Problems And
Solutions In Solid State Physics
provides a practical approach to
consolidate one's acquired knowledge or to
learn new concepts in solid state physics
through solving problems. It contains 300
problems on various subjects of solid
state physics. The problems in this book
can be used as homework assignments in an
introductory or advanced course on solid
state physics for undergraduate or
graduate students.
We are pleased to
introduce this forthcoming title that
may interest you. For a limited time,
you can get your copy at a special 30% discount
from our online bookstore. Enter
discount code as WSPCCELEBRATES
as you pre-order. This offer is valid
from now until 10 September, 2011.
Please recommend this important title to
your library and colleagues or request
for an inspection copy.
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PROBLEMS AND SOLUTIONS IN
SOLID STATE PHYSICS
by Fuxiang Han (Dalian
University of Technology, China)
500pp (approx.)
978-981-4365-02-4: US$120 / £79
US$84 / £55.30
978-981-4366-87-8(pbk): US$68 / £45
US$47.60 /
£31.50
It can also serve
as a desirable reference book to solve
typical problems and grasp mathematical
techniques in solid state physics. In
practice, it is regarded fascinating and
rewarding to learn a new idea or
technique through solving a real
challenging problem than through reading
only. In this aspect, this book is not a
plain collection of problems but it
presents a large number of
problem-solving ideas and procedures,
some of which are valuable to
practitioners in condensed matter
physics.
Contents:
- Drude Theory of Metals
- Sommerfeld Theory of Metals
- Bravais Lattice
- Point Groups
- Classification of Bravais Lattices
- Space Groups of Crystal Structures
- Scattering of X-Rays by a Crystal
- Reciprocal Lattice
- X-Ray Diffraction on Crystals
- Crystal Structure by Neutron
Diffraction
- Bonding in Solids
- Cohesion of Solids
- Normal Modes of Lattice Vibrations
- Quantum Theory of Lattice Vibrations
- Inelastic Neutron Scattering by
Phonons
- Origin of Electronic Energy Bands
- Electrons in a Weak Periodic
Potential
- Methods for Band Structure
Computations
- Dynamics of Bloch Electrons in
Electric Fields
- Fundamentals of Semiconductors
- Density Functional Theory
- Pseudopotentials
- Projector-Augmented Plane-Wave
Method
- Determination of Electronic Band
Structures
- Crystal Defects
- Electron-Phonon Interaction
- Transport Properties of Solids
- Magnetic Properties of Solids
- Optical Properties of Solids
- Superconductivity
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**Available elsewhere in Dec 2011
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