| 國立成功大學 |
2000-05-15 |
Temperature programmed oxidation of palladium catalyst: effect of support on the oxygen adsorption behavior
|
Yen, Ping-Wen; Chou, Tse-Chuan |
| 國立臺灣大學 |
1990 |
Temperature Programmed Reduction and Spectroscopic Studies of Reduction Behavior of Fe/TiO2 Catalyst
|
簡淑華; 江挽瀾 |
| 國立臺灣大學 |
1985 |
Temperature Programmed Reduction Profiles for Supported Iron, Nickel and Bimetallic Catalysts
|
簡淑華; Huang, H. W.; Lu, K. L.; Chien, Shu-Hua; Huang, H. W.; Lu, K. L. |
| 淡江大學 |
2018-06 |
Temperature properties in the tropical tropopause layer and their correlations with Outgoing Longwave Radiation: FORMOSAT-3/COSMIC observations
|
Wang, Kaiti;Wu, Yi-chao;Lin, Jia-Ting;Tan, Pei-Hua |
| 國立成功大學 |
2018 |
Temperature properties in the tropical tropopause layer and their correlations with Outgoing Longwave Radiation: FORMOSAT-3/COSMIC observations
|
Wang, K.;Wu, Y.-C.;Lin, J.-T.;Tan, P.-H. |
| 國立成功大學 |
2002-03 |
Temperature reduction of theta- to alpha-phase transformation induced by high-pressure pretreatments of nano-sized alumina powders derived from boehmite
|
Yen, Fu-Su; Wang, M. Y.; Chang, J. L. |
| 臺北醫學大學 |
2003 |
Temperature Regulates the Arrhythmogenic Activity of Pulmonary Vein Cardiomyocytes
|
陳保羅; Chen YJ; Chen YC; Chan P; Lin CI; Chen SA |
| 臺北醫學大學 |
2003 |
Temperature Regulates the Arrhythmogenic Activity of Pulmonary Vein Cardiomyocytes.
|
陳亦仁; Chen YJ; Chen YC; Chan P; Lin CI; Chen SA; |
| 國立臺灣海洋大學 |
1994-09 |
Temperature regulation of heterotrophic bacterioplankton biomass, production and specific growth rate in the Chesapeake Bay
|
Fuh-Kwo Shish;Hugh W. Ducklow |
| 國立成功大學 |
2012-12 |
Temperature Response in Double Layer Sphere Tissue Analysis by Differential Transformation Method for Surface Heating Problems
|
Lin, Song-Yih; Lai, Hsin-Yi; Chen, Cha'o-Kuang |
| 國立高雄應用科技大學 |
2012-01 |
Temperature responsive carbon nanotubes/poly (N-isopropylacrylamide)-modified electrodes for electrochemical selective determination of dopamine, uric acid, and ascorbic acid
|
Shieh, Yeong-Tarng; Chen, Yi-An; Lin, Rong-Hsien; Wang, Tzong-Liu; Chien-HsinYang |
| 臺大學術典藏 |
2018-09-10T06:53:51Z |
Temperature rise effect of viscoelastically damped structures under strong earthquake ground motions
|
Chang, K.C.;Tsai, M.H.;Chang, Y.H.;Lai, M.L.; Chang, K.C.; Tsai, M.H.; Chang, Y.H.; Lai, M.L.; YUAN-HUEI CHANG |
| 中國文化大學 |
2000-08 |
Temperature Rise in Ping-Lin Tunnel
|
陳發林; 張鴻明 |
| 義守大學 |
2009-06-11 |
Temperature Rise Simulation During a Kirschner Pin Drilling in Bone
|
Yuan-Kun Tu; Yau-Chia Liu; Wen-Jen Yang; Li-Wen Chen; You-Yao Hong; Yung-Chuan Chen; Li-Chiang Lin |
| 國立中山大學 |
1991 |
Temperature selections of Anguilla japonica (L.) elvers and their implication for migration
|
Y.L. Chen;H.Y. Chen |
| 國立中山大學 |
1991 |
Temperature selections of Anguilla japonica elvers and its implication in migration
|
Y.L. Chen;H.Y. Chen |
| 國立交通大學 |
2014-12-08T15:08:27Z |
Temperature Sensing by Using Film Bulk Acoustic Resonator at 2.4 GHz Band
|
Kao, Yao-Huang; Lin, Jon-Hong |
| 中華大學 |
2009 |
Temperature Sensing by Using Film Bulk Acoustic Resonator at 2.4GHz band
|
高曜煌; Kao, Yao-Huang |
| 臺大學術典藏 |
2019-11-27T06:54:58Z |
Temperature sensing probe integrated with an SU-8 flexible ribbon cable for heart surgery application
|
Li K.-S.;Chao T.-Y.;Cheng Y.T.;Chen J.-K.;Yih-Sharng Chen; Li K.-S.; Chao T.-Y.; Cheng Y.T.; Chen J.-K.; YIH-SHARNG CHEN |
| 佛光大學 |
2008-02-06 |
Temperature Sensing Using Individual Single Walled Carbon Nanotubes
|
翁政義;Y. R. Chen;C. J. Sun |
| 佛光大學 |
2008-02-06 |
Temperature Sensing Using Individual Single Walled Carbon Nanotubes
|
翁政義;Y. R. Chen;C. J. Sun |
| 國立成功大學 |
2008-02-06 |
Temperature sensing using individual single-walled carbon nanotubes
|
Chen, Yi-Ray; Weng, Cheng-I; Sun, Shih-Jye |
| 國立臺灣科技大學 |
2020 |
Temperature Sensing with a Relaxation Oscillator in CMOS ICs
|
Sako, F.;Ikiri, Y.;Hashizume, M.;Yotsuyanagi, H.;Yokoyama, H.;Lu, S.-K. |
| 國立臺灣科技大學 |
2020 |
Temperature Sensing with a Relaxation Oscillator in CMOS ICs
|
Sako, F.;Ikiri, Y.;Hashizume, M.;Yotsuyanagi, H.;Yokoyama, H.;Lu, S.-K. |
| 元智大學 |
2022-11-18 |
Temperature sensitive polymer coated Graphene Quantum Dot for targeted cancer therapy
|
Wei-Chin Tsai; Kuen-Song Lin; You-Sheng Lin; Chun-Ming Wu |