Relationship between Dimension Metacognition and Students’ Ability Level in Physics Problems Solving Involving the Use of Free-Body Diagram

Problem solving in Physics using Free-body Diagram (FBD) is complex and need to be planned carefully. Students who possess metacognitive awareness can make problem solving involving FBD easier. Therefore, this study aims at identifying the level of students’ ability in solving physics problems invol...

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Main Authors: Siti Nazirah Butai, Fatin Aliah Phang
格式: Article
語言:English
出版: 2018
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在線閱讀:https://eprints.ums.edu.my/id/eprint/23600/1/Relationship%20between%20Dimension%20Metacognition%20and%20Students.pdf
https://eprints.ums.edu.my/id/eprint/23600/
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spelling my.ums.eprints.236002019-09-19T00:56:26Z https://eprints.ums.edu.my/id/eprint/23600/ Relationship between Dimension Metacognition and Students’ Ability Level in Physics Problems Solving Involving the Use of Free-Body Diagram Siti Nazirah Butai Fatin Aliah Phang LB Theory and practice of education Problem solving in Physics using Free-body Diagram (FBD) is complex and need to be planned carefully. Students who possess metacognitive awareness can make problem solving involving FBD easier. Therefore, this study aims at identifying the level of students’ ability in solving physics problems involving the use of FBD and the student’s metacognition as well as the relationship between all the dimensions in metacognition with their ability in solving physics problem. 300 Form 5 Science students from schools around Johor Bahru involved in this study. The data was collected using a set of instrument that includes paper-and-pencil test, known as Force Problem Solving Ability and Physics Metacognition Inventory (PMI). The findings show that the level of students' ability in solving physics problems involving the use of FBD was low, while the level of students’ dimensions of metacognition was at a moderate level. The correlation analysis shows that a positively low and significant relationship between students’ ability in solving physics problems involving the FBD with their dimension of metacognition. These findings suggest that teachers should emphasize thinking at the metacognition level among the students and to use different strategies in different physics problem solving. 2018-07 Article PeerReviewed text en https://eprints.ums.edu.my/id/eprint/23600/1/Relationship%20between%20Dimension%20Metacognition%20and%20Students.pdf Siti Nazirah Butai and Fatin Aliah Phang (2018) Relationship between Dimension Metacognition and Students’ Ability Level in Physics Problems Solving Involving the Use of Free-Body Diagram. The InternationalJournal of Humanities and Social Studies, 6 (7). pp. 252-257. ISSN 2321-9203
institution Universiti Malaysia Sabah
building UMS Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sabah
content_source UMS Institutional Repository
url_provider http://eprints.ums.edu.my/
language English
topic LB Theory and practice of education
spellingShingle LB Theory and practice of education
Siti Nazirah Butai
Fatin Aliah Phang
Relationship between Dimension Metacognition and Students’ Ability Level in Physics Problems Solving Involving the Use of Free-Body Diagram
description Problem solving in Physics using Free-body Diagram (FBD) is complex and need to be planned carefully. Students who possess metacognitive awareness can make problem solving involving FBD easier. Therefore, this study aims at identifying the level of students’ ability in solving physics problems involving the use of FBD and the student’s metacognition as well as the relationship between all the dimensions in metacognition with their ability in solving physics problem. 300 Form 5 Science students from schools around Johor Bahru involved in this study. The data was collected using a set of instrument that includes paper-and-pencil test, known as Force Problem Solving Ability and Physics Metacognition Inventory (PMI). The findings show that the level of students' ability in solving physics problems involving the use of FBD was low, while the level of students’ dimensions of metacognition was at a moderate level. The correlation analysis shows that a positively low and significant relationship between students’ ability in solving physics problems involving the FBD with their dimension of metacognition. These findings suggest that teachers should emphasize thinking at the metacognition level among the students and to use different strategies in different physics problem solving.
format Article
author Siti Nazirah Butai
Fatin Aliah Phang
author_facet Siti Nazirah Butai
Fatin Aliah Phang
author_sort Siti Nazirah Butai
title Relationship between Dimension Metacognition and Students’ Ability Level in Physics Problems Solving Involving the Use of Free-Body Diagram
title_short Relationship between Dimension Metacognition and Students’ Ability Level in Physics Problems Solving Involving the Use of Free-Body Diagram
title_full Relationship between Dimension Metacognition and Students’ Ability Level in Physics Problems Solving Involving the Use of Free-Body Diagram
title_fullStr Relationship between Dimension Metacognition and Students’ Ability Level in Physics Problems Solving Involving the Use of Free-Body Diagram
title_full_unstemmed Relationship between Dimension Metacognition and Students’ Ability Level in Physics Problems Solving Involving the Use of Free-Body Diagram
title_sort relationship between dimension metacognition and students’ ability level in physics problems solving involving the use of free-body diagram
publishDate 2018
url https://eprints.ums.edu.my/id/eprint/23600/1/Relationship%20between%20Dimension%20Metacognition%20and%20Students.pdf
https://eprints.ums.edu.my/id/eprint/23600/
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