| 臺大學術典藏 |
2018-09-10T14:50:11Z |
Development of bacterial transglycosylase inhibitors as new antibiotics: Moenomycin A treatment for drug-resistant Helicobacter pylori
|
Tseng, Y.-Y. and Liou, J.-M. and Hsu, T.-L. and Cheng, W.-C. and Wu, M.-S. and Wong, C.-H.; JYH-MING LIOU; MING-SHIANG WU |
| 國立臺灣海洋大學 |
2005 |
Development of bacterial vaccines and its efficacy in cage cultured cobia Rachycentron canadum
|
Liu P.C.;C. N. Tsai;K. K. Lee |
| 國立成功大學 |
2015 |
Development of barrel heating system in injection molding machine via induction heating
|
Bui, Huy-Tien; Hwang, Sheng-Jye |
| 國立臺灣大學 |
2012 |
Development of Base Train Equivalents to Standardize Trains for Capacity Analysis
|
Lai, Yung-Cheng; Liu, Yun-Hsuan; Lin, Tzu-Ya |
| 臺大學術典藏 |
2019-07-24T08:47:11Z |
Development of base train equivalents to standardize trains for capacity analysis
|
Liu, Yun Hsuan;YUNG-CHENG LAI;Lin, Tzu Ya; Lin, Tzu Ya; YUNG-CHENG LAI; Liu, Yun Hsuan |
| 義守大學 |
2015-12 |
Development of Battery Parallel Operation for Improving Battery Service Life and Flexibility in Electric Vehicles
|
Yow-Chyi Liu;En-Chih Chang;Chin-Jui Liu |
| 輔英科技大學 |
2013-05-01 |
Development of beverage product from Gynura bicolor and evaluation of its antioxidant activity
|
Chih-Huei Lu;Hui-Chiu Yang;Wei-Lin Chang;Yueh-Ping Chang;Chih-Chung Wu;Shu-Ling Hsieh |
| 南台科技大學 |
2004 |
Development of Bi-directional Wireless Communication Biomicrosystem for In-vivo Measurement of Impedance of Cuff Electrode
|
Y. T. Li; Jia-Jin J. Chen; 梁治國; Chih-Kuo Liang; C. L. Chung; C. H. Chang |
| 國立成功大學 |
2024 |
Development of Bifacial Passivated Contacts Solar Cells with SiC/SiO2as Front Transparent Passivated Contacts
|
Chen;J, -C.;Lin;C, -P.;Lin;Y, -P.;Chang;H, -C.;Huang;Y, -Y. |
| 國立交通大學 |
2019-04-03T06:44:16Z |
Development of Bifunctional Gadolinium-Labeled Superparamagnetic Nanoparticles (Gd-MnMEIO) for In Vivo MR Imaging of the Liver in an Animal Model
|
Kuo, Yu-Ting; Chen, Chiao-Yun; Liu, Gin-Chung; Wang, Yun-Ming |
| 國立臺灣科技大學 |
2015 |
Development of bifurcation microchannel to uniformly distribute a liquid plug
|
Chen, P.-C.;Wang, Y.-N.;Wu, M.-H. |
| 國立交通大學 |
2019-04-02T06:04:49Z |
Development of Big Data Multi-VM Platform for Rapid Prototyping of Distributed Deep Learning
|
Wu, Chien-Heng; Chuang, Chiao-Ning; Chang, Wen-Yi; Tsai, Whey-Fone |
| 國立臺灣科技大學 |
2016 |
Development of BIM-based real-time evacuation and rescue system for complex buildings
|
Cheng, M.-Y;Chiu, K.-C;Hsieh, Y.-M;Yang, I.T;Chou, J.-S. |
| 國立中山大學 |
2002-12-14 |
Development of Bio-analytical Devices on Soda-Lime Glass
|
林哲信;李國賓;張冠諒 |
| 國立中山大學 |
2001-10-19 |
Development of Bio-analytical Devices on Soda-Lime Glass
|
C.H. Lin;G.B. Lee;Y.H. Lin;G.L. Chang |
| 國立成功大學 |
2020 |
Development of bio-based lubricant from modified desert date oil (balanites aegyptiaca) with copper nanoparticles addition and their tribological analysis
|
Singh, Y.;Sharma, A.;Singh, N.K.;Chen, W.-H. |
| 南開科技大學 |
2009 |
Development of Bio-ceramics Machining Technology Using EDM Process
|
Lin, Yan-Cherng; Lin, Yao-Jang; Chen, Yuan-Feng; Wang, Der An |
| 南開科技大學 |
2009-05-19 |
Development of Bio-ceramics Machining Technology using EDM Process
|
Lin, Yan-Cherng;Lin, Yao-Jang;Chen, Yuan-Feng;Wan, Der-An |
| 國立中山大學 |
2001 |
Development of biobarrier for the remediation of PCE-contaminated aquifer
|
C.M. Kao;S.C. Chen;J.K. Liu |
| 中原大學 |
2006-9-14 |
Development of Biocompatible Interpenetrating Polymer Networks Containing a Sulfobetaine-based Polymer and a Segmented Polyurethane for Protein Resistance
|
Y. Chang;S. Chen;Q. Yu;Z. Zhang;M. Bernards;S. Y. Jiang; |
| 中原大學 |
2006-11-25 |
Development of Biocompatible Interpenetrating Polymer Networks Containing a Sulfobetaine-based Polymer and a Segmented Polyurethane for Protein Resistance
|
Y. Chang;S. Chen;Q. Yu;Z. Zhang;M. Bernards;S. Y. Jiang; |
| 國立臺灣大學 |
2000 |
Development of biodegradable polyesterurethane membranes with different surface morphologies for the culture of osteoblasts
|
Wang, Jyh-Horng; Yao, Chun-Hsu; Chuang, Wen-Yuan; Young, Tai-Horng |
| 臺大學術典藏 |
2020-02-27T03:57:45Z |
Development of biodegradable polyesterurethane membranes with different surface morphologies for the culture of osteoblasts
|
Yao C.-H; Chuang W.-Y; Tai-Horng Young; Wang J.-H;Yao C.-H;Chuang W.-Y;Tai-Horng Young; Wang J.-H |
| 臺大學術典藏 |
2020-02-10T02:14:19Z |
Development of biodegradable polyesterurethane membranes with different surface morphologies for the culture of osteoblasts
|
Jyh-Horng Wang;Yao C.-H.;Chuang W.-Y.;Young T.-H.; JYH-HORNG WANG; Yao C.-H.; Chuang W.-Y.; Young T.-H. |
| 臺大學術典藏 |
2020-02-27T03:57:45Z |
Development of biodegradable polyesterurethane membranes with different surface morphologies for the culture of osteoblasts
|
Wang J.-H;Yao C.-H;Chuang W.-Y;Tai-Horng Young; Wang J.-H; Yao C.-H; Chuang W.-Y; Tai-Horng Young |