In this paper we consider the formation of such an indicator of the urban environment as comfort. The aim of the study is to identify factors affecting this indicator and to draw up possible development paths in the conditions of our country. The main method used to study this topic is the analysis of received information on carrying out activities in foreign countries. As a result, it has been concluded that some projects can be implemented in Russia, but this topic requires more detailed study, as well as the development and implementation of a large number of projects in order to create a truly comfortable urban environment.
The aim of the work is to develop an algorithm for designing building constructions, namely their geometric construction (the geometrical location of points) in the form of an expression using the formula (equation) of geometric property of construction expressed in the projection by nonlinear functions. The article gives an algorithm for finding analytical dependencies of nonlinear functions used in applications. You must select a coordinate system before composing the curve equation. The type of the desired equation depends on the choice of the coordinate system. There are no rules that could guide one in choosing a coordinate system, and the ability to make the most rational choice is given only by experience. In this paper, the examples of the choice of coordinate systems show the form of functions, namely, their simplification. In some cases, geometric construction is the only way to present a graphic image of the building structure itself, no matter how complex it may be in the Cartesian coordinate system. The polar coordinate system is presented here as an alternative for unique structures and structures of increased complexity in the Cartesian coordinate system. This is achieved by establishing a relationship between the current coordinates of the point located on the projection of the construction and constants characterizing the properties of this construction, called a function on the plane and a surface in space in researches. The prospect of this approach has proven itself: in the construction of exquisite palace temples, beautiful architectural ensembles that make the space surrounding a person comfortable.
To study the effectiveness of the education system, the following indicators were determined. The first is the level of population participation in lifelong education per student who graduated from secondary school. The second is the share of costs per person for all types of retraining, advanced training, vocational training, the share of wages in GDP per person who graduated from secondary school. The third is the ratio of the average gross wages of workers with higher education to the labor productivity index, the number of studies under the age of 39 per person with higher education. A number of indicators of the process block are weakly correlated with each other and therefore all of them should be left for consideration. Although there is a relation of average density among some of indicators, it is most likely nonlinear, and therefore it can change dramatically over time. For a deeper interaction between blocks, one should consider the correlation between block processes, for example, the impact of funding for higher education and employment of the population who received this education, or job in the degree of graduates received secondary vocational education and higher education. In addition, this is the way the process block, namely its indicators, correlates with the rest of the indicators. In the future, it is necessary to calculate the final indicator of the impact of the current education system on the productivity in order to answer the question: under what indicators the system is productive.
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