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4篇 您的检索式:作者名="LChan"
    题名 作者 年代 出处 被引量
1Physical and electrochemical characteristics of nanostructured nickel hydroxide powder显示文摘Song Q S Li Y Y Lchan S L 2005J Appl Electrochem2005,35,:1
2Keyperformance indicators for measuringconstruc-tion success显示文摘Chan AP C AP LChan 2004Benchmarking2004,11,2:1
3Prospective validation of the Chinese University Prognostic Index and comparison with other staging systems for hepatocellular carcinoma in an Asian population显示文摘Stephen LChan Frankie K FMo Philip JJohnson Giok SLiem Tung CChan Ming CPoon Brigette B YMa Thomas W TLeung Paul B SLai Anthony T CChan Tony S KMok WinnieYeo 2011Journal of Gastroenterology and Hepatology2011,,2:1
4Some features of effective radius and variance of dust particles in numerical simulations of the dust climate on Mars显示文摘Airborne dust is an important constituent in the Martian atmosphere because of its radiative interaction with the atmospheric circulation.Dust size is one crucial factor in determining this effect.In reality dust sizes are varied;however,in numerical modeling of dust processes,dust size has usually been described by choice of a particular size distribution function,or by use of fixed values of effective radius(ER)and effective variance(EV).In this work,we present analytical expressions that have been derived to specify ER and EV for Nbin dust schemes,based on a model-calculated dust mixing ratio.Numerical simulations based on this approach thus would consider the effects of variable ER on the atmospheric radiation and their interaction.Results have revealed some interesting features of the dust distribution parameters,such as seasonal and spatial variation of ER and EV,which are generally consistent with some previous observational and modeling studies.Compared with the usual approach of using a fixed ER,simulation results from the present approach suggest that the variability of ER can have significant effects on the simulated thermal field of the Martian atmosphere.Chi-Fong Wong Kim-Chiu Chow Kwing LChan Jing Xiao Yemeng Wang 2021Earth and Planetary Physics2021,5,1:0
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