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This book explores the scientific basis of the photovoltaic effect,
solar cell operation, various types of solar cells, and the main
process used in their manufacture. It addresses a range of topics,
including the production of solar silicon; silicon-based solar
cells and modules; the choice of semiconductor materials and their
production-relevant costs and performance; device structures,
processing, and manufacturing options for the three major thin-film
PV technologies; high-performance approaches for multi-junction,
concentrator, and space applications; and new types of organic
polymer and dye-sensitized solar cells. The book also presents a
concept for overcoming the efficiency limit of today's solar cells.
Accessible for beginners, while also providing detailed information
on the physics and technology for experts, the book is a valuable
resource for researchers, engineers, and graduate students in
fields such as physics, materials, energy, electrical and
electronic engineering and microelectronics.
This book is a collection of papers presented at the Forum The
Impact of Applications on Mathematics in October 2013. It describes
an appropriate framework in which to highlight how real-world
problems, over the centuries and today, have influenced and are
influencing the development of mathematics and thereby, how
mathematics is reshaped, in order to advance mathematics and its
application. The contents of this book address productive and
successful interaction between industry and mathematicians, as well
as the cross-fertilization and collaboration that result when
mathematics is involved with the advancement of science and
technology."
This book systematically introduces physical characteristics and
implementations of III-nitride wide bandgap semiconductor materials
and electronic devices, with an emphasis on high-electron-mobility
transistors (HEMTs). The properties of nitride semiconductors make
the material very suitable for electronic devices used in microwave
power amplification, high-voltage switches, and high-speed digital
integrated circuits.
This book systematically introduces physical characteristics and
implementations of III-nitride wide bandgap semiconductor materials
and electronic devices, with an emphasis on high-electron-mobility
transistors (HEMTs). The properties of nitride semiconductors make
the material very suitable for electronic devices used in microwave
power amplification, high-voltage switches, and high-speed digital
integrated circuits.
This volume includes selected technical papers presented at the
Forum "Math-for-Industry" 2018. The papers written by eminent
researchers and academics working in the area of industrial
mathematics from the viewpoint of financial mathematics, machine
learning, neural networks, inverse problems, stochastic modelling,
etc., discuss how the ingenuity of science, technology, engineering
and mathematics are and will be expected to be utilized. This
volume focuses on the role that mathematics-for-industry can play
in interdisciplinary research to develop new methods. The contents
are useful for researchers both in academia and industry working in
interdisciplinary sectors.
This book explores the scientific basis of the photovoltaic effect,
solar cell operation, various types of solar cells, and the main
process used in their manufacture. It addresses a range of topics,
including the production of solar silicon; silicon-based solar
cells and modules; the choice of semiconductor materials and their
production-relevant costs and performance; device structures,
processing, and manufacturing options for the three major thin-film
PV technologies; high-performance approaches for multi-junction,
concentrator, and space applications; and new types of organic
polymer and dye-sensitized solar cells. The book also presents a
concept for overcoming the efficiency limit of today's solar cells.
Accessible for beginners, while also providing detailed information
on the physics and technology for experts, the book is a valuable
resource for researchers, engineers, and graduate students in
fields such as physics, materials, energy, electrical and
electronic engineering and microelectronics.
This volume includes selected technical papers presented at the
Forum "Math-for-Industry" 2018. The papers written by eminent
researchers and academics working in the area of industrial
mathematics from the viewpoint of financial mathematics, machine
learning, neural networks, inverse problems, stochastic modelling,
etc., discuss how the ingenuity of science, technology, engineering
and mathematics are and will be expected to be utilized. This
volume focuses on the role that mathematics-for-industry can play
in interdisciplinary research to develop new methods. The contents
are useful for researchers both in academia and industry working in
interdisciplinary sectors.
This book comprises select proceedings of the workshop “Practical
inverse problems and their prospects” held online by zoom, from
Mar 2nd to Mar. 4th, 2022, supported by Institute of Mathematics
for Industry, Kyushu University focusing on cutting-edge research
carried out in the areas of practical inverse problems based on
industry-academia and interdisciplinary collaborations. Various
themes on practical inverse problems covered in this book
are medical imaging, non-destructive and non-invasive
inspections, viscoelastic waves, remote sensing, infrared
light tomography, maintenance of infrastructure, and so on,
and mathematical theories in inverse problems are also
handled in these proceedings. All papers in this book are written
by qualified authors in the practical inverse problems area and
also the papers are newly announced. Readers can get leading-edge
information on practical inverse problems.
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