotation of rigid bodies
Lecture 25 - Damped harmonic oscillator
Lecture 23 - Oscillation of bounded systems and undamped harmonic oscillators
Lecture 22 - Potential energy and stability
Lecture 21 - Application of vector calculus to forces and potentials
Lecture 17 - Mass flow problems (accelerating systems)
Lecture 16 - Newton's law for mass flow systems (non-accelerating bodies)
Lecture 12 supplementary 2 - Collision
Lecture 10 - Supplementary - Problem solving using the work-energy approach
Lecture 14 - Angular momentum of a system of particles about centre of mass and a general point
Lecture 13 - Force and linear momentum of a system of particles
Lecture 12 supplementary - Conical pendulum problem
Lecture 12 - Linear and angular momentum
Lecture 10 - Introduction to Work and Energy
Lecture 6 - Geometrical view of acceleration in polar coordinates and normal-tangential coordinates
Lecture 3 - Velocity in polar coordinates
Lecture 7 - Introduction to Newton's second law of motion
Lecture 2 - Derivatives of vectors and introduction to polar coordinates
Lecture 9 - Newton's laws of motion in polar coordinates
Lecture 1 - Introduction
Computational modelling of polydisperse multiphase systems using population balance equation
TLC workshop on Online Teaching and Assessments - 28th August 2020
Population balance modelling hands-on session using finite element and finite volume (ANSYS Fluent)