UM

Browse/Search Results:  1-10 of 109 Help

Selected(0)Clear Items/Page:    Sort:
Tourism myths and the Dunning Kruger effect Journal article
Pratt, Stephen, Pan, Bing, Agyeiwaah, Elizabeth, Lei, Soey Sut Ieng, Lugosi, Peter, Kirillova, Ksenia, Piirman, Marit, Lockwood Sutton, Jonathan, Jönsson, H. Cristina, Haselwanter, Stefanie, Smith, Ryan P., Sinha, Rupa, Berno, Tracy, Mackenzie, Murray, Graci, Sonya, Rao, Y. Venkata, Veliverronena, Linda, Zekan, Bozana, Suranga Silva, D. A.C., Park, Soyoung. Tourism myths and the Dunning Kruger effect[J]. Annals of Tourism Research, 2024, 104, 103620.
Authors:  Pratt, Stephen;  Pan, Bing;  Agyeiwaah, Elizabeth;  Lei, Soey Sut Ieng;  Lugosi, Peter; et al.
Favorite | TC[WOS]:1 TC[Scopus]:2  IF:10.4/11.2 | Submit date:2024/02/22
Dunning Kruger Effect  Competence  Metacognition  Self-assessment  Tourism Myths  
Single-site Co-anchored α- In2Se3 with enhanced and polarization-dependent hydrogen and oxygen evolution activity Journal article
Wang, Y. Q., Zhang, X. L., Pan, H., Lu, B., Lu, Y. H.. Single-site Co-anchored α- In2Se3 with enhanced and polarization-dependent hydrogen and oxygen evolution activity[J]. JOURNAL OF ALLOYS AND COMPOUNDS, 2022, 927(15), 166877.
Authors:  Wang, Y. Q.;  Zhang, X. L.;  Pan, H.;  Lu, B.;  Lu, Y. H.
Favorite | TC[WOS]:2 TC[Scopus]:2  IF:5.8/5.3 | Submit date:2023/01/30
Density Functional Theory  Ferroelectric Polarization  Water Splitting  
A 112-Gb/s Single-Ended PAM-4 Transceiver Front-End for Reach Extension in Long-Reach Link Conference paper
Xiongshi Luo, Xuewei You, Jiahan Fu, Zhenghao Li, Liping Zhong, Taiyang Fan, Zhang Qiu, Wenbo Xiao, Yong Chen, Quan Pan. A 112-Gb/s Single-Ended PAM-4 Transceiver Front-End for Reach Extension in Long-Reach Link[C], 2022, 497-500.
Authors:  Xiongshi Luo;  Xuewei You;  Jiahan Fu;  Zhenghao Li;  Liping Zhong; et al.
Favorite | TC[WOS]:1 TC[Scopus]:2 | Submit date:2023/01/30
Sige Bicmos  Long-reach Link  Pam-4  Reach-extension Module  Single-ended (Se)  Transceiver (Trx)  
Compact Scheduling for Task Graph Oriented Mobile Crowdsourcing Journal article
Wang, L., Yu, Z., Han, Q., Yang, D., Pan, S., Yao, Y., Zhang, D.. Compact Scheduling for Task Graph Oriented Mobile Crowdsourcing[J]. IEEE Transactions on Mobile Computing, 2022, 21(7), 2358 - 2371.
Authors:  Wang, L.;  Yu, Z.;  Han, Q.;  Yang, D.;  Pan, S.; et al.
Favorite | TC[WOS]:9 TC[Scopus]:9  IF:7.7/6.5 | Submit date:2022/07/18
Mobile Crowdsourcing  Task Schedule  Directed Acyclic Graph(Dag)  Makespan  
Realization of integrative hierarchy by in-situ solidification of ‘semi-cured’ microcilia array in candle flame for robust and flexible superhydrophobicity Journal article
Chen, G., Dai, Z., Ding, S., Lei, M., Lin, J., Wang, S., Zhou, Y., Pan, H., Zhou, B.. Realization of integrative hierarchy by in-situ solidification of ‘semi-cured’ microcilia array in candle flame for robust and flexible superhydrophobicity[J]. Chemical Engineering Journal, 2022, 134400-134400.
Authors:  Chen, G.;  Dai, Z.;  Ding, S.;  Lei, M.;  Lin, J.; et al.
Favorite | TC[WOS]:9 TC[Scopus]:10  IF:13.3/13.2 | Submit date:2022/08/01
Superhydrophobicityflexibilityrobust Hierarchymicrociliacandle Soot  
A Battery-Less Crystal-Less 49.8μW Neural-Recording Chip Featuring Two-Tone RF Power Harvesting Conference paper
Chang, Ziyi, Yang, Changgui, Zhang, Yunshan, Li, Zhuhao, Zheng, Tianyu, Luo, Yuxuan, Zhang, Shaomin, Xu, Kedi, Chen, Yong, Pan, Gang, Zhao, Bo. A Battery-Less Crystal-Less 49.8μW Neural-Recording Chip Featuring Two-Tone RF Power Harvesting[C]:Institute of Electrical and Electronics Engineers Inc., 2022.
Authors:  Chang, Ziyi;  Yang, Changgui;  Zhang, Yunshan;  Li, Zhuhao;  Zheng, Tianyu; et al.
Favorite | TC[Scopus]:6 | Submit date:2022/08/05
A 140GHz 4TX-4RX Phased-Array FMCW-FSK Antenna-Packaged Radar Chipset With 25dBm EIRP and 16GHz BW Conference paper
Ma, Shunli, Wu, Tianxiang, Xu, Zhuofan, Sun, Zhonghao, Li, Xuefeng, Wu, Lei, Hu, Biao, Ren, Junyan, Chen, Yong, Pan, Jiebin. A 140GHz 4TX-4RX Phased-Array FMCW-FSK Antenna-Packaged Radar Chipset With 25dBm EIRP and 16GHz BW[C]:IEEE, 2022.
Authors:  Ma, Shunli;  Wu, Tianxiang;  Xu, Zhuofan;  Sun, Zhonghao;  Li, Xuefeng; et al.
Favorite | TC[Scopus]:1 | Submit date:2023/03/06
Chloride Stress Corrosion Cracking of a Non-Standard, ‘Borderline’ Chromium-Manganese Stainless Steel – Problems of Counterfeits and Substandard Materials Journal article
Chu, K. H., Lam, C. C., Sun, Y. F., Cristino, V., Kwok, C. T., Pan, H., Lo, K. H.. Chloride Stress Corrosion Cracking of a Non-Standard, ‘Borderline’ Chromium-Manganese Stainless Steel – Problems of Counterfeits and Substandard Materials[J]. Engineering Failure Analysis, 2021, 127, 105562.
Authors:  Chu, K. H.;  Lam, C. C.;  Sun, Y. F.;  Cristino, V.;  Kwok, C. T.; et al.
Adobe PDF | Favorite | TC[WOS]:3 TC[Scopus]:3  IF:4.4/4.1 | Submit date:2022/07/27
Chromium-manganese Stainless Steel  Chloride Stress Corrosion Cracking  Slow Strain Rate Test  Counterfeit  
Chloride stress corrosion cracking of a non-standard, ‘Borderline’ Chromium-Manganese stainless steel – Problems of counterfeits and substandard materials Journal article
Chu, K. H., Lam, C. C., Sun, Y. F., Cristino, V. A.M., Kwok, C. T., Pan, H., Lo, K. H.. Chloride stress corrosion cracking of a non-standard, ‘Borderline’ Chromium-Manganese stainless steel – Problems of counterfeits and substandard materials[J]. Engineering Failure Analysis, 2021, 127, 105562.
Authors:  Chu, K. H.;  Lam, C. C.;  Sun, Y. F.;  Cristino, V. A.M.;  Kwok, C. T.; et al.
Adobe PDF | Favorite | TC[WOS]:3 TC[Scopus]:3  IF:4.4/4.1 | Submit date:2021/09/10
Chloride Stress Corrosion Cracking  Chromium-manganese Stainless Steel  Counterfeit  Slow Strain Rate Test  
Surface reconstruction on silver nanoparticles decorated trimetallic hydroxide nanosheets to generate highly active oxygen-deficient (oxy)hydroxide layer for high-efficient water oxidation Journal article
Du, X. Y., Guo, J. L., Chen, M. P., Cheong, W. C., Chen, Y. Y., Liu, D., Chen, S., Wang, X. S., Lo, K. H., Hu, J. S., Pan, H.. Surface reconstruction on silver nanoparticles decorated trimetallic hydroxide nanosheets to generate highly active oxygen-deficient (oxy)hydroxide layer for high-efficient water oxidation[J]. Chemical Engineering Journal, 2021, 131662-131662.
Authors:  Du, X. Y.;  Guo, J. L.;  Chen, M. P.;  Cheong, W. C.;  Chen, Y. Y.; et al.
Favorite | TC[WOS]:21 TC[Scopus]:21  IF:13.3/13.2 | Submit date:2022/07/27
Surface Reconstruction  Spontaneous Redox Reaction  Oxygen-deficient (Oxy)Hydroxide Layer  Silver Nanoparticles Decoration