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Progress in today's high-technology industries is strongly
associated with the development of new mathematical tools. A
typical illustration of this partnership is the mathematical
modelling and numerical simulation of electric circuits and
semiconductor devices. At the second Oberwolfach conference devoted
to this important and timely field, scientists from around the
world, mainly applied mathematicians and electrical engineers from
industry and universities, presented their new results. Their
contributions, forming the body of this work, cover electric
circuit simulation, device simulation and process simulation.
Discussions on experiences with standard software packages and
improvements of such packages are included. In the semiconductor
area special lectures were given on new modelling approaches,
numerical techniques and existence and uniqueness results. In this
connection, mention is made, for example, of mixed finite element
methods, an extension of the Baliga-Patankar technique for a three
dimensional simulation, and the connection between semiconductor
equations and the Boltzmann equations.
Progress in today's high-technology industries is strongly
associated with the development of new mathematical tools. A
typical illustration of this partnership is the mathematical
modelling and numerical simulation of electric circuits and
semiconductor devices. At the second Oberwolfach conference devoted
to this important and timely field, scientists from around the
world, mainly applied mathematicians and electrical engineers from
industry and universities, presented their new results. Their
contributions, forming the body of this work, cover electric
circuit simulation, device simulation and process simulation.
Discussions on experiences with standard software packages and
improvements of such packages are included. In the semiconductor
area special lectures were given on new modelling approaches,
numerical techniques and existence and uniqueness results. In this
connection, mention is made, for example, of mixed finite element
methods, an extension of the Baliga-Patankar technique for a three
dimensional simulation, and the connection between semiconductor
equations and the Boltzmann equations.
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