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Showing items 21-30 of 180  (18 Page(s) Totally)
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Institution Date Title Author
元智大學 Feb-15 Real time interior water and thermal monitoring of fuel cell with micro 3-in-1 sensor Chi-Yuan Lee; Li-Hsing Fang; Ay Su; Yun-Min Liu; Chung-Ju Lee
元智大學 Dec-16 Design and Performance Evaluation of a PEM Fuel Cell and Lithium Battery and Supercapacitor Hybrid Power Source for Electric Forklifts Hsieh, C.-Y.; Nguyen, X.-V.,; Fangbor Weng; Kuo, T.-W.,; Huang, Z.-M.; Ay Su
元智大學 Dec-16 Design and Performance Evaluation of a PEM Fuel Cell and Lithium Battery and Supercapacitor Hybrid Power Source for Electric Forklifts Hsieh, C.-Y.; Nguyen, X.-V.,; Fangbor Weng; Kuo, T.-W.,; Huang, Z.-M.; Ay Su
元智大學 Dec-14 Numerical analysis of the manipulated high performance catalyst layer design for proton exchange membrane fuel cells 楊添福 TF Yang; C.H. Cheng; Ay Su; Tzyy-Lung Yu; L-W Hourng
元智大學 Aug-15 High-Performance MEA Prepared by Direct Deposition of Platinum on the Gas Diffusion Layer Using an Atomic Layer Deposition Technique T. Shu; D. Dang; D.-W Xu; R. Chen; S.-J. Liao; Chien-Te Hsieh; Ay Su; H.-Y. Song; L. Du
元智大學 Aug-15 High-Performance MEA Prepared by Direct Deposition of Platinum on the Gas Diffusion Layer Using an Atomic Layer Deposition Technique T. Shu; D. Dang; D.-W Xu; R. Chen; S.-J. Liao; Chien-Te Hsieh; Ay Su; H.-Y. Song; L. Du
元智大學 Aug-15 A Study of Simulation Analysis of Emulsified Heavy Oil Agitation Preparation Production Technology W. Chen; Ay Su; S. Wang
元智大學 Aug-15 High-Performance MEA Prepared by Direct Deposition of Platinum on the Gas Diffusion Layer Using an Atomic Layer Deposition Technique T. Shu; D. Dang; D.-W Xu; R. Chen; S.-J. Liao; Chien-Te Hsieh; Ay Su; H.-Y. Song; L. Du
元智大學 Aug-15 A Study of Simulation Analysis of Emulsified Heavy Oil Agitation Preparation Production Technology W. Chen; Ay Su; S. Wang
元智大學 Apr-20 The Catalyst Loading Effects on the Feed Rate of NaBH4 Solution for the Hydrogen Production Rate and Conversion Efficiency Leu, J. H.; Ay Su; Sun, J. K.; Huang, Z. M.

Showing items 21-30 of 180  (18 Page(s) Totally)
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