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Article type: Cover
2009 Volume 31 Issue 2 Pages
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Article type: Appendix
2009 Volume 31 Issue 2 Pages
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Article type: Index
2009 Volume 31 Issue 2 Pages
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Article type: Index
2009 Volume 31 Issue 2 Pages
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Yoshifumi SHIBATA
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2009 Volume 31 Issue 2 Pages
93-94
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Yoshifumi SHIBATA
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2009 Volume 31 Issue 2 Pages
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Fumiaki HARADA
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2009 Volume 31 Issue 2 Pages
101-107
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Shigeru TAMAZAWA
Article type: Article
2009 Volume 31 Issue 2 Pages
108-113
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Mitsuo HASEBE
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2009 Volume 31 Issue 2 Pages
114-119
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Kenji KAWAUCHI
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2009 Volume 31 Issue 2 Pages
120-125
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Terumasa MATSUMOTO, Suguru KAWAI
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2009 Volume 31 Issue 2 Pages
126-131
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Takeshi KOBAYASHI, Mihoko IGARASHI, Kazumasa MIKAMI
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2009 Volume 31 Issue 2 Pages
132-137
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Akira MOTOYAMA, Toshinari MATSUOKA
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2009 Volume 31 Issue 2 Pages
138-143
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Masanori YAMAMOTO
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2009 Volume 31 Issue 2 Pages
144-153
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Nobuyuki TAHARA
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2009 Volume 31 Issue 2 Pages
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Article type: Appendix
2009 Volume 31 Issue 2 Pages
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2009 Volume 31 Issue 2 Pages
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Shuuichi OHTA, Kazuyuki SUZUKI
Article type: Article
2009 Volume 31 Issue 2 Pages
165-180
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Attaining to the early 21^<st> century, we are facing with a problem to establish a sustainable recycling society. Since WEEE and RoHS directives were implemented, the ecological compliance of electronic equipments has being more effective. Searching for the reliability prediction of reused electronic circuit boards from the point of reliability technology, a method which is enable to predict a reuse reliability more accurate than the traditional procedure of MIL-HDBK-217 is developed through design, manufacturing, operation, discard (recycle), environment, degradation variables and performance functions which represent characteristics of the system. Using the proposed method, the reuse conscious design of product will become easy. This contributes to an establishment of sustainable and recycling society.
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2009 Volume 31 Issue 2 Pages
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Article type: Cover
2009 Volume 31 Issue 2 Pages
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