| 臺大學術典藏 |
2021-02-04T07:07:27Z |
Self-organizing maps of typhoon tracks allow for flood forecasts up to two days in advance
|
Chang, L.-C.;Chang, F.-J.;Yang, S.-N.;Tsai, F.-H.;Chang, T.-H.;Herricks, E.E.; Chang, L.-C.; Chang, F.-J.; Yang, S.-N.; Tsai, F.-H.; Chang, T.-H.; Herricks, E.E.; FI-JOHN CHANG |
| 臺大學術典藏 |
2020-02-19T07:22:36Z |
Signals of stream fish homogenization revealed by AI-based clusters
|
Chang F.-J.; SU-TING CHENG; Herricks E.E.; Tsai W.-P.; Yu T.-C.; Cheng S.-T.; Cheng S.-T.;Tsai W.-P.;Yu T.-C.;Herricks E.E.;Chang F.-J. |
| 臺大學術典藏 |
2020-02-19T07:22:36Z |
Signals of stream fish homogenization revealed by AI-based clusters
|
Chang F.-J.; SU-TING CHENG; Herricks E.E.; Tsai W.-P.; Yu T.-C.; Cheng S.-T.; Cheng S.-T.;Tsai W.-P.;Yu T.-C.;Herricks E.E.;Chang F.-J. |
| 臺大學術典藏 |
2020-01-14T03:33:34Z |
Signals of stream fish homogenization revealed by AI-based clusters
|
Cheng S.-T.;Tsai W.-P.;Yu T.-C.;Herricks E.E.;Chang F.-J.; Cheng S.-T.; Tsai W.-P.; Yu T.-C.; Herricks E.E.; Chang F.-J.; FI-JOHN CHANG |
| 臺大學術典藏 |
2020-01-14T03:33:34Z |
Signals of stream fish homogenization revealed by AI-based clusters
|
Cheng S.-T.;Tsai W.-P.;Yu T.-C.;Herricks E.E.;Chang F.-J.; Cheng S.-T.; Tsai W.-P.; Yu T.-C.; Herricks E.E.; Chang F.-J.; FI-JOHN CHANG |
| 臺大學術典藏 |
2020-01-14T03:33:30Z |
Assessing the natural and anthropogenic influences on basin-wide fish species richness
|
Cheng S.-T.;Herricks E.E.;Tsai W.-P.;Chang F.-J.; Cheng S.-T.; Herricks E.E.; Tsai W.-P.; Chang F.-J.; FI-JOHN CHANG |
| 臺大學術典藏 |
2020-01-14T03:33:30Z |
Assessing the natural and anthropogenic influences on basin-wide fish species richness
|
Cheng S.-T.;Herricks E.E.;Tsai W.-P.;Chang F.-J.; Cheng S.-T.; Herricks E.E.; Tsai W.-P.; Chang F.-J.; FI-JOHN CHANG |
| 臺大學術典藏 |
2020-01-14T03:33:28Z |
AI techniques for optimizing multi-objective reservoir operation upon human and riverine ecosystem demands
|
Tsai W.-P.; Chang F.-J.; Chang L.-C.; Herricks E.E.; FI-JOHN CHANG; Tsai W.-P.;Chang F.-J.;Chang L.-C.;Herricks E.E. |
| 臺大學術典藏 |
2020-01-14T03:33:28Z |
AI techniques for optimizing multi-objective reservoir operation upon human and riverine ecosystem demands
|
Tsai W.-P.; Chang F.-J.; Chang L.-C.; Herricks E.E.; FI-JOHN CHANG; Tsai W.-P.;Chang F.-J.;Chang L.-C.;Herricks E.E. |
| 臺大學術典藏 |
2020-01-14T03:33:23Z |
Identifying natural flow regimes using fish communities
|
Chang F.-J.; Tsai W.-P.; Wu T.-C.; Chen H.-K.; Herricks E.E.; FI-JOHN CHANG |
| 臺大學術典藏 |
2018-09-10T15:36:41Z |
Assessing the natural and anthropogenic influences on basin-wide fish species richness
|
Cheng, S.-T.;Herricks, E.E.;Tsai, W.-P.;Chang, F.-J.; Cheng, S.-T.; Herricks, E.E.; Tsai, W.-P.; Chang, F.-J.; SU-TING CHENG |
| 臺大學術典藏 |
2018-09-10T15:36:41Z |
Assessing the natural and anthropogenic influences on basin-wide fish species richness
|
Cheng, S.-T.;Herricks, E.E.;Tsai, W.-P.;Chang, F.-J.; Cheng, S.-T.; Herricks, E.E.; Tsai, W.-P.; Chang, F.-J.; SU-TING CHENG |
| 臺大學術典藏 |
2016 |
Exploring the ecological response of fish to flow regime by soft computing techniques
|
FI-JOHN CHANG; Herricks E.E.; Chang F.-J.; Tsai W.-P.; Tsai W.-P.;Chang F.-J.;Herricks E.E. |
| 臺大學術典藏 |
2016 |
Exploring the ecological response of fish to flow regime by soft computing techniques
|
FI-JOHN CHANG; Herricks E.E.; Chang F.-J.; Tsai W.-P.; Tsai W.-P.;Chang F.-J.;Herricks E.E. |
| 臺大學術典藏 |
2013 |
A self-organizing radial basis network for estimating riverine fish diversity
|
Chang F.-J.;Tsai W.-P.;Chen H.-K.;Yam R.S.W.;Herricks E.E.; Chang F.-J.; Tsai W.-P.; Chen H.-K.; Yam R.S.W.; Herricks E.E.; FI-JOHN CHANG |
| 臺大學術典藏 |
2013 |
A self-organizing radial basis network for estimating riverine fish diversity
|
Chang F.-J.;Tsai W.-P.;Chen H.-K.;Yam R.S.W.;Herricks E.E.; Chang F.-J.; Tsai W.-P.; Chen H.-K.; Yam R.S.W.; Herricks E.E.; FI-JOHN CHANG |