Covers the fundamentals of separation processes and their energy efficiency, focusing on CO₂ separation from air and various techniques used in the industry.
Explores the principles and applications of stereolithography in additive manufacturing, covering topics such as equipment, resolution, build speed, and cost comparison.
Explores phase diagrams, solid solutions, and phase transitions in materials science, focusing on the significance of alloy microstructures and phase fractions.
Explores the basic principles, equipment, properties, and applications of Fused Deposition Modelling (FDM), including the production of metallic parts and custom items like shoes.
Explores the classification, benefits, and disadvantages of additive processes in manufacturing, emphasizing their impact on industry competitiveness and sustainability.
Explores Ballistic Particle Manufacturing, a process using molten wax to build 3D parts, and introduces Laser Metal Wire Deposition as a metal version of FDM.
Introduces volumetric printing as a solution to traditional 3D printer limitations, covering advanced manufacturing techniques and bioprinting applications.
Explores binary systems, phase diagrams, and elastic properties in materials science, emphasizing phase equilibria and material behavior under deformation.
Compares epoxy resin with thermoset and thermoplastic materials, focusing on its high strength, adhesion, and chemical resistance, and explores its diverse applications in various industries.
Explores mass transfer coefficients in liquid and gas phases, with a focus on convective mass transfer around dissolving bubbles and experimental dynamics of granular systems.