Digital infrastructure and cognitive ability of children

被引:0
作者
Dui, Haojian [1 ]
机构
[1] Renmin University of China, Beijing
来源
MCB Molecular and Cellular Biomechanics | 2024年 / 21卷 / 04期
关键词
children; cognitive ability; digital infrastructure; extended two-way fixed effects estimator;
D O I
10.62617/mcb769
中图分类号
学科分类号
摘要
Digital technologies have become an integral part of most children's lives, significantly influencing their development. This study takes the Broadband China Pilot Policy as a quasi-experiment, using the data from China Family Panel Studies (CFPS) to analyze the effects of digital infrastructure on children's cognitive ability. The extended two-way fixed effects estimator was employed to conduct the Staggered Difference-in-Differences estimation. The findings indicate that the average treatment effect of treatment group of “Broadband China” is significantly positive on children's cognitive ability. Additionally, heterogeneities of gender and urban-rural were found: (1) The Broadband China policy had a significant positive impact on boys only; (2) The policy had a greater and more significant impact on the word test scores results of urban children; (3) The policy had a negative impact on the math test scores of urban children, while showing a positive impact on the math test scores of rural children. Finally, the paper makes the following recommendations: (1) Digital infrastructure development should be emphasized; (2) More emphasis should be placed on rural areas when building digital infrastructure; (3) Gender differences should be considered when formulating policies to help girls benefit from digital technologies. Copyright © 2024 by author(s). Molecular & Cellular Biomechanics is published by Sin-Chn Scientific Press Pte. Ltd. This work is licensed under the Creative Commons Attribution (CC BY) license. https://creativecommons.org/licenses/by/4.0/
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  • [1] Tang J, Zhao X., Does the new digital infrastructure improve total factor productivity?, Bulletin of Economic Research, 75, 4, pp. 895-916, (2023)
  • [2] Sestino A, Kahlawi A, De Mauro A., Decoding the data economy: a literature review of its impact on business, society and digital transformation, European Journal of Innovation Management, (2023)
  • [3] Zhao X, Wu S, Yan B, Et al., New evidence on the real role of digital economy in influencing public health efficiency, Scientific Reports, 14, 1, (2024)
  • [4] Fenwick T, Edwards R., Exploring the impact of digital technologies on professional responsibilities and education, European Educational Research Journal, 15, 1, pp. 117-131, (2016)
  • [5] Iivari N, Sharma S, Venta-Olkkonen L., Digital transformation of everyday life-How COVID-19 pandemic transformed the basic education of the young generation and why information management research should care?, International journal of information management, 55, (2020)
  • [6] Banerjee A V, Cole S, Duflo E, Et al., Remedying education: Evidence from two randomized experiments in India, The quarterly journal of economics, 122, 3, pp. 1235-1264, (2007)
  • [7] Biagi F, Loi M., Measuring ICT use and learning outcomes: Evidence from recent econometric studies, European Journal of Education, 48, 1, pp. 28-42, (2013)
  • [8] Zhang D, Liu L., How does ICT use influence students' achievements in math and science over time? Evidence from PISA 2000 to 2012, Eurasia Journal of Mathematics, Science and Technology Education, 12, 9, pp. 2431-2449, (2016)
  • [9] Skryabin M, Zhang J J, Liu L, Et al., How the ICT development level and usage influence student achievement in reading, mathematics, and science, Computers & Education, 85, pp. 49-58, (2015)
  • [10] Hu X, Gong Y, Lai C, Et al., The relationship between ICT and student literacy in mathematics, reading, and science across 44 countries: A multilevel analysis, Computers & Education, 125, pp. 1-13, (2018)