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Enhancing Students’ Logical-Thinking Ability in Natural Science Learning with Generative Learning Model

机译:具有生成学习模型的自然科学学习中的学生逻辑思维能力

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摘要

The logical-thinking ability is one of the important competencies of 21st century that should be empowered. It is one of the aspects in a cognitive science domain that has not been implemented effectively in teaching and learning in the class. Then, this study aimed to analyzed the influence of generative learning model to enhance students' logical-thinking ability. This study was also conducted by using a quasi-experimental study with pretest-posttest non-equivalent control group design. The sample was chosen by using simple random sampling technique. This study involved two classes which had 67 participants consisting of 34 students in Class VIII.9 as an experimental group and 33 students in Class VIII.7 as a control group. The researcher used the instrument of logical-thinking ability formulated in the form of multiple choice tests with five alternative answers that had been tested for its validity and reliability. The analysis of data employed t-test using SPSS 21. The result indicated that the t-count > t-table (2.44 > 1.99) and p-value = 0.017 (p <0.05). It could be concluded that the application of generative learning model resulted in a significant influence on students' logical-thinking ability. The result of the analysis could be used by the schools for evaluating the quality of natural science learning in order to encourage students’ logical-thinking ability.
机译:逻辑思维能力是21世纪的重要能力之一,应该有赋权。它是认知科学领域的方面之一,尚未在课堂上教学和学习中有效实施。然后,本研究旨在分析生成式学习模式提高学生逻辑思维能力的影响。还通过使用预测试后的非等效对照组设计进行了准实验研究进行了该研究。通过使用简单的随机抽样技术选择样品。这项研究涉及两所列课程,其中67名参与者由34名学生组成,该等参与者将34名学生组成,作为一个实验组和33岁的学生作为一个对照组。研究人员使用了以多种选择测试形式制定的逻辑思维能力仪器,其中五种替代答案已经过了其有效性和可靠性。使用SPSS 21采用T检验的数据分析。结果表明T-Count> T-Tabes(2.44> 1.99)和p值= 0.017(P <0.05)。可以得出结论,生成学习模式的应用导致了对学生的逻辑思维能力的重大影响。学校可以使用分析结果来评估自然科学学习的质量,以鼓励学生的逻辑思维能力。

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