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12篇 您的检索式:作者名="Sahadev"
    题名 作者 年代 出处 被引量
1Managing the distribution channels for high-technology products: A behavioural approach显示文摘Sunil Sahadev S. Jayachandran 2004European Journal of Marketing2004,,1:1
2Role of switchingcosts in the service quality, perceived value, customersatisfaction and customer retention linkage 显示文摘MANOJ EDWARD SUNIL SAHADEV 2011AsiaPacific Journal of Marketing and Logistics2011,23,3:1
3AN in vitro CT compar- ison of Gutta-Percha removal with two rotary systems and hedstrom files显示文摘Yadav P Bharath MJ Sahadev CK 2013Iran Endod J2013,8,2:1
4Role of switching costs in the service quality, perceived value, customer satisfaction and cus- tomer retention linkage 显示文摘MANOJ EDWARD SUNIL SAHADEV 2011Asia Pacific ~ournal of Marketing and Logistics2011,23,3:1
5Country Image and Consumer Preference for Emerging Economy Products:The Moderating Role of Consumer Materialism显示文摘DEMIRBAG M SAHADEV S MELLAHI K 0,,02:1
6Stand structure, phenology and litterfall dynamics of a subtropical mangrove Bruguiera gymnorrhiza显示文摘We evaluated the phenology and litterfall dynamics of the mangrove Bruguiera gymnorrhiza(L.)Lamk along the Okukubi River, Okinawa Island, Japan.Over 3 years, this species showed the highest litterfall of leaves and stipules in summer and the lowest litterfall in winter. From Kendall's coefficient of concordance, the monthly changes in leaf, stipule, and branch were strongly and significantly concordant among years. Leaf and stipule litterfall could be governed by monthly maximum wind speed, monthly day length, and monthly mean air temperature. Branch litterfall depended on monthly maximum wind speed and monthly rainfall, and increased exponentially with increasing monthly maximum wind speed. Mean total litterfall was 11.8 Mg ha^(-1)yr^(-1), with the largest component being leaf litterfall(65.8 %). Annual leaf litterfall per plot was almost constant regardless of the tree density of the plot. Mean leaf longevity was 18 months.Flower and mature propagule litterfall might be influenced by monthly mean air temperature, monthly day length and monthly mean air temperature. The average development periods from flower buds to flowers and flower buds to mature propagules were 1 and 8 months, respectively.Except for leaf and branch, all vegetative and reproductive organ litterfall had clear annual cycles. B. gymnorrhiza showed a positive correlation between leaf production and reproductive organ production.Md.Kamruzzaman Mouctar Kamara Sahadev Sharma Akio Hagihara 2016Journal of Forestry Research2016,27,3:1
7Modelling the Consequences of E -service Quality 显示文摘Sahadev Sunil and Keyoor Purani 2008Marketing Intelligence and Planning2008,26,6:1
8An in vitro CT comparison of Gutta- Percha removal with two rotary sys- tems andhedstrom files显示文摘Yadav P Bharath MJ Sahadev CK 2013IranEndodJ2013,8,2:1
9Exploring the determinants of E- commerce usage the hotel industry: an empirical study显示文摘Sunil Sahadev Nazrul Islam 2005Infor- mation Technology & Tourism2005,,7:1
10Role of Switching Costs in the Service Quality, Perceived Value, Customer Satisfaction and Customer Retention Linkage 显示文摘Edward M Sahadev S 2011Asia Pacific Journal of Marketing and Lo- gistics2011,23,3:1
11An in vitro CT comparison of gutta-percha removal with two rotary systems and Hedstrom files 显示文摘Yadav P Bharath M J Sahadev C K 2013Iranian Endodontie Journal2013,8,2:1
12A model of seasonal foliage dynamics of the subtropical mangrove species Rhizophora stylosa Griff.growing at the northern limit of its distribution显示文摘Background:Progress of forest production in response to the environment requires a quantitative understanding of leaf area development.Therefore,it is necessary to investigate the dynamics of seasonal crown foliage in order to understand the productivity of mangroves,which play an important role in the subtropical and tropical coastlines of the world.Method:Crown foliage dynamics of the mangrove Rhizophora stylosa were studies to reveal patterns of leaf recruitment,survival and seasonal leaf area growth.Results:Flushing of leaves occurred throughout the year,but both flushing and leaf area growth pattern of leaves varied with season.Maximum flushing occurred in summer,but leaf areas did not differ significantly with season.The half-expansion period is longer,and the intrinsic rate of increase was lower in winter.Summer flushed leaves grew faster at their initial stage and reached their maximum area over a shorter period of time.The difference in temperature and air vapor pressure deficit(VPD) between summer and winter contributed to the present dynamics of foliage patterns.The mean leaf longevity was estimated to be 13.1 month.The crown foliage area was almost stable throughout the year.Conclusions:Homeostatic control of the crown foliage area may be accompanied by the existence of ecophysiological mechanisms in R.stylosa.Integrating crown foliage dynamics into forest models represents an important step towards incorporating physiological mechanisms into the models for predicting growth responses to environmental changes and for understanding the complex responses of tree growth and litter production.Sahadev Sharma A T M RafiquI Hoque Kangkuso Analuddin Akio Hagihara 2014Forestry Studies in China2014,16,3:0
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