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Dr Hafez Mahdnejad, Dr Hamid Bargi, Dr Alireza Gholami,
Volume 0, Issue 0 (3-1921)
Abstract

Today, the cities of the country are faced with a kind of duality and inequality. As urban inequality has become one of their spatial characteristics. Therefore, the purpose of the present study is to Zoning of spatial inequality neighborhoods of Isfahan metropolis based on economic indicators for better planning for organizing, empowering and enhancing their quality of life. This study is an applied one and its method is descriptive-analytical. The research data were obtained from Statistical Blocks of Iran Statistical Center (2016). The statistical method used to analyze the data, compile the indices and extract the final urban poverty indices with AHP, Topsis and Hotspot. The findings show that the coefficients of influence on the components of the main occupational, occupational, housing and vehicle components respectively are: 0.266, 0.317, 0.223 and 0.184. According to the final index of poverty status in terms of economic indicators, 23 neighborhoods (11.98%) have good quality, 37 neighborhoods (19.27%) have relatively good quality, 52 neighborhoods (27.08%) are in moderate condition, 64 Neighborhoods (33.33%) are in poor condition and finally 16 neighborhoods equivalent to 8.33% of all metropolitan areas of Isfahan are in poor condition. In total, about 42% of all metropolitan areas of Isfahan are in poor condition. The results of the Hotspot model show that neighborhoods with higher than average values in the south and partly in the center of the city and neighborhoods with lower than average values are located in the east and partly west of Isfahan. In fact, the city can be divided into northern and southern parts.
Dr Hafez Mahdnejad, Dr Ahmad Zanganeh,
Volume 0, Issue 0 (3-1921)
Abstract

Daedeok Innopolis as a shining symbol of science and technology, the symbol and heart of South Korea's research activities, has now become a global center of innovation. Through research institutes and universities, it has very suitable facilities for technology commercialization in specialized industrial sectors such as information and communication technology. Based on this, the aim of the current research is development explanation and evolution model of the spatial structure of Daedeok Innopolis. Its achievements and experiences should be used for the development of knowledge base in the country. The research method is descriptive-analytical and developmental. The content analysis method was used to analyze the data.
The results show that Daedeok Innopolis has been divided into five regions (with an area of 70.27 km) to realize its operational goals. These five regions consist of area 1 as the Daedeok research complex; area 2, integrated site of investment companies with advanced technology; area 3 , place of concentration of industrial complexes; area 4 , the international scientific trade belt and future development site, and finally area 5 , national defense industry development zone. About 11% of all PhD-level researchers in Korea are employed at Daedeok Innopolis. Currently, 22,000 researchers and staff are conducting research in advanced fields, and 10% of Korea's research workforce is at Daedeok Innopolis. 30 state-funded institutions, six universities, more than 400 corporate research and development centers and more than 1,200 high-tech companies are located on this site. Risk-taking businesses make up more than 94% of all companies. The stages of spatial expansion of Daedeok Innopolis consist of the establishment of Daedeok Scientific Town (1973-1993), the creation of innovation (1997-1993), the formation of innovation cluster (1998-2003) and the growth stage of innovation cluster (2004 to now). In general, the development and evolution model of Daedeok Innopolis includes the initial stage (scientific park model); the development stage (technopolis model) and the maturity stage (innovation cluster model).

 

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