使用问题解决模型来提高学习者分析牛顿引力物质的能力

Sabaruddin Sabaruddin
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引用次数: 8

摘要

数学分析重要的分析技能当学生能够理解物理学习中的分析时,学生将能够用与老师给出的例子不同的问题来回答问题。研究牛顿定律材料中认知分类学分析参与者思维增加的目的是通过使用问题解决学习模型来实现的。假设检验是通过比较学生初试(前测)和期末试(后测)的平均能力来完成的。检验假设的过程将检验正态性和同质性检验,作为使用参数统计学的要求,即使用t检验。根据研究结果,在dk=42时获得了tcount(8.25)值和ttable值,在2.02时获得95%置信水平。这显示了tcount>t表。因此,可以得出结论,学生在所使用的法律材料中对认知分类学的思维分析思想的扩展使用了解决问题的学习模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PENGGUNAAN MODEL PEMECAHAN MASALAH UNTUK MENINGKATKAN KEMAMPUAN BERPIKIR ANALISIS PESERTA DIDIK PADA MATERI GRAVITASI NEWTON
Mathematical analytics Important, analytical skills When students are able to understand analysis in physics learning, students will be able to answer questions with questions that are different from the examples given by the teacher. The aim of studying the increased thinking of participants in cognitive taxonomy analysis in Newton's law materials was approved using problem solving learning models. Hypothesis testing is done by comparing the average value of the ability of the initial test (pre-test) and the average ability of the final test (post-test) of students. The process of testing the hypothesis will test the normality and homogeneity test as a requirement to use parametric statistics, namely by using the t-test. Based on the results of the study obtained a value of tcount (8.25) and ttable value at dk = 42 with a 95% confidence level obtained at 2.02. This shows that tcount> t table. So can it be concluded that the expansion of students' thinking analysis ideas on cognitive taxonomy in the legal material used uses problem solving learning models.
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