| 臺大學術典藏 |
2018-09-10T07:34:15Z |
Energy Band Offsets at a Ga 2 O 3 (Gd 2 O 3)-GaAs Interface
|
MINGHWEI HONG; Huang, DJ; Lay, TS; Hong, M; Kwo, J; Mannaerts, JP; Hung, Wei-Hsiu |
| 中原大學 |
2002 |
Energy band structure of strained Si1-xCx alloys on Si (001) substrate
|
S. T. Chang;C. Y. Lin;C. W. Liu |
| 國立臺灣大學 |
2002 |
Energy band structure of strained Si1-xCx alloys on Si (001) substrate
|
Chang, S. T.; Lin, C. Y.; Liu, C. W. |
| 元智大學 |
Dec-14 |
Energy band structure tailoring of vertically aligned InAs/GaAsSb quantum dot structure for intermediate-band solar cell application by thermal annealing process
|
Wei-Sheng Liu; Ting-Fu Chu; Tien-Hao Huang |
| 元智大學 |
2015-11-27 |
Energy band-alignment tailoring by using thermal annealing treatment on the vertically-aligned InGaAs/GaAs(Sb)/AlGaAsSb quantum dots
|
Wei-Sheng Liu; Ren-Yo Liu; Hsiao-Chen Lin |
| 臺大學術典藏 |
2019-05-09T07:24:46Z |
Energy based pore water pressure formulation in a cyclic plasticity model for sand
|
Kwok, O.-L.A.;Ueng, T.-S.;Tsai, E.;Ge, L.; Tsai, E.; Ge, L.; Ueng, T.-S.; Kwok, O.-L.A. |
| 臺大學術典藏 |
2019-12-20T08:41:05Z |
Energy based pore water pressure formulation in a cyclic plasticity model for sand
|
ON LEI KWOK;Kwok, O.-L.A.;Ueng, T.-S.;Ge, L.;Tsai, E.; Tsai, E.; Ge, L.; Ueng, T.-S.; Kwok, O.-L.A.; ON LEI KWOK |
| 國立交通大學 |
2017-04-21T06:48:43Z |
Energy Based Swing-up Controller Design using Phase Plane Method For Rotary Inverted Pendulum
|
Chou, K. Y.; Chen, Y. P. |
| 國立成功大學 |
2017-10 |
Energy Big Data Security Threats in IoT-Based Smart Grid Communications
|
Chin;Wen-Long;Li;Wan;Chen;Hsiao-Hwa |
| 國立成功大學 |
2020-10 |
Energy Bound for Kapustin-Witten Solutions on S-3 x R+
|
Leung;Conan, Naichung;Takahashi;Ryosuke |
| 國立成功大學 |
2020 |
Energy bound for kapustin–witten solutions on S3 × R+
|
Leung, N.C.;Takahashi, R. |
| 臺大學術典藏 |
2018-09-10T09:46:26Z |
Energy Calibration and Resolution of the CMS Electromagnetic Calorimeter in $pp$ Collisions at $\\sqrt{s} = 7$ TeV
|
Chatrchyan, Serguei; Chatrchyan, Serguei; PAO-TI CHANG; YEE HSIUNG; MIN-ZU WANG |
| 臺大學術典藏 |
2020-01-15T06:59:58Z |
Energy calibration and resolution of the CMS electromagnetic calorimeter in pp collisions at √s = 7 TeV
|
Chatrchyan, S.; Chatrchyan, S.; KAI-FENG CHEN et al. |
| 亞洲大學 |
2012-06 |
Energy Capability of LDMOS as a Function of Ambient Temperature
|
許健;Sheu, Gene |
| 臺大學術典藏 |
2018-09-10T04:49:34Z |
Energy compaction capability of DCT and DHT under 2-D source model with CT image constraints
|
Hsu, Chiou-Ting;Wu, Ja-Ling; Hsu, Chiou-Ting; Wu, Ja-Ling; JA-LING WU |
| 臺大學術典藏 |
1997-07 |
Energy Compaction Capability of DCT and DHT with CT Image Constraint
|
Hsu, Chiou-Ting; Wu, Ja-Ling; Hsu, Chiou-Ting; Wu, Ja-Ling |
| 國立臺灣大學 |
1997-07 |
Energy Compaction Capability of DCT and DHT with CT Image Constraint
|
Hsu, Chiou-Ting; Wu, Ja-Ling |
| 臺大學術典藏 |
1997-07 |
Energy compaction capability of DCT and DHT with CT image constraints
|
Wu, Ja-Ling; Hsu, Chiou-Ting; Hsu, Chiou-Ting; Wu, Ja-Ling |
| 國立臺灣大學 |
1997-07 |
Energy compaction capability of DCT and DHT with CT image constraints
|
Hsu, Chiou-Ting; Wu, Ja-Ling |
| 臺大學術典藏 |
1997 |
Energy compaction capability of DCT and DHT with CT image constraints
|
Hsu, Chiou-Ting; Wu, Ja-Ling; JA-LING WU |
| 臺大學術典藏 |
1994/9/28 |
Energy Compaction Capability ofDCT and DHT under 2-D Source Model with CT Image Constraints
|
Hsu, Chiou-Ting; Wu, Ja-Ling; Hsu, Chiou-Ting; Wu, Ja-Ling |
| 國立臺灣大學 |
1994/9/28 |
Energy Compaction Capability ofDCT and DHT under 2-D Source Model with CT Image Constraints
|
Hsu, Chiou-Ting; Wu, Ja-Ling |
| 臺大學術典藏 |
2011 |
Energy compensation method for soft-landing control in camless engine with electromagnetic valve actuator
|
Liu, J.-J.; Lu, P.-H.; Yang, Y.-P.; Ye, D.-H.; Cheng, Y.-R.; YEE-PIEN YANG |
| 臺大學術典藏 |
2018-09-10T15:37:09Z |
Energy concentration and a priori estimates for B2 and G2 types of toda systems
|
Lin, C.-S.;Zhang, L.; Lin, C.-S.; Zhang, L.; CHANG-SHOU LIN |
| 臺大學術典藏 |
2018-09-10T08:17:56Z |
Energy concentration enhancement using window width optimization in S transform
|
S. C. Pei;Pai-Wei Wang; S. C. Pei; Pai-Wei Wang; SOO-CHANG PEI |