Social intelligence and entrepreneurial skills are important factors influencing individual academic performance and career development. Studies have shown that people with high social intelligence have the ability to understand and manage others and have an advantage in innovation. The entrepreneurial personality trait is precisely the courage to innovate. Therefore, there is a close relationship between entrepreneurship and social intelligence. In this study, the author explores the relationship between students' social intelligence level and entrepreneurial skills based on medical college students. This study used a cross-sectional descriptive method for related research. The results showed that the overall scores of the entrepreneurial skills assessment criteria of the students were lower. This shows that students' performance levels of entrepreneurial skills are relatively weak. This result shows that we need to further improve the entrepreneurial skills of medical university students and take the necessary measures to improve students' social intelligence.
The rapid reinforcement of reinforced concrete members is one of the research hotspots in the field of structural reinforcement. In this paper, the packaging technology is applied to the field of reinforced concrete structure reinforcement, and new technology of composite reinforcement of prestressed plastic steel strips and angle steel is proposed. Furthermore, in this work, axial compression tests of three prestressed plastic steel strips‐angle steel composite reinforced concrete columns and one unreinforced reinforced concrete column were carried out and studied the prestressed plastic steel strips‐clad steel composite reinforcement and plastic steel strips. Furthermore, the effect of different reinforcement spacings on the failure characteristics, bearing capacity, and ductility of components were studied. The test results show that the failure characteristics of the reinforced concrete columns reinforced with prestressed plastic‐steel strips and angle steels were the same as those of unreinforced specimens. However, the initial cracking load of the reinforced specimens was found to be greater and as the spacing of plastic‐steel strips increased, the bearing capacity also increased. Moreover, their values were found to be 36.6%, 13.6%, and 8.2%, and the maximum increase in the limit displacement was 92.9%, 52.7%, and 22.6%, respectively. From the results, it was observed that the composite reinforcement technology could improve the ultimate bearing capacity and the ductility of components and has a good application value.
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