Finite Element ModelingCovers the derivation of the equation of motion, interpolation, Newton's equation, and energy conservation in finite element modeling.
Finite Element MethodCovers the Finite Element Method, discussing the derivation of the equation of motion and exploring mass and stiffness matrices.
Numerical analysisCovers advanced numerical analysis topics including deep neural networks and optimization methods.
Rigid DisplacementCovers the concept of rigid displacement and potential energy, emphasizing continuity between elements and the importance of conforming to the mesh.
Conservation of Mechanical EnergyExplores the conservation of mechanical energy and its application in solving physics problems involving work, stability, and energy transformations.
Advanced Physics ICovers advanced topics in physics, including empirical forces, applications of Newton's laws, momentum, impulse, work, energy, and angular momentum.
Work and EnergyExplores work, energy, conservation principles, and angular momentum in physics.