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Related lectures (22)
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Introduction: Why Portland cement
Explores the reasons behind the widespread use of 'Portland' cement in construction and its environmental impact.
Lowering Environmental Impact: Cement Chemistry and Sustainable Materials
Discusses the use of supplementary cementitious materials to reduce clinker in cement production and lower CO₂ emissions.
Kinetics: the Induction period
By Professor Karen Scrivener delves into the kinetics of the induction period in cement chemistry, exploring different theories and dissolution mechanisms.
Powder Treatment: Rheology, Mixing, Granulation
Covers powder treatment, rheology, mixing, granulation, and cement production in ceramic processing, emphasizing flow behavior and superplasticizers.
Ceramics: Powder Characterization
Explores the characterization of powders in ceramics, emphasizing the impact on ceramic properties and the manufacturing process.
Introduction to LC3 Cement
Introduces LC³ cement made with limestone and calcined clay for sustainable construction.
Adjusting LC³ Cement Composition
Explores the impact of sulphates and alkalis on LC³ cement composition and the prevention of alkali silica reaction.
Kinetics: the Filler Effect
Delves into the filler effect in cement hydration, emphasizing the role of supplementary cementitious materials.
Overview of Particle Physics and Rutherford Scattering
Covers the constituents of matter, fundamental forces, the Standard Model, natural units, and particle interaction experiments.
Cement Chemistry Kinetics
Explores cement hydration kinetics post-peak, focusing on water populations, C-S-H density, and pore structures.