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China's late Chairman Mao Zedong once said "Women hold up half the
world", but in several respects the full emancipation of women
still remains a global challenge. This book, based on extensive
empirical studies on Chinese female leaders in different fields,
develops a "female professional status attainment theory". It
summarizes the conditions for Chinese women to become leaders in
various professions as the following: increased human, economic and
social capital; gender equality awareness; gender-friendly
environment; and improved work-life-balance. The book also proposes
supporting policies for the development of high-level female
talents female leaders in three different sectors: women in
politics, in professional fields, and in enterprise management.
With the comprehensive perspectives of female leaders' development
that addresses women's unique needs in organizations, this book is
a good choice for researchers and readers who are interested in
China's top-level talent development, gender equality and women's
professional attainment.
This book presents a comprehensive overview of state-of-the-art
quantum dot photodetectors, including device fabrication
technologies, optical engineering/manipulation strategies, and
emerging photodetectors with building blocks of novel quantum dots
(e.g. perovskite) as well as their hybrid structured (e.g. 0D/2D)
materials. Semiconductor quantum dots have attracted much attention
due to their unique quantum confinement effect, which allows for
the facile tuning of optical properties that are promising for
next-generation optoelectronic applications. Among these remarkable
properties are large absorption coefficient, high photosensitivity,
and tunable optical spectrum from ultraviolet/visible to infrared
region, all of which are very attractive and favorable for
photodetection applications. The book covers both fundamental and
frontier research in order to stimulate readers' interests in
developing novel ideas for semiconductor photodetectors at the
center of future developments in materials science, nanofabrication
technology and device commercialization. The book provides a
knowledge sharing platform and can be used as a reference for
researchers working in the fields of photonics, materials science,
and nanodevices.
China's late Chairman Mao Zedong once said "Women hold up half the
world", but in several respects the full emancipation of women
still remains a global challenge. This book, based on extensive
empirical studies on Chinese female leaders in different fields,
develops a "female professional status attainment theory". It
summarizes the conditions for Chinese women to become leaders in
various professions as the following: increased human, economic and
social capital; gender equality awareness; gender-friendly
environment; and improved work-life-balance. The book also proposes
supporting policies for the development of high-level female
talents female leaders in three different sectors: women in
politics, in professional fields, and in enterprise management.
With the comprehensive perspectives of female leaders' development
that addresses women's unique needs in organizations, this book is
a good choice for researchers and readers who are interested in
China's top-level talent development, gender equality and women's
professional attainment.
This book outlines various synthetic approaches, tuneable physical
properties, and device applications of core/shell quantum dots
(QDs). Core/shell QDs have exhibited enhanced quantum yield (QY),
suppressed photobleaching/blinking, and significantly improved
photochemical/physical stability as compared to conventional bare
QDs. The core-shell structure also promotes the easy tuning of QDs'
band structure, leading to their employment as attractive building
blocks in various optoelectronic devices. The main objective of
this book is to create a platform for knowledge sharing and
dissemination of the latest advances in novel areas of core/shell
QDs and relevant devices, and to provide a comprehensive
introduction and directions for further research in this growing
area of nanomaterials research.
This book outlines various synthetic approaches, tuneable physical
properties, and device applications of core/shell quantum dots
(QDs). Core/shell QDs have exhibited enhanced quantum yield (QY),
suppressed photobleaching/blinking, and significantly improved
photochemical/physical stability as compared to conventional bare
QDs. The core-shell structure also promotes the easy tuning of QDs'
band structure, leading to their employment as attractive building
blocks in various optoelectronic devices. The main objective of
this book is to create a platform for knowledge sharing and
dissemination of the latest advances in novel areas of core/shell
QDs and relevant devices, and to provide a comprehensive
introduction and directions for further research in this growing
area of nanomaterials research.
Civil Engineering and Urban Planning IV includes the papers
presented at the 4th International Conference on Civil Engineering
and Urban Planning (CEUP 2015, Beijing, China, 25-27 July 2015).
The contributions from experts and world-renowned scientists cover
a wide variety of topics: - Civil engineering; - Architecture and
urban planning; - Transportation engineering; - Geomatics; -
Natural hazards and risk, and - Rock mechanics and rock
engineering. Civil Engineering and Urban Planning IV will appeal to
professionals and academics involved in the above mentioned areas.
This book presents a comprehensive overview of state-of-the-art
quantum dot photodetectors, including device fabrication
technologies, optical engineering/manipulation strategies, and
emerging photodetectors with building blocks of novel quantum dots
(e.g. perovskite) as well as their hybrid structured (e.g. 0D/2D)
materials. Semiconductor quantum dots have attracted much attention
due to their unique quantum confinement effect, which allows for
the facile tuning of optical properties that are promising for
next-generation optoelectronic applications. Among these remarkable
properties are large absorption coefficient, high photosensitivity,
and tunable optical spectrum from ultraviolet/visible to infrared
region, all of which are very attractive and favorable for
photodetection applications. The book covers both fundamental and
frontier research in order to stimulate readers' interests in
developing novel ideas for semiconductor photodetectors at the
center of future developments in materials science, nanofabrication
technology and device commercialization. The book provides a
knowledge sharing platform and can be used as a reference for
researchers working in the fields of photonics, materials science,
and nanodevices.
Image-based rendering (IBR) is unique in that it requires computer
graphics, computer vision, and image processing to join forces to
solve a common goal, namely photorealistic rendering through the
use of images. IBR as an area of research has been around for about
ten years, and substantial progress has been achieved in
effectively capturing, representing, and rendering scenes.
Image-Based Rendering surveys the various techniques used in the
area. It shows that representations and rendering techniques can
differ radically, depending on design decisions related to ease of
capture, use of geometry, accuracy of geometry (if used), number
and distribution of source images, degrees of freedom for virtual
navigation, and expected scene complexity.It is an invaluable
resource for anyone planning or conducting research in this
particular area, or computer graphics or vision generally. The
essentials of the topic are presented in an accessible manner and
an extensive bibliography guides towards further reading.
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