Electronic Materials Science
Modern science and technology requires highly trained materials scientists who can func-
tion in diverse areas such as metallurgy,biology,ceramics,electronics,and optics,to name
several fields.It is clear that there are many commonalities in the fields.For example,for
all solid state materials,structure with all its implications is important.For biology,mol-
ecular structure is more important than is electronic energy band structure at this junc-
ture in development. That is not to say that with the development of biomaterials and
nanotechnology the future will bring bio-inspired electronic and optical devices. For
many fields structural defects are important as are mechanical properties. For the fields
of electronics and optics, electronic structure and properties are fundamental to under-
stand the resulting devices.However,defects and mechanical interactions are also crucial.
Thus topics in this text were chosen more as a matter ofpracticality,in that to adequately
cover all areas ofimportance to electronic materials would result in an impractically large
text. Careful choices had to be made in selecting the most germane material for elec-
tronic materials science.
Ramon A. Carmona C
C,I 17646653
CRF
http://media.wiley.com/product_data/excerpt/71/04716959/0471695971.pdf
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