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Written by internationally recognized experts in the field with
academic as well as industrial experience, this book concisely yet
systematically covers all aspects of the topic. The monograph
focuses on the optoelectronic behavior of organic solids and their
application in new optoelectronic devices. It covers organic
field-effect and organic electroluminescent materials and devices,
organic photonics, materials and devices, as well as organic solids
in photo absorption and energy conversion. Much emphasis is laid on
the preparation of functional materials and the fabrication of
devices, from materials synthesis and purification, to
physicochemical properties and the basic processes and working
principles of the devices. The only book to cover fundamentals,
applications, and the latest research results, this is a handy
reference for both researchers and those new to the field. From the
contents: * Electronic process in organic solids *
Organic/polymeric semiconductors for field-effect transistors *
Organic/polymeric field-effect transistors * Organic circuits and
organic single molecular transistors * Polymer light-emitting
Diodes (PLEDs): devices and materials * Organic solids for
photonics * Organic photonic devices * Organic solar cells based on
small molecules * Polymer solar cells * Dye-sensitized solar cells
(DSSCs) * Organic thermoelectric power devices
This book is a short introduction to the engineering principles of
harnessing the vast potential of microorganisms, and animal and
plant cells in making biochemical products. It was written for
scientists who have no background in engineering, and for engineers
with minimal background in biology. The overall subject dealt with
is process. But the coverage goes beyond the process of
biomanufacturing in the bioreactor, and extends to the factory of
cell s biosynthetic machinery. Starting with an overview of
biotechnology and organism, engineers are eased into biochemical
reactions and life scientists are exposed to the technology of
production using cells. Subsequent chapters allow engineers to be
acquainted with biochemical pathways, while life scientist learn
about stoichiometric and kinetic principles of reactions and cell
growth. This leads to the coverage of reactors, oxygen transfer and
scale up. Following three chapters on biomanufacturing of current
and future importance, i.e. cell culture, stem cells and synthetic
biology, the topic switches to product purification, first with a
conceptual coverage of operations used in bioseparation, and then a
more detailed analysis to provide a conceptual understanding of
chromatography, the modern workhorse of bioseparation. Drawing on
principles from engineering and life sciences, this book is for
practitioners in biotechnology and bioengineering. The author has
used the book for a course for advanced students in both
engineering and life sciences. To this end, problems are provided
at the end of each chapter.
Regulators of the Cell Cycle: Protein Phosphorylation and the
Regulation of Key Events in Oocyte and Egg Cell Cycles; J.L.
Maller. Control of Cell Proliferation: Extracellular
Signal-Regulated Protein Kinases 1,2, and 3; D.J. Robbins, et al.
Cell Cycle Control of Gene Expression and Repair: Histone Gene
Transcription During the Cell Cycle; F. LaBella, et al. Mitosis:
Induction and Mechanics: The Localization of Human Cyclins and CDKs
in the Cell Cycle; J. Pines. Cell Cycle Regulation in Development:
Cell Proliferation as a Biomarker of Age and Development; M.H. Lu,
et al. Roll of the Cell Cycle in Disease: Molecules of Deregulated
Cell Cycle Control in Cancer; A.B. Pardee, et al. Clinical
Applications: The Involvement of the Cell Cycle in Apoptosis; A.
Eastman, et al. 41 additional articles. Index.
An extensive text reference includes around an asteroid a new and
important topic Covers the most updated contents in spacecraft
dynamics and control, both in theory and application Introduces the
application to motion around asteroids a new and important topic
Written by a very experienced researcher in this area
This book focuses on the emerging and expanding areas of research
on ASD and their potential to lead to better diagnosis and more
effective therapies. These areas include innovative and integrative
approaches to genetic/genomic analyses and investigations of
epigenetic contributions, including the role of noncoding RNAs, DNA
methylation, alternative splicing, RNA editing, and faulty
translation in gene regulation and expression, metabolic and immune
dysfunction, co-morbidities, as well as hormonal and
gene-environment interactions that may increase risk for ASD.Within
each chapter, experts review cutting-edge research as well as
provide their perspective on the future of research in their
respective areas, including the challenges involved and the types
of studies or advances that are necessary to move the field forward
to achieve predicted translational goals.Contributors: Argel
Aguilar-Valles, Evdokia Anagnostou, Emma Ashwin, Bonnie Auyeung,
Kelly M Bakulski, Simon Baron-Cohen, Margaret L Bauman, Donna
Betts, Chad A Bousman, Daniel B Campbell, Manuel F Casanova,
Bhismadev Chakrabarti, Gursharan Chana, Abha Chauhan, Ved Chauhan,
Jessica DeWitt, Keith W Dunaway, Alal Eran, Ian P Everall, M
Daniele Fallin, Richard E Frye, Piers Gillett, Matthew Ginsberg,
Christos G Gkogkas, Rhonda J Greenhaw, Simon G Gregory, Elena L
Grigorenko, Feng Gu, Rebecca Harmer, Martha Herbert, Valerie W Hu,
Karen L Jones, Petra Kern, Arkady Khoutorsky, Rebecca Knickmeyer,
Isaac S Kohane, Louis M Kunkel, Janine M LaSalle, Michael V
Lombardo, Deepali Mankad, Marvin Natowicz, Laura Nicholls, Christos
Pantelis, Natalia Rakhlin, Radhika Ramadas, Daniel A Rossignol,
Tewarit Sarachana, Stephen W Scherer, Gabriela Schmulevich, Ayten
Shah, Frank R Sharp, Alison B Singer, Efstratios Skafidas, Estate M
Sokhadze, Nahum Sonenberg, Boryana Stamova, Zohreh Talebizadeh,
Renee Testa, Judy Van de Water, Irina Voineagu, Daniel Williams,
Ryan K C Yuen, Daniela Zantomio.
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