Metallurgical Engineering
This is one of the oldest forms of engineering and has evolved from metallurgy and mining. Materials science is an interdisciplinary field involving the properties of matter and its applications to various areas of science and engineering. Metallurgical Engineering is a broad field that deals with all sorts of metal-related areas. Metals are needed to make our society function - metals make up important parts of cars, bikes, planes, buildings, even toothpaste tubes. The knowledge of the production, design, and manufacturing of these metals and mineral products is of paramount importance in making these things. Materials science encompasses every kind of matter including metals, ceramics, ceramics, polymers, semiconductors, magnetic materials, medical implant materials and biological materials. The material of choice of a given era is often its defining point; the Stone Age, Bronze Age, and Steel Age are examples of this.
Metallurgy - Comprises of extractive metallurgy, physical metallurgy and mineral processing. All metals are extracted from their naturally occurring forms to be processed further. The raw materials produced are the food for all metal based industries such as steel plants.
Material properties and processing – Material processing is the series of operations that transforms industrial materials from a raw-material state into finished parts or products; the materials used are industry specific, for example, silicon in the semiconductor industry, and ceramic in ceramic based products; alloying, corrosion, and thermal or mechanical processing, for a specialized treatment of metallurgical materials--with applications ranging from aerospace and industrial equipment to the civil industries; study of mechanical behavior and electronic, magnetic, thermal and optical properties of materials.
Thermodynamics – study of phase transformations and energy conversion in materials systems which include multi-phase, multi-component, reacting and non-reacting systems; improving efficiency of these systems
Crystallography and quantum physics - structure (symmetry and defects) and bonding in materials (e.g., ionic, metallic, covalent, and van der Waals bonding); study of material properties based on bonding patterns and their suitable usage thereof in various industries.
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