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Hybrid Modernity - Mary Padua - Bog - Taylor & Francis Ltd - Plusbog.dk

Hybrid Modernity - Mary Padua - Bog - Taylor & Francis Ltd - Plusbog.dk

This book provides a detailed historical and design analysis of the development of parks and modern landscape architecture in late 20th century China. It questions whether the fusion of international influences with the local Chinese design vocabulary in late 20th century China has created a distinctive and novel approach to the design of public parks. Hybrid Modernity proposes a new theory for examining the design of public parks built in post-Mao China since the reforms and sets the various processes for China’s late 20th century socio-cultural context. Drawing on modernization theory, research on China’s modernity, local and global cultural trends, it illustrates through a range of case studies ways hybrid modernity defines a new design genre and language for the spatial forms of parks that emerged in China’s secondary cities. Featured case studies include the Living Water Park in Chengdu, Sichuan province, Zhongshan Shipyard Park in Guangdong Province, Jinji Lake Landscape Master Plan in Suzhou, Jiangsu province, and the West Lake Southern Scenic Area Master Plan in Hangzhou, Zhejiang province. This book argues that these forms represent a new stage in China’s history of landscape architecture. The work reveals that as a new profession, landscape architecture has greatly contributed to China’s massive urban experiment. This book is an ideal read for students enrolled in landscape architecture, architecture, fine arts and urban planning programs who are engaged in learning the arts and international design education.

DKK 422.00
3

Hybrid Imaging in Cardiovascular Medicine - - Bog - Taylor & Francis Ltd - Plusbog.dk

Hybrid Imaging in Cardiovascular Medicine - - Bog - Taylor & Francis Ltd - Plusbog.dk

This comprehensive book focuses on multimodality imaging technology, including overviews of the instruments and methods followed by practical case studies that highlight use in the detection and treatment of cardiovascular diseases. Chapters cover PET-CT, SPECT-CT, SPECT-MRI, PET-MRI, PET-optical imaging, SPECT-optical imaging, photoacoustic Imaging, and hybrid intravascular imaging. It also addresses the important issues of multimodality imaging probes and image quantification. Readers from radiology and cardiology as well as medical imaging and biomedical engineering will learn essentials of the field. They will be shown how the field has advanced quantitative analysis of molecularly targeted imaging through improvements in the reliability and reproducibility of imaging data. Moreover, they will be presented with quantification algorithms and case illustrations, including coverage of such topics such as multimodality image fusion and kinetic modeling. Yi-Hwa Liu, PhD is Senior Research Scientist in Cardiovascular Medicine at Yale University School of Medicine and Technical Director of Nuclear Cardiology at Yale New Haven Hospital. He is also an Associate Professor (Adjunct) of Biomedical Imaging and Radiological Sciences at National Yang-Ming University, Taipei, Taiwan, and Professor (Adjunct) of Biomedical Engineering at Chung Yuan Christian University, Taoyuan, Taiwan. He is an elected senior member of Institute of Electrical and Electronic Engineers (IEEE) and a full member of Sigma Xi of The Scientific Research Society of North America. Albert J. Sinusas, M.D., FACC, FAHA is Professor of Medicine (Section of Cardiovascular Medicine) and Radiology and Biomedical Imaging, at Yale University School of Medicine, and Director of the Yale Translational Research Imaging Center (Y-TRIC), and Director of Advanced Cardiovascular Imaging at Yale New Haven Hospital. He is a recipient of the Society of Nuclear Medicine’s Hermann Blumgart Award.

DKK 496.00
3

Hybrid Play - - Bog - Taylor & Francis Ltd - Plusbog.dk

Hybrid Power - Yatish T. Shah - Bog - Taylor & Francis Ltd - Plusbog.dk

Hybrid Simulation - - Bog - Taylor & Francis Ltd - Plusbog.dk

Resilient Hybrid Electronics for Extreme/Harsh Environments - - Bog - Taylor & Francis Ltd - Plusbog.dk

Resilient Hybrid Electronics for Extreme/Harsh Environments - - Bog - Taylor & Francis Ltd - Plusbog.dk

The success of future innovative technology relies upon a community with a shared vision. Here, we present an overview of the latest technological progress in the field of printed electronics for use in harsh or extreme environments. Each chapter unlocksscientific and engineering discoveries that will undoubtedly lead to progression from proof of concept to device creation. The main topics covered in this book include some of the most promising materials, methods, and the ability to integrate printed materials with commercial components to provide the basis for the next generation of electronics that are dubbed “survivable” in environments with high g‑forces, corrosion, vibration, and large temperature fluctuations. A wide variety of materials are discussed that contribute to robust hybrid electronics, including printable conductive composite inks, ceramics and ceramic matrix composites, polymer‑erived ceramics, thin metal films, elastomers, solders and epoxies, to name a few. Collectively, these materials and associated components are used to construct conductive traces, interconnects, antennas, pressure sensors, temperature sensors, power inducting devices, strain sensors and gauges, soft actuators, supercapacitors, piezo ionic elements, resistors, waveguides, filters, electrodes, batteries, various detectors, monitoring devices, transducers, and RF systems and graded dielectric, or graded index (GRIN) structures. New designs that incorporate the electronics as embedded materials into channels, slots and other methods to protect the electronics from the extreme elements of the operational environment are also envisioned to increase their survivability while remaining cognizant of the required frequency of replacement, reapplication and integration of power sources. Lastly, the ability of printer manufacturers, software providers and users to work together to build multi‑axis, multi‑material and commercial‑off‑the‑shelf (COTS) integration into user‑friendly systems will be a great advancement for the field of printed electronics. Therefore, the blueprint for manufacturing resilient hybrid electronics consists of novel designs that exploit the benefits of advances in additive manufacturing that are then efficiently paired with commercially available components to produce devices that exceed known constraints. As a primary example, metals can be deposited onto polymers in a variety of ways, including aerosol jetting, microdispensing, electroplating, sintering, vacuum deposition, supersonic beam cluster deposition, and plasma‑based techniques, to name a few. Taking these scientific discoveries and creatively combining them into robotic, multi‑material factories of the future could be one shared aim of the printed electronics community toward survivable device creation.

DKK 929.00
3

Hybrid Nanomaterials - - Bog - Taylor & Francis Ltd - Plusbog.dk

Hybrid Modeling in Process Industries - - Bog - Taylor & Francis Ltd - Plusbog.dk