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An Investigation Of Application Of Mathematics Review To Improve Problem Solving Skills And Active Learning Of Engineering Students In Physics Applied to Engineering Education

机译:应用数学评论提高物理专业工程学生解决工程能力和主动学习的工程教育研究

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Mathematics is the soul of physics. They complement each other and are inseparable. Attired expertise of mathematics is an essential component in intuitive and active problem solving in physics. This study explores the extent up to which the mathematical competence supports the learners in improving their Problem-Based Learning Skills. In addition this study investigated student's active learning in Physics pertaining to the mathematical reviews encapsulated before the physics Classes applied to undergraduate engineering programs. Second-semester engineering students were focused on while conducting this study. While carrying out the tasks learners were expected to carry out arithmetic transfer to establish a connection between the two disciplines in a meaningful way in the inception of the class.Besides, they were expected to translate the numbers as concepts in physics as they advance in the topic. The transition phase from physics concepts to problem-solving is expected to be smooth pertaining to the mathematical framework students have shaped during the mathematical review session in the beginning of the class. The consideration of the achievement level of students in two disciplines in the preliminary stage of the study was extremely helpful in the later stage to analyze the outcome. Any modification in the normal approach to problem solving at any stage done by any of the students was tracked down. Student's ability to give meaning to the result obtained in the form of numbers during the problem solving session was investigated to identify their ability to conceptualize the answer in terms of physics. The transition phase from numbers to the concept is not smooth and thus contribute to the low understanding of conceptual physics.
机译:数学是物理学的灵魂。它们彼此互补且密不可分。数学的专业知识是解决物理问题中直观和主动问题的重要组成部分。这项研究探索了数学能力在多大程度上支持学习者提高他们基于问题的学习技能。此外,本研究调查了学生在物理上的主动学习,这与在将物理课应用于本科工程课程之前封装的数学评论有关。在进行这项研究时,第二学期的工程专业学生专注于此。在完成任务的过程中,希望学习者在课堂开始时进行有意义的算术转换,以有意义的方式在两门学科之间建立联系。此外,他们还希望随着数学的发展,将数字转换为物理学中的概念。话题。从物理概念到解决问题的过渡阶段,与学生在课堂开始时的数学复习中形成的数学框架有关,预计会很顺利。在研究的初期阶段,考虑两个学科的学生的成就水平在后期阶段对结果进行分析非常有帮助。任何学生在任何阶段完成的解决问题的常规方法的任何修改都可以找到。研究了学生在解决问题的过程中以数字的形式赋予所获得的结果以含义的能力,以识别他们根据物理学概念化答案的能力。从数字到概念的过渡阶段并不顺利,因此导致对概念物理学的了解不足。

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