Добірка наукової літератури з теми "Zhengzhou"

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Статті в журналах з теми "Zhengzhou"

1

Ji, Zhengxin, Yueqing Xu, and Hejie Wei. "Identifying Dynamic Changes in Ecosystem Services Supply and Demand for Urban Sustainability: Insights from a Rapidly Urbanizing City in Central China." Sustainability 12, no. 8 (April 22, 2020): 3428. http://dx.doi.org/10.3390/su12083428.

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Identifying the balance and dynamic changes in supply and demand of ecosystem services (ES) can help maintain the sustainability of the regional ecosystem and improve human well-being. To achieve a sustainable ecological management regime in Zhengzhou City, this study presented a comprehensive framework for identifying dynamic changes of ES supply and demand and managing ES. Using land use data of Zhengzhou City in 1995, 2005, and 2015 and incorporating expert knowledge and the ES evaluation matrix, we evaluated the spatiotemporal changes in the ES supply and demand in Zhengzhou. Gradient analysis was conducted to identify urban–rural patterns in the budgets of ES supply and demand. Spatial autocorrelation analysis was employed to identify the hotspot areas of ES surpluses or deficits. The research results show the following: (1) In the past 20 years, the supply-and-demand relationship of ES in Zhengzhou has gradually evolved in a direction where supply falls short of demand. The average budget index of Zhengzhou’s ES supply and demand decreased from 7.30 in 1995 to −4.89 in 2015. Changes in the supply and demand status of ES in Zhengzhou corresponded to the background of rapid urbanization. (2) Urban–rural gradient differences exist in the budgets of ES supply and demand in Zhengzhou. Core development areas, such as the Zhengzhou urban areas, are in deficit, whereas a balance or surplus can be observed in rural areas far from urban centers. (3) The surplus hotspots of ES budgets were mainly distributed in the western and southern mountainous areas of Zhengzhou, and they were scattered and the scope shrank, with a decrease of 2.73 times in 20 years, whereas the deficit hotspots expanded outward with each urban area as the center, with an increase of 5.77%. Ecological management zoning (ecological conservation area, ecological improvement area, and ecological reconstruction area) with the effective guidance of ecological and economic policies could comprehensively improve ES management and achieve urban sustainability. The framework in this study can easily and quickly assess the supply and demand status of ES and provide scientific support for the ecological management in rapidly urbanizing areas.
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2

Zhao, Mengdie, Jinhang Li, Jinliang Zhang, Yuping Han, and Runxiang Cao. "Research on Evaluation Method for Urban Water Circulation Health and Related Applications: A Case Study of Zhengzhou City, Henan Province." International Journal of Environmental Research and Public Health 19, no. 17 (August 24, 2022): 10552. http://dx.doi.org/10.3390/ijerph191710552.

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The acceleration of urbanization and climate change has increasingly impacted the health level of urban dual water cycles. In order to accurately evaluate the health status of urban water cycles, the evaluation system covers four standard layers of water ecology, water abundance, water quality and water use, including 19 basic indicators such as water storage change and annual average precipitation. Three-scale AHP and EFAST algorithms are adopted to set the criterion and index layer weights. Water-cycle health assessment models are based on the improved TOPSIS model. The model evaluated Zhengzhou’s water cycle health from 2011 to 2021. We compared the TOPSIS model and FCE method to ensure the scientific objectivity of the evaluation results. The evaluation results indicated that the water cycle in Zhengzhou City improved annually, and the relative progress in 2020 was 0.567 in a sub-health state. The eco-environmental water demand, green coverage rate of the built district, water resources amount, and industry’s water consumption per unit of value added (CNY 10,000) were the major obstacles. These four factors have preponderantly influenced Zhengzhou City’s water cycle health. Our research results provide scientific reference for Zhengzhou to achieve a healthy urban water cycle and regional sustainable development.
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3

Wang, Nan, and Shenghui Li. "Evaluation of Sustainability of Zhengzhou’s Land Use." Journal of Sustainable Development 10, no. 6 (November 29, 2017): 214. http://dx.doi.org/10.5539/jsd.v10n6p214.

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Land is not only a major space for human production and living, but also one of the most precious resources to humans. As a space carrier of urban construction, urban land resources constitute the part with the highest asset benefit among land resources, offering an essential space for economic reproduction, population reproduction and environment reproduction in urban areas. To sum up, urban land resources are the material basis, guaranteeing sustainability of urban development.In this paper, changes of sustainability of land use in Zhengzhou City, Henan Province from 2011 to 2015 were analyzed so as to evaluate sustainability level of land use in Zhengzhou. Based on correlation analysis, resource, environment, economy and society were selected as four evaluation indexes, and their weights were determined. Then, the method of maximum was used to realize data normalization, and the comprehensive index value was computed. Finally, sustainability of Zhengzhou’s land use was comprehensively evaluated. Taken as a whole, sustainability of Zhengzhou’s land use was improving from 2011 to 2015, but the comprehensive sustainability level was still low, calling for further strengthening. From 2014 to 2015, the sustainability level of land use was still on the downward.
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4

Lv, Xue Liang, Jin Zhang Qiu, Liang Ming Hu, Jin Ping Zhang, and Bin Zhang. "Research on Water Conservation of Zhengzhou City Center in 12th Five-Year." Applied Mechanics and Materials 501-504 (January 2014): 1951–55. http://dx.doi.org/10.4028/www.scientific.net/amm.501-504.1951.

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On the basis of comprehensive analysis of water supply and the development of social economy in Zhengzhou, analysis of the balance of supply and demand of water resources and water-saving potential in Zhengzhou center city, and identified the water conservation planning target of Zhengzhou City center in 2015, it is concluded that water-saving potential in Zhengzhou City center in 2015 is 3000.28×104 m3; and put forward the countermeasures and measures of saving water from the aspects of industry and comprehensive life, for the water conservation planning of Zhengzhou City center in 12th Five-year to provide the reference basis.
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5

Wang, Qizhen, Tong Zhao, Rong Wang, and Ling Zhang. "Backward Trajectory and Multifractal Analysis of Air Pollution in Zhengzhou Region of China." Mathematical Problems in Engineering 2022 (January 13, 2022): 1–17. http://dx.doi.org/10.1155/2022/2226565.

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With the continuous promotion of industrialization and urbanization, China's environmental pollution is becoming increasingly serious, which has caused considerable damage to the natural balance. Air pollution seriously harms people's physical and mental health, the ecological environment, and the social sustainable development of society. In this study, the backward trajectory model and multifractal methods were adopted to analyze air pollution in Zhengzhou. The backward trajectory analysis showed that most clusters of air pollution were from southern Hebei, eastern Shandong, and mid-western Henan, which were then transported to Zhengzhou. For the PSCF and CWT analyses, we selected four representative cities to explore how close the air pollution of Zhengzhou is to other areas on the basis of air polluted concentration. The results of several multifractal methods indicated that multifractality existed in the AQI time series of Zhengzhou and cross-correlations between Zhengzhou and each of the four cities. The widths of multifractal spectra showed that the air pollution in Zhengzhou was closest to that in Jinan, followed by Shijiazhuang, Zibo, and Luoyang. The CDFA analysis showed that carbon monoxide (CO), nitrogen dioxide (NO2), and inhalable particulate matter (PM10) had important influences on air pollution in Zhengzhou. These findings offer a useful reference for air pollution sources and their potential contributions in Zhengzhou, which can support policy makers in environmental governance and in achieving sustainable urban development.
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6

Hao, Mengge, Dongyong Zhang, and Stephen Morse. "Waste Separation Behaviour of College Students under a Mandatory Policy in China: A Case Study of Zhengzhou City." International Journal of Environmental Research and Public Health 17, no. 21 (November 5, 2020): 8190. http://dx.doi.org/10.3390/ijerph17218190.

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The need for effective solid waste management (SWM) is an important environmental and public health issue. As a key way of minimizing municipal solid waste (MSW), source separation has in recent years become the centre of discussion in China. Following the example of Shanghai, the city of Zhengzhou introduced its mandatory waste separation measures on 1 December 2019. But does the mandatory regulation work? This study aims to investigate the waste separation behaviour of college students in Zhengzhou under the mandatory regulation and the motivations behind students’ behaviour. A questionnaire-based survey was carried out on 62 university campuses in Zhengzhou City, and a total of 1747 valid questionnaires were completed across these campuses and analysed. It was found that under Zhengzhou’s mandatory measures, college students do have a basic knowledge of waste separation and most are familiar with where kitchen waste should be placed, but they have problems categorizing some recyclables such as glass, hazardous waste such as lightbulbs and other waste such as cigarette butts and napkins. It was also found that college students’ waste separation behaviour, their attitude towards waste separation and the convenience of waste sorting facilities in Zhengzhou in the mandatory era have been improved compared to the era prior to mandatory waste separation. The results also indicate that most of college students (86.7%) always or sometimes undertake waste separation, and students majoring in science and senior year undergraduates are more likely to participate in the practice of waste separation. Other influencing factors of college students’ waste separation behaviour include convenience of waste sorting facilities, their willingness to separate waste, knowledge of a related field, attitude towards waste separation, peer pressure as well as the existence of a reward and penalty system. Management strategies for improving college students’ waste separation behaviour under mandatory regulation are also discusses and a number of recommendations for improvement are made.
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7

Liu, Ruiliang, A. Mark Pollard, Jessica Rawson, Xiaojia Tang, Peter Bray, and Changping Zhang. "Panlongcheng, Zhengzhou and the Movement of Metal in Early Bronze Age China." Journal of World Prehistory 32, no. 4 (November 27, 2019): 393–428. http://dx.doi.org/10.1007/s10963-019-09137-w.

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AbstractThe role of Panlongcheng—a walled settlement on the Yangtze River with obvious links to the Erligang capital at Zhengzhou, ~ 500 km to the north—in early Bronze Age China has been the subject of much debate. Panlongcheng is a typical Erligang site (~ 1500–1300 BC), with evidence for people of elite status, unlike any other site apart from Zhengzhou itself. The tombs and bronzes at Panlongcheng, as well as other materials, closely resemble those at Zhengzhou. Why was Panlongcheng established along the Yangtze River, and what were the Erligang elites doing there? Considering the rich copper deposits in this area, it is widely assumed that the major function of Panlongcheng was to ship metal to Zhengzhou, and in return to receive bronze vessels from Zhengzhou. The purpose of this paper is to revisit this discussion through a re-evaluation of the scientific data on the bronzes from each site. A series of differences and similarities in the chemical and isotopic compositions of the metal objects at Panlongcheng and Zhengzhou are identified, suggesting that the relationship was more complex than was previously thought. In this light, despite a close social and presumably political affiliation with Zhengzhou, Panlongcheng appears likely to have had its own metal-casting capability, rather than having to rely completely on finished objects imported from Zhengzhou. This discovery encourages scholars to re-consider the metal supply network and the underlying political landscape in early dynastic China, shifting from a linear model to a complex but probably more realistic one.
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8

Liu, Chang, Yongge Hu, Assemgul Taukenova, Guohang Tian, and Bo Mu. "Identification of Wetland Conservation Gaps in Rapidly Urbanizing Areas: A Case Study in Zhengzhou, China." Land 12, no. 1 (January 10, 2023): 221. http://dx.doi.org/10.3390/land12010221.

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Exploring protected area (PA) siting from a biodiversity perspective is critical in mitigating human impacts on ecosystems. This paper used the MaxEnt model to predict the geographic distribution patterns of wetland species in Zhengzhou and the environmental factors affecting species’ habitat selection. Environmental variables were screened by correlation analysis to avoid affecting the prediction results due to overfitting of the model. The AUC value of the training set of the model ROC curve was above 0.8, and the prediction accuracy was high. The prediction results showed that the only nature reserve in Zhengzhou, Yellow River Wetland Nature Reserve, currently covers only 10.25% of the total area of the high suitability areas for plants and 17.54% of the high suitability habitat areas for waterfowl in the whole area of Zhengzhou. The potential suitability areas of wetland species outside the reserve can provide a basis for site selection for wetland conservation planning in Zhengzhou. It was found that the geographic distribution of wetland species in Zhengzhou is constrained by the distribution of water bodies, bioclimatic variables, land cover, and population density.
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9

Wen, Yi, and Xin Wang. "New Ways of City Tourism Industry Clusters Construction – A Case of Construction of Zhengzhou City Travel Hub." Applied Mechanics and Materials 438-439 (October 2013): 1843–45. http://dx.doi.org/10.4028/www.scientific.net/amm.438-439.1843.

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From the overall urban development strategy, breaking through the traditional concept of urban tourism distribution center construction and using the new scenery spot operating model to build Zhengzhou city tourism industrial clustering region not only can make up for the citys lack of a tourism distribution center, but also is beneficial for the new districts overall development and construction in west Zhengzhou city, thus to promote the adjustment and optimization of industrial structure and spatial structure in Zhengzhou city.
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10

Zhao, Xiuyan, and Changhong Miao. "Spatial-Temporal Changes and Simulation of Land Use in Metropolitan Areas: A Case of the Zhengzhou Metropolitan Area, China." International Journal of Environmental Research and Public Health 19, no. 21 (October 28, 2022): 14089. http://dx.doi.org/10.3390/ijerph192114089.

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Metropolitan areas are the main spatial units sustaining development. Investigating internal factor changes in metropolitan areas are of great significance for improving the quality of development in these areas. As an emerging national central city of China, Zhengzhou has experienced rapid urban expansion and urbanization. In this study, principal component analysis and the model and Geodetector model were used to comprehensively analyze the influencing factors of land use change in Zhengzhou from 1980 to 2015. Based on the CA–Markov model, we improved the accuracy of multi-criteria evaluation of suitability factors and simulated land use change in 2015. The results show that land use conversions in the study area between 1980 and 2015 were frequent, with the areas of farmland, woodland, grassland, water, and unused land decreasing by 5.00%, 17.12%, 21.59%, 18.31%, and 94.48%, respectively, while construction land increased by 53.61%. The key influences on land use change are the urbanization and growth of residential or non-agricultural populations. In 2035, the area of farmland in the study area will decrease by 11.09% compared with that in 2015 and construction land will increase by 38.94%, while the area of other land use types will not significantly change. Zhengzhou, as the center city, forms a diamond-shaped core development area of Zhengzhou–Kaifeng–Xinxiang–Jiaozuo, while Xuchang is considered an independent sub-center uniting the surrounding cities for expansion. With its radiation power of unipolar core development for many years and the developmental momentum of Zhengzhou–Kaifeng integration, Zhengzhou city jointly drives the economic development of the surrounding cities. The protection of farmland and control of the expansion of construction land are the major challenges for the Zhengzhou metropolitan area to achieve sustainable development.
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Дисертації з теми "Zhengzhou"

1

RAMONDETTI, LEONARDO. "The Enriched Field. Urbanising the Central Plains of China." Doctoral thesis, Politecnico di Torino, 2020. http://hdl.handle.net/11583/2842525.

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2

Cheng, Yu Hsiang, and 鄭宇翔. "Strategic Marketing Analysis of Designing Campaign in Retail Store: A Case Study of Buynow Zhengzhou Branch." Thesis, 2013. http://ndltd.ncl.edu.tw/handle/39910256248623740655.

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3

Hsiao, Meichi, and 蕭媚綺. "The Research for Mainland China''s Futures Market - The Efficiency Test for the Argriculture Futures of China Zhengzhou Commodities Exchange." Thesis, 1994. http://ndltd.ncl.edu.tw/handle/58853951872263439301.

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Анотація:
碩士
國立政治大學
國際貿易學系
82
It is now widely accepted that financial price series are generally not stationary and consequently, conventional statisti- cal procedures like F-statistic and t-statistic are no longer appropriate for testing market efficiency and estimation. Since nonstationary variables have infinite variance that make the F- test or t-test invalid, the standard hypothesis testing does not apply to time series with unit roots. This article adopts Engle and Granger''s (1987) two-stage estimation. Firstly, apply augu- mented Dickey & Fuller unit root test (1981) to the argricultur markets are with unit roots which means both time series variables are nonstationary. Secondly, apply Engle & Granger''s (1987) Cointegration Test to test whether the cointegration relationship, including wheat, corn and soybean futures market, between CZCE and CBOT exists or not, the former one is established on May 28th, 1993 in Mainland China and the latter one is established since 1865 in the United States. The result is the wheat, corn and soybean futures prices in these two markets are not cointegrated which implys by now these two markets have no longterm equilibrium relationship, also implys CZCE and CBOT are segmented, not cointegrated. On the contrary, applying Engle & Granger''s (1987) Cointegration Tests to test the different argriculture futures market in CZCE, cointegration can not be rejected. That implys one argriculture futures price can be predicted by other argriculture futures price and the market efficiency hypothesis is rejected. Therefore this article has the following conclusion : the empirical results by now presented the rejection of the market efficiency hypothesis for three argriculture products -- wheat, corn, and soybean -- traded on China Zhengzhou Commodities Exchange.
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Chen, Chi-wen, and 陳啟文. "The Study on Reforms of China''s Household Registration System: The Case of Shijiazhuang City and Zhengzhou City." Thesis, 2011. http://ndltd.ncl.edu.tw/handle/98627152289866119186.

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Анотація:
碩士
銘傳大學
社會科學院兩岸關係與安全管理碩士在職專班
99
Since the household registration system of the advanced west countries adopt the principle of inhabiting and removing freedom, only Mainland China, North Korea and Benin implement the strict household registration system. Especially Mainland China, its planned economic system causes two dual household registration management system that cut apart in urban and rural areas. Following income gap get wide constantly and contradiction phenomenon conspicuous in urban and rural areas of Mainland China, may make people wonder will that cause the impact to the reform of the household registration system? After its household registration system reform, if a large amount of population from other places pours into, which kind of influence will be caused? And which kind of transition will be made to household registration system? All evoke the research motive and purpose. Shijiazhuang in Hebei Province and Zhengzhou in Henan Province are chosen as the cases from 2001 to 2004; the former turn on household registration system of provincial capital, the latter renowned for complete household registration system reform but stop. Besides, secondary materials analysis and case study are adopted as the research approach, new institutionalism is complemented as the research frame. And combine the view of path dependency theory, imposed institutional change and induced institutional change, to probe into the prospect of the reform of household registration system. Would the senior level of the Communist Party of China could popularize the pilot experience of the local household registration in the future on earth, or go ahead via the local place, make the household registration system reform developed from grass-roots authority to the senior level . According to recovery of the research, the household registration system reform is the process that such a lot of interest groups as central government, local government, outside population and urban citizen, etc. play chess in many ways. The result depends on supplementary measures perfect or not. It proved in the case of Zhengzhou, its reform stopped suddenly due to public resources were insufficient; a smooth-going household registration system reform such as Shijiazhuang city, its constant reform rely on the support of the central authority policy. Looking forward to the future, household registration system reform in Shijiazhuang city will move forward continuously; however, Zhengzhou city appears peri-urban, there is on break-through sign of household registration system reform. Now, the household registration system reform has been the tendency, the Central Economic Working Conference of the CPC in January of 2010 required to relax limit of household registration system reform in the small and medium-sized cities and urban. According to the economic development objectives in Mainland China, the time to reach development levels of middle-income countries is 2050; if economic development is enough to support the society security in rural equal to the city, it will help population move towards real free migration.
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劉藝君. "The Communication between poetry and poetics: The Confirmation and Encounter of “Time of Exile and Saliva” and “Poetics of Exile” by Jian Zhengzhen." Thesis, 2015. http://ndltd.ncl.edu.tw/handle/wdaf68.

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Книги з теми "Zhengzhou"

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Zhengzhou Shi dang an guan. Zhengzhou jie fang, 1948.10.22 = Zhengzhou jiefang. 8th ed. Beijing Shi: Zhongguo dang an chu ban she, 2009.

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2

Chuang shi gu du: Zhengzhou = Zhengzhou, China. Zhengzhou Shi: Henan ke xue ji shu chu ban she, 2011.

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Gu du Zhengzhou. Hangzhou Shi: Hangzhou chu ban she, 2011.

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4

Zou jin Zhengzhou Huang He shi di: Zoujin Zhengzhou Huanghe shidi. Beijing: Zhongguo lin ye chu ban she, 2010.

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5

Zou jin Zhengzhou Huang He shi di: Zoujin Zhengzhou Huanghe shidi. Beijing: Zhongguo lin ye chu ban she, 2010.

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6

Feng ya da Zhengzhou. Beijing Shi: Jie fang jun chu ban she, 2010.

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7

Zhengzhou Dashigu (2002 - 2003). Beijing: Ke xue chu ban she, 2004.

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8

Niu, Hejun, and Chao Kang. Zhengzhou tu zhong zhi. 8th ed. Zhengzhou: Zhong yuan nong min chu ban she, 2009.

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9

Lu, Shuzhen. Zhengzhou ren shi zhi. 8th ed. Zhengzhou Shi: Zhongzhou gu ji chu ban she, 1990.

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10

Bao, Junhui. Song dai de Zhengzhou. Beijing: Ke xue chu ban she, 2014.

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Частини книг з теми "Zhengzhou"

1

Zhang, Qiuping, and Leilei Li. "Analysis on the Construction of Zhengzhou Airport Economy Zone Under Internet Economy." In Advances in Intelligent Systems and Computing, 45–51. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-70042-3_7.

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2

Sun, Shuying. "The Internet Effects on Students Communication at Zhengzhou Institute of Aeronautical Industry Management." In Advances in Computer Science, Environment, Ecoinformatics, and Education, 418–22. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-23357-9_74.

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3

Fan, Yujing. "Theoretical implementation of extreme precipitation in Zhengzhou based on the Extreme Value Theory." In Advances in Energy, Environment and Chemical Engineering Volume 1, 629–38. London: CRC Press, 2022. http://dx.doi.org/10.1201/9781003330165-92.

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4

Duan, Yu-zhou, Hang Jing, Yi-wen Wang, and Kun Shi. "Analysis of Public Transportation Performance Based on GPS Data: Case Study of Zhengzhou, China." In Green Intelligent Transportation Systems, 739–49. Singapore: Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-13-0302-9_72.

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5

Li, Xia. "The Analysis on the Factors of Developing Zhengzhou City into a Regional Center of International Logistics." In Communications in Computer and Information Science, 586–91. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-23065-3_84.

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6

Ma, Yuanchen, and Jiahao Fan. "Mitigate the junction of main and branch road traffic congestion based on transport modeling of a case study in Zhengzhou, China." In Advances in Frontier Research on Engineering Structures Volume 2, 432–40. London: CRC Press, 2023. http://dx.doi.org/10.1201/9781003363217-56.

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Smith, Norman. "Li Zhengzhong: Bamboo Shoot (1945)." In Writing Manchuria: The Lives and Literature of Zhu Ti and Li Zhengzhong, 132–42. London: Routledge, 2023. http://dx.doi.org/10.4324/9781003341123-15.

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Smith, Norman. "Preface to Cherry." In Writing Manchuria: The Lives and Literature of Zhu Ti and Li Zhengzhong, 51–53. London: Routledge, 2023. http://dx.doi.org/10.4324/9781003341123-4.

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Smith, Norman. "Me and My Children (1943)." In Writing Manchuria: The Lives and Literature of Zhu Ti and Li Zhengzhong, 74–79. London: Routledge, 2023. http://dx.doi.org/10.4324/9781003341123-8.

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Smith, Norman. "The Joy of Life (1944)." In Writing Manchuria: The Lives and Literature of Zhu Ti and Li Zhengzhong, 60–66. London: Routledge, 2023. http://dx.doi.org/10.4324/9781003341123-6.

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Тези доповідей конференцій з теми "Zhengzhou"

1

Huang, Yanchun. "Research on Development Strategy of Zhengzhou-Europe Block Trains." In Proceedings of the 2019 2nd International Conference on Sustainable Energy, Environment and Information Engineering (SEEIE 2019). Paris, France: Atlantis Press, 2019. http://dx.doi.org/10.2991/seeie-19.2019.68.

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2

Quan, Zhi, and Ting Tian. "The analysis of the outdoor powerline channel in Zhengzhou." In 2016 8th IEEE International Conference on Communication Software and Networks (ICCSN). IEEE, 2016. http://dx.doi.org/10.1109/iccsn.2016.7586678.

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3

Ge, Shen, and Xu Dong Ming. "Analysis on Seasonal Variation of Cloud Cover in Zhengzhou." In AIPR 2021: 2021 4th International Conference on Artificial Intelligence and Pattern Recognition. New York, NY, USA: ACM, 2021. http://dx.doi.org/10.1145/3488933.3488979.

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4

Cao, Lian-hai, Ji-hong Qu, and Nan-xiang Chen. "Analysis on Measuring Urban Sprawl and Driving Forces in Zhengzhou." In 2010 International Conference on E-Product E-Service and E-Entertainment (ICEEE 2010). IEEE, 2010. http://dx.doi.org/10.1109/iceee.2010.5660603.

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5

Ma, Zhan-Kui, and Yu-Xiao Fu. "Zhengzhou wenhua lu and nongye lu intersection blocking scheme design." In 2015 International Conference on Mechanics and Mechatronics (ICMM2015). WORLD SCIENTIFIC, 2015. http://dx.doi.org/10.1142/9789814699143_0140.

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6

WEI, Linghong. "Research on the Transport Management System Zhengzhou Airport Economy Zone." In 2016 International Conference on Architectural Engineering and Civil Engineering. Paris, France: Atlantis Press, 2017. http://dx.doi.org/10.2991/aece-16.2017.66.

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7

Wang, Zhi-liang, and Hui-hua Sheng. "Rainfall Prediction Using Generalized Regression Neural Network: Case Study Zhengzhou." In 2010 International Conference on Computational and Information Sciences (ICCIS). IEEE, 2010. http://dx.doi.org/10.1109/iccis.2010.312.

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8

Liu, Jianhua, Rui Zhang, and Lailing Wang. "Prediction of Urban Short-Term Water Consumption in Zhengzhou City." In 2010 International Conference on Intelligent Computation Technology and Automation (ICICTA). IEEE, 2010. http://dx.doi.org/10.1109/icicta.2010.535.

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9

"Collaborative Research on Cross-Border E-Commerce Logistics in Zhengzhou." In 2017 3rd International Conference on Innovation Develpment of E-commerce and Logistics. Francis Academic Press, 2018. http://dx.doi.org/10.25236/icidel.2017.055.

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10

XUE, Ke. "Empirical Study on Logistics and Regional Economic Development in Zhengzhou." In Proceedings of the 2019 International Conference on Economic Management and Cultural Industry (ICEMCI 2019). Paris, France: Atlantis Press, 2019. http://dx.doi.org/10.2991/aebmr.k.191217.064.

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