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Experimental and theoretical aspects of crystal growth and its
applications, e.g. in devices, are within the scope of these new
books . Experimental and theoretical contributions are included in
the following fields: theory of nucleation and growth, molecular
kinetics and transport phenomena, crystallisation in viscous media
such as polymers and glasses; crystal growth of metals, minerals,
semiconductors, superconductors, magnetics, inorganic, organic and
biological substances in bulk or as thin films; molecular beam
epitaxy, chemical vapour deposition, growth of III-V and II-VI and
other semiconductors; characterisation of single crystals by
physical and chemical methods; apparatus, instrumentation and
techniques for crystal growth, and purification methods;
multi-layer heterostructures and their characterisation with an
emphasis on crystal growth and epitaxial aspects of electronic
materials.
Experimental and theoretical aspects of crystal growth and its
applications, e.g. in devices, are within the scope of these new
books . Experimental and theoretical contributions are included in
the following fields: theory of nucleation and growth, molecular
kinetics and transport phenomena, crystallisation in viscous media
such as polymers and glasses; crystal growth of metals, minerals,
semiconductors, superconductors, magnetics, inorganic, organic and
biological substances in bulk or as thin films; molecular beam
epitaxy, chemical vapour deposition, growth of III-V and II-VI and
other semiconductors; characterisation of single crystals by
physical and chemical methods; apparatus, instrumentation and
techniques for crystal growth, and purification methods;
multi-layer heterostructures and their characterisation with an
emphasis on crystal growth and epitaxial aspects of electronic
materials.
Experimental and theoretical aspects of crystal growth and its
applications, e.g. in devices, are within the scope of these new
books. Experimental and theoretical contributions are included in
the following fields: theory of nucleation and growth, molecular
kinetics and transport phenomena, crystallisation in viscous media
such as polymers and glasses; crystal growth of metals, minerals,
semiconductors, superconductors, magnetics, inorganic, organic and
biological substances in bulk or as thin films; molecular beam
epitaxy, chemical vapour deposition, growth of III-V and II-VI and
other semiconductors; characterisation of single crystals by
physical and chemical methods; apparatus, instrumentation and
techniques for crystal growth, and purification methods; and
multilayer heterostructures and their characterisation with an
emphasis on crystal growth and epitaxial aspects of electronic
materials.
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