Covers the formation, classes, and properties of intermetallic compounds, including specific examples like titanium aluminides, nickel aluminides, and iron aluminides.
Covers forced convection theory, focusing on thermal boundary layer equations and heat transfer between a solid and a fluid in motion at different temperatures.
Explores the use of Ni alloys in high-temperature applications like gas turbines and jet engines, covering their design, material requirements, and alloying effects.
Explores the properties, applications, classification, and recent developments of aluminum and magnesium alloys, as well as their microstructure, mechanical properties, corrosion resistance, and biodegradable applications.
Explores the parameterization of atmospheric processes, including microphysics, turbulence, radiation, convection, and surface processes, to improve forecast accuracy and quantify uncertainties.
Covers the fundamentals of steel metallurgy, including high-performance steel classes, steelmaking process, importance of steels, classification, alloying elements, phases, and heat treatment.