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Combination of Inquiry Learning Model and Computer Simulation to Improve Mastery Concept and the Correlation with Critical Thinking Skills (CTS)

机译:查询学习模型与计算机模拟的组合,提高掌握概念及其与批判性思维技巧的相关性(CTS)

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Among the purposes of physics learning at high school is to master the physics concepts and cultivate scientific attitude (including critical attitude), develop inductive and deductive reasoning skills. According to Ennis et al., inductive and deductive reasoning skills are part of critical thinking. Based on preliminary studies, both of the competence are lack achieved, it is seen from student learning outcomes is low and learning processes that are not conducive to cultivate critical thinking (teacher-centered learning). One of learning model that predicted can increase mastery concepts and train CTS is inquiry learning model aided computer simulations. In this model, students were given the opportunity to be actively involved in the experiment and also get a good explanation with the computer simulations. From research with randomized control group pretest-posttest design, we found that the inquiry learning model aided computer simulations can significantly improve students' mastery concepts than the conventional (teacher-centered) method. With inquiry learning model aided computer simulations, 20% of students have high CTS, 63.3% were medium and 16.7% were low. CTS greatly contribute to the students' mastery concept with a correlation coefficient of 0.697 and quite contribute to the enhancement mastery concept with a correlation coefficient of 0.603.
机译:在高中物理学学习的目的中,掌握物理概念和培养科学态度(包括批判性态度),发展归纳和演绎推理技能。根据Ennis等人的说法,归纳和演绎推理技能是批判性思维的一部分。根据初步研究,缺乏缺乏的竞争力,从学生学习成果看出,低迷和学习过程,不利于培养批判性思维(以教师为中心的学习)。预测的学习模型之一可以增加掌握概念和火车CTS是询问学习模型辅助计算机模拟。在这一模型中,学生们有机会积极参与实验,并与计算机仿真进行了良好的解释。从研究与随机对照组预测试后设计,我们发现查询学习模型辅助计算机模拟可以显着提高学生的掌握概念,而不是传统(以教师为中心)的方法。随着查询学习模型辅助计算机模拟,20%的学生具有高CTS,63.3%是中等,16.7%低。 CTS大大贡献了学生的掌握概念,其相关系数为0.697,并且相当有助于增强掌握概念,其相关系数为0.603。

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