| 元智大學 |
Sep-15 |
Electrochemical Performance and Long-Term Durability of a Reversible Solid Oxide Fuel Cell
|
方立行; Guo-Bin Jung; Cheng-You Lin; Xuan-Vien Nguyen; Chia-Chen Yeh; Chi-Yuan Lee; Jyun-Wei Yu; Shih-Hung Chan; Win-Tai Lee; Shu-Wei Chang; I-Cheng Kao |
| 元智大學 |
Sep-15 |
Electrochemical Performance and Long-Term Durability of a Reversible Solid Oxide Fuel Cell
|
方立行; Guo-Bin Jung; Cheng-You Lin; Xuan-Vien Nguyen; Chia-Chen Yeh; Chi-Yuan Lee; Jyun-Wei Yu; Shih-Hung Chan; Win-Tai Lee; Shu-Wei Chang; I-Cheng Kao |
| 元智大學 |
Sep-15 |
Electrochemical Performance and Long-Term Durability of a Reversible Solid Oxide Fuel Cell
|
方立行; Guo-Bin Jung; Cheng-You Lin; Xuan-Vien Nguyen; Chia-Chen Yeh; Chi-Yuan Lee; Jyun-Wei Yu; Shih-Hung Chan; Win-Tai Lee; Shu-Wei Chang; I-Cheng Kao |
| 元智大學 |
Sep-15 |
Electrochemical Performance and Long-Term Durability of a Reversible Solid Oxide Fuel Cell
|
方立行; Guo-Bin Jung; Cheng-You Lin; Xuan-Vien Nguyen; Chia-Chen Yeh; Chi-Yuan Lee; Jyun-Wei Yu; Shih-Hung Chan; Win-Tai Lee; Shu-Wei Chang; I-Cheng Kao |
| 元智大學 |
Dec-16 |
Study of sealants for SOFC
|
阮春圓; Chang-Tsair Chang ; Guo-Bin Jung; Shih-Hung Chan; Win-Tai Lee; Shu-Wei Chang; I-Cheng Kao |
| 元智大學 |
Dec-16 |
Study of reversible solid oxide fuel cell with different oxygen electrode materials
|
Guo-Bin Jung; Chang-Tsair Chang ; Chia-Chen Yeh ; Xuan-Vien Nguyen; Shih-Hung Chan ; Cheng-You Lin; Jyun-Wei Yu; Win-Tai Lee ; Shu-Wei Chang; I-Cheng Kao |
| 元智大學 |
Dec-16 |
Study of reversible solid oxide fuel cell with different oxygen electrode materials
|
Guo-Bin Jung; Chang-Tsair Chang ; Chia-Chen Yeh ; Xuan-Vien Nguyen; Shih-Hung Chan ; Cheng-You Lin; Jyun-Wei Yu; Win-Tai Lee ; Shu-Wei Chang; I-Cheng Kao |
| 元智大學 |
Dec-16 |
Study of sealants for SOFC
|
阮春圓; Chang-Tsair Chang ; Guo-Bin Jung; Shih-Hung Chan; Win-Tai Lee; Shu-Wei Chang; I-Cheng Kao |
| 臺大學術典藏 |
2022-09-21T23:30:07Z |
Encoding protein dynamic information in graph representation for functional residue identification
|
Chiang, Yuan; Hui, Wei Han; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-09-21T23:30:06Z |
Predicting pullout strength of pedicle screws in broken bones from X-ray images
|
Tsai, Ya Yun; Hsieh, Ming Kai; Lai, Po Liang; Tai, Ching Lung; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-05-21T23:35:55Z |
Corrigendum: ImageMech: From Image to Particle Spring Network for Mechanical Characterization(Front. Mater., (2022), 8, (803875), 10.3389/fmats.2021.803875)
|
Chiang, Yuan; TING-WAI CHIU; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-04-21T23:17:17Z |
The Role of Cross-Linkers in the Mechanical Responses of Gold Nanoparticle Assemblies
|
Yeh, Kai Chih; Tsai, Ya Yun; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:10Z |
Fat-bone relationship in chronic kidney disease—mineral bone disorders: Adiponectin is associated with skeletal events among hemodialysis patients
|
Chen P.-C;Chang S.-W;Hsieh C.-Y;Liou J.-C;Chang J.-F;Wang T.-M.; Chen P.-C; Chang S.-W; Hsieh C.-Y; Liou J.-C; Chang J.-F; Wang T.-M.; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:10Z |
Fat-bone relationship in chronic kidney disease—mineral bone disorders: Adiponectin is associated with skeletal events among hemodialysis patients
|
Chen P.-C;Chang S.-W;Hsieh C.-Y;Liou J.-C;Chang J.-F;Wang T.-M.; Chen P.-C; Chang S.-W; Hsieh C.-Y; Liou J.-C; Chang J.-F; Wang T.-M.; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:10Z |
Computational insights into the substrate recognition mechanism of cartilage extracellular matrix degradation
|
Lai Y.-Y;Li D;Chang S.-W.; Lai Y.-Y; Li D; Chang S.-W.; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:10Z |
Computational insights into the substrate recognition mechanism of cartilage extracellular matrix degradation
|
Lai Y.-Y;Li D;Chang S.-W.; Lai Y.-Y; Li D; Chang S.-W.; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:10Z |
Circulating p-cresyl sulfate, non-hepatic alkaline phosphatase and risk of bone fracture events in chronic kidney disease-mineral bone disease
|
Chang J.-F;Hsieh C.-Y;Liou J.-C;Lu K.-C;Zheng C.-M;Wu M.-S;Chang S.-W;Wang T.-M;Wu C.-C.; Chang J.-F; Hsieh C.-Y; Liou J.-C; Lu K.-C; Zheng C.-M; Wu M.-S; Chang S.-W; Wang T.-M; Wu C.-C.; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:10Z |
Circulating p-cresyl sulfate, non-hepatic alkaline phosphatase and risk of bone fracture events in chronic kidney disease-mineral bone disease
|
Chang J.-F;Hsieh C.-Y;Liou J.-C;Lu K.-C;Zheng C.-M;Wu M.-S;Chang S.-W;Wang T.-M;Wu C.-C.; Chang J.-F; Hsieh C.-Y; Liou J.-C; Lu K.-C; Zheng C.-M; Wu M.-S; Chang S.-W; Wang T.-M; Wu C.-C.; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:09Z |
Molecular interaction mechanisms of glycol chitosan self-healing hydrogel as a drug delivery system for gemcitabine and doxorubicin
|
Huang T.-H;Hsu S.-H;Chang S.-W.; Huang T.-H; Hsu S.-H; Chang S.-W.; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:09Z |
Mechanical properties and deformation mechanisms in CoCrFeMnNi high entropy alloys: A molecular dynamics study
|
Chen K.-T;Wei T.-J;Li G.-C;Chen M.-Y;Chen Y.-S;Chang S.-W;Yen H.-W;Chen C.-S.; Chen K.-T; Wei T.-J; Li G.-C; Chen M.-Y; Chen Y.-S; Chang S.-W; Yen H.-W; Chen C.-S.; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:09Z |
ImageMech: From Image to Particle Spring Network for Mechanical Characterization
|
Chiang Y;Chiu T.-W;Chang S.-W.; Chiang Y; Chiu T.-W; Chang S.-W.; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:09Z |
Molecular interaction mechanisms of glycol chitosan self-healing hydrogel as a drug delivery system for gemcitabine and doxorubicin
|
Huang T.-H;Hsu S.-H;Chang S.-W.; Huang T.-H; Hsu S.-H; Chang S.-W.; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:09Z |
Mechanical properties and deformation mechanisms in CoCrFeMnNi high entropy alloys: A molecular dynamics study
|
Chen K.-T;Wei T.-J;Li G.-C;Chen M.-Y;Chen Y.-S;Chang S.-W;Yen H.-W;Chen C.-S.; Chen K.-T; Wei T.-J; Li G.-C; Chen M.-Y; Chen Y.-S; Chang S.-W; Yen H.-W; Chen C.-S.; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:09Z |
ImageMech: From Image to Particle Spring Network for Mechanical Characterization
|
Chiang Y;Chiu T.-W;Chang S.-W.; Chiang Y; Chiu T.-W; Chang S.-W.; SHU-WEI CHANG |
| 臺大學術典藏 |
2022-03-22T08:28:08Z |
Size effects of mechanical properties of nanohoneycomb with multiple surface orientations
|
Tsai Y.-Y;Chang S.-W.; Tsai Y.-Y; Chang S.-W.; SHU-WEI CHANG |