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⏱ 2h 42m📚 27 lessons🎧 Audio version
Physics of Solid-State Materials and Semiconductor Devices
Master the classical and quantum foundations of electron transport and lattice dynamics to understand modern semiconductor technology.
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About this course
To design or work with modern electronic components, you must understand how materials behave at the atomic level. This text-based course bridges the gap between quantum physics and practical semiconductor engineering, giving you a clear conceptual foundation in solid-state behavior. You will progress from basic crystal structures to the physical principles that govern modern microelectronics and quantum-confined systems.
By reading through this comprehensive guide, you will gain the theoretical tools needed to analyze electronic transport, thermal properties, and device physics. You will develop a strong mental model of how electrons and lattice vibrations interact to create the electrical characteristics we rely on in modern technology.
What you'll learn:
- Understand crystal lattices, reciprocal space, and the fundamentals of quantum mechanics in solids
- Analyze electronic energy band structures and how they dictate material properties
- Model lattice vibrations using phonon dispersion relations and calculate heat capacity
- Apply the effective mass theorem and semiclassical equations of motion to electron transport
- Examine impurity states in semiconductors and the role of dopants in modifying conductivity
- Connect quantum theory to practical device modeling using Boltzmann transport and quasi-Fermi levels
- Explore modern solid-state concepts including low-dimensional structures and basic quantum transport
This course begins with foundational definitions of crystal structures and quantum mechanics before moving systematically into band theory, carrier transport, and semiconductor devices. Through clear written explanations and step-by-step mathematical derivations, you will build a solid intuitive grasp of the material.
This course is designed for engineering students, physical science majors, and self-directed learners looking for a clear, beginner-friendly introduction to solid-state physics. No advanced background in quantum mechanics is required, though basic physics and calculus will help you get the most out of the text.
Start your journey into the quantum foundations of modern technology today.
What you'll get
📜Certificate of completion Add it to your LinkedIn profile
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⚡Short & focused 2h 42m of practical content
Certificate of completion
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Physics of Solid-State Materials and Semiconductor Devices