Analysis of constraints and innovation of chemistry experiment implementation in high school in Deli Serdang, Indonesia

Fathia Namira, W. Azura, Ayu Miranda, H. Nisa, S. Silaban, Retno Dwi Suyanti, A. Darmana
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引用次数: 4

Abstract

Practical activities play an important role in science education. Through it, students develop a deeper understanding of standing theoretical concepts, skill, utilization of technology, and methods for investigation with direct manipulation of related materials. Effective use of laboratories is one of the requirements in learning chemistry, especially in experiment material. However, problems that are often encountered in learning in the laboratory are laboratory management which includes the procurement process, application process, and the maintenance process. The research method used was observation, document recording and interview with all chemistry teachers and students at Labuhan Deli Senior High School and Percut Sei Tuan Senior High School, District of Deli Serdang, Indonesia. Stages in the research of this are (1) observation based on National Education Standards, (2) observation of chemistry experiments implementation, (3) observation of constraint and problems laboratory at school, and (4) determine alternative solution. The result showed that area of chemistry laboratory has suitable with BSNP standart, but the standard of facilities and infrastructure category reference scale (PAP), showed less category results. So the settlement by researchers on this problem is to do a simple practicum that can be done in an open space or using the technology (virtual laboratory) to increase the students’ skill in industrial 4.0.
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印尼Deli Serdang高中化学实验实施的制约因素及创新分析
实践活动在科学教育中占有重要地位。通过对相关材料的直接操作,学生对现有的理论概念、技能、技术的运用和调查方法有了更深的理解。有效地利用实验室是学习化学,尤其是实验材料的要求之一。然而,在实验室学习中经常遇到的问题是实验室管理,包括采购过程、应用过程和维护过程。本研究采用观察法、文献法和访谈法,对印度尼西亚Deli Serdang地区Labuhan Deli高中和Percut Sei Tuan高中的所有化学教师和学生进行了调查。这一研究的阶段是(1)基于国家教育标准的观察,(2)化学实验实施的观察,(3)学校约束和问题实验室的观察,(4)确定替代解决方案。结果表明,化学实验室区域符合BSNP标准,但设施和基础设施类别参考量表(PAP)标准的类别结果较少。因此,研究人员对这个问题的解决方案是做一个简单的实习,可以在一个开放的空间或使用技术(虚拟实验室)来提高学生在工业4.0中的技能。
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