Enhancing spatial ability skills in basic engineering drawing using a 3d solid model

Spatial ability skills are an important component of an engineer's ability to create and interpret engineering drawings, which involves thinking and problem-solving processes. The ability of an engineer to visualize 3D image is a cognitive skill that is essential to succeed in basic engineering...

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Main Authors: Marwa, J. N., Noh@Seth, N. H., Ahyan, N. A. M., Jambari, H., Pairan, M. R.
Format: Article
Published: Eskisehir Osmangazi University 2021
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Online Access:http://eprints.utm.my/id/eprint/94821/
http://dx.doi.org/10.33403/rigeo.800677
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Institution: Universiti Teknologi Malaysia
id my.utm.94821
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spelling my.utm.948212022-04-29T21:54:18Z http://eprints.utm.my/id/eprint/94821/ Enhancing spatial ability skills in basic engineering drawing using a 3d solid model Marwa, J. N. Noh@Seth, N. H. Ahyan, N. A. M. Jambari, H. Pairan, M. R. L Education (General) Spatial ability skills are an important component of an engineer's ability to create and interpret engineering drawings, which involves thinking and problem-solving processes. The ability of an engineer to visualize 3D image is a cognitive skill that is essential to succeed in basic engineering drawing subjects. Based on previous literature and preliminary study, engineering technology students with poor spatial ability skills had challenges in understanding basic engineering drawing topics. Hence, this study is aiming at enhancing spatial ability skills using a 3D solid model among first-year engineering and technology education students. The quasi-Experimental research design was adopted for this study. A targeted class of 43 first-year technology education students who are in the first semester was used for the study. The students were divided into control and experimental groups respectively. A pre and post-test were used to collect data from the students to measure their level of spatial ability skills enhancement. However, after the treatment using a 3D solid model, the experimental group had a higher performance than the control group likewise the students with non-engineering background in the experimental group performed above average. The results indicate that a solid 3D model was effective for improving spatial ability skills among first-year technology education students. This study implies to educators that there is a need to appropriately enforce the use of a 3D solid model for effective teaching and learning of basic engineering drawing. It is, therefore, affirmed that the use of a 3D solid model in teaching basic engineering drawings should be enhanced with other teaching methods. Eskisehir Osmangazi University 2021 Article PeerReviewed Marwa, J. N. and Noh@Seth, N. H. and Ahyan, N. A. M. and Jambari, H. and Pairan, M. R. (2021) Enhancing spatial ability skills in basic engineering drawing using a 3d solid model. Review of International Geographical Education Online, 11 (4). ISSN 2146-0353 http://dx.doi.org/10.33403/rigeo.800677 DOI: 10.33403/rigeo.800677
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic L Education (General)
spellingShingle L Education (General)
Marwa, J. N.
Noh@Seth, N. H.
Ahyan, N. A. M.
Jambari, H.
Pairan, M. R.
Enhancing spatial ability skills in basic engineering drawing using a 3d solid model
description Spatial ability skills are an important component of an engineer's ability to create and interpret engineering drawings, which involves thinking and problem-solving processes. The ability of an engineer to visualize 3D image is a cognitive skill that is essential to succeed in basic engineering drawing subjects. Based on previous literature and preliminary study, engineering technology students with poor spatial ability skills had challenges in understanding basic engineering drawing topics. Hence, this study is aiming at enhancing spatial ability skills using a 3D solid model among first-year engineering and technology education students. The quasi-Experimental research design was adopted for this study. A targeted class of 43 first-year technology education students who are in the first semester was used for the study. The students were divided into control and experimental groups respectively. A pre and post-test were used to collect data from the students to measure their level of spatial ability skills enhancement. However, after the treatment using a 3D solid model, the experimental group had a higher performance than the control group likewise the students with non-engineering background in the experimental group performed above average. The results indicate that a solid 3D model was effective for improving spatial ability skills among first-year technology education students. This study implies to educators that there is a need to appropriately enforce the use of a 3D solid model for effective teaching and learning of basic engineering drawing. It is, therefore, affirmed that the use of a 3D solid model in teaching basic engineering drawings should be enhanced with other teaching methods.
format Article
author Marwa, J. N.
Noh@Seth, N. H.
Ahyan, N. A. M.
Jambari, H.
Pairan, M. R.
author_facet Marwa, J. N.
Noh@Seth, N. H.
Ahyan, N. A. M.
Jambari, H.
Pairan, M. R.
author_sort Marwa, J. N.
title Enhancing spatial ability skills in basic engineering drawing using a 3d solid model
title_short Enhancing spatial ability skills in basic engineering drawing using a 3d solid model
title_full Enhancing spatial ability skills in basic engineering drawing using a 3d solid model
title_fullStr Enhancing spatial ability skills in basic engineering drawing using a 3d solid model
title_full_unstemmed Enhancing spatial ability skills in basic engineering drawing using a 3d solid model
title_sort enhancing spatial ability skills in basic engineering drawing using a 3d solid model
publisher Eskisehir Osmangazi University
publishDate 2021
url http://eprints.utm.my/id/eprint/94821/
http://dx.doi.org/10.33403/rigeo.800677
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