This study aimed to analyze the relations between smartphone addiction, personality traits, achievement motivation and problem-solving ability and explore the influence of smartphone addiction, personality traits, achievement motivation on university students' problem-solving ability. 682 students (male = 227, female = 455) from a Chinese public university participated in the research voluntarily. Data were collected by the short-version of the smartphone addiction scale, the ten-item personality inventory, the achievement motives scale, and the social problem-solving inventory. The correlations and multiple hierarchical regression analysis were used to analyze the data. The results were as follows: Firstly, it was found that there was a significant negative correlation between smartphone addiction and achievement motivation and problem-solving ability, a significant positive correlation between achievement motivation and problem-solving ability, and a significant correlation between the factors of personality traits and smartphone addiction and problem-solving ability respectively. Secondly, it was found that emotional stability of personality traits, smartphone addiction and the "fear of failure" sub-dimensions of achievement motivation significantly explained problem-solving ability. Based on these research results, some suggestions were given for the improvement of the educational field.
In this work, the N-doped TiO 2 /C composite is successfully prepared using electrospinning technique. TEM, XPS and Raman techniques are used to characterize the morphologies and microstructure of the as-fabricated composite, confirming that the incorporation of N into TiO 2 /C can not only reduce the d-spacing of TiO 2 nanocrystals, but also can transform it into another TiO 2 crystal form. Furthermore, amorphous carbon in this composite can be transferred to graphite under the effect of TiO 2 during calcination processes. The N-doped TiO 2 /C sample with variable pore sizes exhibit the largest specific surface area, and the crystal forms of TiO 2 are close related to the value of specific surface area and the pore sizes.
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