尼日利亚西南部的科学教育:对教育政策的启示

A. Adebayo, Oluwatoyin Sekoni, Scholastica Lan, Oladoyin Odubanji, O. Akinyemi, T. Obembe, K. Osungbade, Anjola Olanipekun, A. Omigbodun
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引用次数: 0

摘要

对高质量科学教育的需求要求对科学教育进行定期评估,以提高科学教育的质量,特别是在先前存在挑战的领域。本研究旨在评估尼日利亚西南部埃基蒂州的科学教育现状。横断面设计,结合定量和定性数据收集方法的混合方法,在记录回顾后使用。采用整群抽样技术选择学校。科学教育状况通过三个参数确定:学生在高中毕业证书考试中科学科目的通过率,科学教师的简介(用14项自我管理的问卷评估)和使用观察性检查表的科学教育基础设施的可用性和功能。使用深度访谈指南对相关利益相关者进行了深度访谈。定量和定性数据分别用描述性统计和专题方法进行分析。数学和生物的通过率低于50%,但物理、化学和农业科学的通过率高于50%。科学师生比例为1:8,37.5%的教师是尼日利亚科学教师协会的成员。一所学校(8.3%)拥有设备齐全的计算机图书馆。实验室设施大多是多用途的。四分之一的学校没有图书馆,33.3%的学校图书馆设施严重不足。受访者对科学教育状况的看法分歧很大,有的人认为很好,有的人则不这么认为。该研究揭示了我国科学教育现状不佳,科学师生比例低,科学教育基础设施缺乏。建议采取干预措施改善这些发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Science Education In South-West Nigeria: Implications For Educational Policy
The demand for quality science education requires periodic assessment for its improvement especially in areas with previous challenges. This study was conducted to assess the current status of science education in Ekiti State, Southwest Nigeria. A cross-sectional design, combining a mixed method of quantitative and qualitative data collection approach, was used following a records review. Schools were selected using a cluster sampling technique. Science education status was ascertained by three parameters: students’ pass rates in science subjects in the Senior Secondary School Certificate Examination, science teachers’ profile (assessed with a 14-item self-administered questionnaire) and availability and functionality of infrastructure for science education using an observational checklist. In-depth interviews were conducted among relevant stakeholders using an in-depth interview guide. Quantitative and qualitative data were analyzed with descriptive statistics and a thematic approach respectively. Students’ pass rates were below 50% in Mathematics and Biology but above in Physics, Chemistry and Agricultural Science. The science teacher: student ratio was 1:8 and 37.5% of the teachers were members of the Nigerian Science Teachers Association. One school (8.3%) had a computer library that was adequately equipped. Laboratory facilities were mostly multipurpose in nature. A quarter of the schools had no library while 33.3% had grossly inadequate library facilities. Opinions about science education status among the respondents was widely divergent with some feeling that it was good while others felt otherwise. This study revealed poor status of science education as evidenced by a low science teacher-student ratio and lack of basic infrastructure for science education. Interventions to improve these findings are recommended.
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