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Yu-Hsin Chang

Researcher at Chaoyang University of Technology

Publications -  38
Citations -  303

Yu-Hsin Chang is an academic researcher from Chaoyang University of Technology. The author has contributed to research in topics: Flammability & Technological evolution. The author has an hindex of 9, co-authored 36 publications receiving 199 citations. Previous affiliations of Yu-Hsin Chang include National Yunlin University of Science and Technology.

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A structural analysis approach to identify technology innovation and evolution path: a case of m-payment technology ecosystem

TL;DR: This research provides a way to develop the main path technology of innovative products or services to identify technology evolution using the case of m-payment landscape.
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Mapping the TQM implementation: An empirical investigation of the cultural dimensions with different strategic orientation in Indian firms

TL;DR: In this paper, the authors explored the relationship between cultural dimensions and the strategy of the firms in TQM implementation by using survey data collection method, 111 Indian firms were selected.
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Identifying the impact of patent family on the patent trajectory: A case of thin film solar cells technological trajectories

TL;DR: This study analyzed the technological changes in a technology domain by eliminating the effects on evolution path caused by patent families and discussed the implications of the technological path obtained from different parameters.
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A Structured MPA Approach to Explore Technological Core Competence, Knowledge Flow, and Technology Development through Social Network Patentometrics.

TL;DR: This study presents a methodology based on the proposed integrated analysis method, constructed with patent indicators, centrality analysis of social networks and main path analysis to help companies improve their decision-making quality for technology planning and enhance their research and development (R&D) portfolio efficiency.
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Fire and explosion properties examinations of toluene-methanol mixtures approached to the minimum oxygen concentration

TL;DR: In this paper, the critical fire and explosion properties stand for the explosion sensitivity (lower explosion limit), upper explosion limit (UEL)), explosion maximum indices (maximum explosion pressure (P −1) max), maximum rate of explosion pressure rise (dP − 1)max) and explosion damage degree (gas or vapor deflagration index (K − 1 g)/St Class).