Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming
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Abstract
Individual chapters are listed in the "Chapters" tab
Suggested Citation
DOI: 10.1007/978-1-84882-937-4
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Book Chapters
The following chapters of this book are listed in IDEAS- E. A. B. Cole, 2009. "Overview of device modelling," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 3-20, Springer.
- E. A. B. Cole, 2009. "Quantum mechanics," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 21-87, Springer.
- E. A. B. Cole, 2009. "Equilibrium thermodynamics and statistical mechanics," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 89-113, Springer.
- E. A. B. Cole, 2009. "Density of states and applications—1," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 115-142, Springer.
- E. A. B. Cole, 2009. "Density of states and applications—2," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 143-159, Springer.
- E. A. B. Cole, 2009. "The transport equations and the device equations," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 161-185, Springer.
- E. A. B. Cole, 2009. "Basic approximation and numerical methods," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 189-219, Springer.
- E. A. B. Cole, 2009. "Fermi and associated integrals," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 221-228, Springer.
- E. A. B. Cole, 2009. "The upwinding method," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 229-245, Springer.
- E. A. B. Cole, 2009. "Solution of equations: the Newton and reduced method," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 247-258, Springer.
- E. A. B. Cole, 2009. "Solution of equations: the phaseplane method," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 259-282, Springer.
- E. A. B. Cole, 2009. "Solution of equations: the multigrid method," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 283-301, Springer.
- E. A. B. Cole, 2009. "Approximate and numerical solutions of the Schrödinger equation," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 303-337, Springer.
- E. A. B. Cole, 2009. "Genetic algorithms and simulated annealing," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 339-376, Springer.
- E. A. B. Cole, 2009. "Grid generation," Springer Books, in: Mathematical and Numerical Modelling of Heterostructure Semiconductor Devices: From Theory to Programming, chapter 0, pages 377-387, Springer.
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