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(Mn,Cu)3O4-based conductive coatings as effective barriers to high-temperature oxidation of metallic interconnects for solid oxide fuel cells by Waluyo, Nurhadi S.; Park, Beom-Kyeong; Lee, Seung-Bok; Lim, Tak-Hyoung; Park, Seok-Joo; Song, Rak-Hyun; Lee, Jong-Won is a Engineering article available to read on EtoBox.

What is (Mn,Cu)3O4-based conductive coatings as effective barriers to high-temperature oxidation of metallic interconnects for solid oxide fuel cells about?

Urban planning as a discipline is deeply integral to implementing a low-carbon future. This book fosters an understanding for how the rules-in-use that govern urban planning influence the ability to implement low-carbon development patterns. Drawing on the theoretical foundations of the climate governance and urban planning literatures, the book provides a context to understand plan implementation challenges and obstacles in metropolitan areas. As metropolitan regions across the globe seek to reduce emissions from transportation, many levels of governments have developed ambitious climate action plans that make land use and transportation recommendations in order to reduce vehicle miles traveled. Many have recommended low-carbon development patterns which are characterized by intensified and diversified uses around rapid transit stations. However, the implementation of these recommendations is done within the context of different "rules-in-use" unique to the planning systems in each metropolitan region. The book examines the rules-in-use in three metropolitan regions of similar demographic size: the Metro Vancouver, Puget Sound, and the Stuttgart regions. By examining the implement

Who reads (Mn,Cu)3O4-based conductive coatings as effective barriers to high-temperature oxidation of metallic interconnects for solid oxide fuel cells?

It is typically read by researchers, students, and practitioners in Engineering.

Author
Waluyo, Nurhadi S.; Park, Beom-Kyeong; Lee, Seung-Bok; Lim, Tak-Hyoung; Park, Seok-Joo; Song, Rak-Hyun; Lee, Jong-Won
Publisher
Routledge
Published
2014
Language
EN
ISBN
9781003268505
Field
Engineering (Physical Sciences)