向有特殊学习需求的九年级学生教授机械系统和控制的创新方法

Elizabeth Katane Kekana, Thokozani Isaac Mtshali, Manto Sylvia Ramaligela
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引用次数: 1

摘要

机械系统和控制是技术学科的一部分,涉及到使用齿轮、皮带、链条、电梯和自动扶梯等各种机械和装置的知识和技能。科技科教师需要熟悉创新的教学方法,以指导有特殊需要的学生。本研究旨在探索在林波波省摩羯座地区向有特殊需要的九年级学生教授《机械系统与控制》的创新教学策略。研究采用了定性探索性案例研究设计和同质目的性抽样,从摩羯区的两所特殊学校中挑选了两名技术教师。研究结果表明,科技教师在确定和实施适当的创造性教学策略以有效地向有特殊学习需求的学生传授机械系统与控制课程内容方面遇到了巨大挑战。研究还表明,尽管科技教师在教学过程中使用了 PowerPoint 演示文稿、叙述性论述、教科书和人工制品,但这些策略并不总是对有特殊学习需求的学习者有效。因此,研究建议教师接受有关教授有特殊学习需求的学习者的全面培训,重点关注不同的教学法和方法,如引导式探索法、技术整合、可视化和使用科技工艺品来加强机械系统与控制的教学。这些以学习者为中心的方法使教师能够满足学习者的个性化学习需求。
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Inventive Ways of Teaching Mechanical Systems and Control to Grade 9 Learners with Special Learning Needs
Mechanical systems and control are part of the Technology subject strand, which involves gaining knowledge and skills in using various machinery and mechanisms such as gears, belts, chains, elevators, and escalators. Technology teachers need to be familiar with innovative teaching methods for instructing learners with special needs. This study aimed to explore creative teaching strategies for teaching Mechanical Systems and Control to grade 9 learners with special needs in the Capricorn district of Limpopo. A qualitative exploratory case study design and homogenous purposive sampling were employed to select two Technology teachers from two special schools in the Capricorn district. The findings of this study revealed that technology teachers encountered significant challenges in identifying and implementing appropriate creative teaching strategies to deliver the content of Mechanical Systems and Control effectively to learners with special learning needs. The study also indicated that although Technology teachers utilized PowerPoint presentations, narrative discourses, textbooks, and artifacts during instruction, these strategies were not always effective for learners with special learning needs. Consequently, the study recommends that teachers receive comprehensive training on teaching learners with special learning needs, focusing on different pedagogies and methods such as the guided exploration method, technology integration, visualization, and the use of technological artifacts to enhance instruction in Mechanical Systems and Control. These learner-centered methods enable teachers to cater to learners' individual learning needs.
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