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Sökning: WFRF:(Lin J) > Bokkapitel

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1.
  • Field, Christopher B., et al. (författare)
  • Summary for Policymakers
  • 2014
  • Ingår i: Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part A: Global and SectoralAspects.. - 9781107415379 ; , s. 1-32
  • Bokkapitel (refereegranskat)
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3.
  • Liao, Hua-Fang, et al. (författare)
  • Development of the FUNDES-Child and its implications for the education of Taiwanese children
  • 2018
  • Ingår i: An emerging approach for education and care. - London : Routledge. - 9781138698178 - 9781315519692 ; , s. 85-110
  • Bokkapitel (refereegranskat)abstract
    • Children and youth with special needs from age two to 18 years in Taiwan receive evaluation and services from both the Ministry of Health and Welfare and the Ministry of Education based on the People with Disabilities Rights Protection Act (Ministry of Health and Welfare, 2007) and the Special Education Act (Ministry of Education, 2014). On the basis of the earlier two acts, those children could apply for Disability Identification to receive related services, which are provided by the local social welfare department, and could also apply for special education services provided by the local educational department if they are going to attend preschool or higher-level school (both public and private). Special education placements range widely, from inclusion in regular classes in school to segregated setting in special education schools.
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4.
  • Wu, Y., et al. (författare)
  • Electrolyte-free fuel cell : Principles and crosslink research
  • 2020
  • Ingår i: Solid Oxide Fuel Cells. - : Wiley. ; , s. 347-378
  • Bokkapitel (refereegranskat)abstract
    • Semiconductors and the associated methodologies applied to electrochemistry have recently grown as an emerging field in energy materials and technologies. Fuel cells have been developed in line with traditional electrochemistry employing three basic functional components: anode, electrolyte and cathode. The electrolyte is a key component to the device performance by providing an ionic charge flow pathway between the anode and cathode but preventing electron conduction. By contrast, semiconductors and the derived heterostructures with electronic (hole) conducting materials have been strongly developed with much better ionic conductors instead of a conventional ionic electrolyte for novel fuel cells. Energy band structures and alignments, band-bending and built-in-field are all important parameters in this context to accomplish the necessary fuel cell functionalities. This chapter extends widely the semiconductor-based electrochemical energy conversion and storage technologies, describing their fundamentals and working principles, with an intention to advance the understanding of the semiconductors and energy bands role in electrochemical devices of energy conversion and storage, as well as applications for emerging demands, widely involving in energy applications, such as photo catalysis/water splitting; battery and solar cell etc. It provides new ideas and new solutions to the problems beyond the conventional electrochemistry and presents new inter-disciplinary approaches to develop clean energy conversion and storage technologies.
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