Study on Green Energy Converter for the Purpose of Optimising Teaching and Learning in Energy Science

Knowledge of energy conservation is vital to be understood by students in grasping the topic of energy science. Hence, a study has been piloted to produce energy converter which can be used practically by the students to understand about the conversion of energy from kinetic energy to electricity. I...

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Main Authors: Alias, Azrul Nizam, Md Ab Lazis, Mardhiatul Najwa, Sugandi, Julyle Muhamad, Mohd Salman, Nurfasyarina Azureen, Mohd Khalid, Muhammad Hafiz, Julius, Rafael, Mohamad Sahapini, Noor Fadhilah, Yahya, Mohd Ashmir, Mahfodz, Zulfadli, Ramli, Fariesha Farha, Abdullah, Fathiah
Format: Article
Language:English
Published: UiTM Press 2020
Online Access:http://ir.uitm.edu.my/id/eprint/13720/1/13720.pdf
http://ir.uitm.edu.my/id/eprint/13720/
https://smrj.uitm.edu.my/
https://doi.org/10.24191/smrj.v17i1.7889
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spelling my.uitm.ir.137202020-11-28T07:56:33Z http://ir.uitm.edu.my/id/eprint/13720/ Study on Green Energy Converter for the Purpose of Optimising Teaching and Learning in Energy Science Alias, Azrul Nizam Md Ab Lazis, Mardhiatul Najwa Sugandi, Julyle Muhamad Mohd Salman, Nurfasyarina Azureen Mohd Khalid, Muhammad Hafiz Julius, Rafael Mohamad Sahapini, Noor Fadhilah Yahya, Mohd Ashmir Mahfodz, Zulfadli Ramli, Fariesha Farha Abdullah, Fathiah Knowledge of energy conservation is vital to be understood by students in grasping the topic of energy science. Hence, a study has been piloted to produce energy converter which can be used practically by the students to understand about the conversion of energy from kinetic energy to electricity. In the convertible of kinetic energy to electrical energy, as these energy undergo conversion, the kinetic energy are stored in two forms of storage apparatus. The first type is synchronous flywheels which operate within the allowable range of the synchronous frequency. The second type is asynchronous flywheels whose rotational speed is independent from the system synchronous frequency and varied over a wide range and this features gives the asynchronous flywheel the ability to store and release significant amount of kinetic energy. The outcomes from this study displayed successful performance which is dynamo that act as generator for the converter as energy is being convert from the kinetic energy into the electrical energy and efficaciously can be used to charge electrical gadget. UiTM Press 2020-02 Article PeerReviewed text en cc_by_nc_nd http://ir.uitm.edu.my/id/eprint/13720/1/13720.pdf Alias, Azrul Nizam and Md Ab Lazis, Mardhiatul Najwa and Sugandi, Julyle Muhamad and Mohd Salman, Nurfasyarina Azureen and Mohd Khalid, Muhammad Hafiz and Julius, Rafael and Mohamad Sahapini, Noor Fadhilah and Yahya, Mohd Ashmir and Mahfodz, Zulfadli and Ramli, Fariesha Farha and Abdullah, Fathiah (2020) Study on Green Energy Converter for the Purpose of Optimising Teaching and Learning in Energy Science. Social and Management Research Journal (SMRJ), 17 (1). pp. 35-48. ISSN 0128-1089 https://smrj.uitm.edu.my/ https://doi.org/10.24191/smrj.v17i1.7889
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
description Knowledge of energy conservation is vital to be understood by students in grasping the topic of energy science. Hence, a study has been piloted to produce energy converter which can be used practically by the students to understand about the conversion of energy from kinetic energy to electricity. In the convertible of kinetic energy to electrical energy, as these energy undergo conversion, the kinetic energy are stored in two forms of storage apparatus. The first type is synchronous flywheels which operate within the allowable range of the synchronous frequency. The second type is asynchronous flywheels whose rotational speed is independent from the system synchronous frequency and varied over a wide range and this features gives the asynchronous flywheel the ability to store and release significant amount of kinetic energy. The outcomes from this study displayed successful performance which is dynamo that act as generator for the converter as energy is being convert from the kinetic energy into the electrical energy and efficaciously can be used to charge electrical gadget.
format Article
author Alias, Azrul Nizam
Md Ab Lazis, Mardhiatul Najwa
Sugandi, Julyle Muhamad
Mohd Salman, Nurfasyarina Azureen
Mohd Khalid, Muhammad Hafiz
Julius, Rafael
Mohamad Sahapini, Noor Fadhilah
Yahya, Mohd Ashmir
Mahfodz, Zulfadli
Ramli, Fariesha Farha
Abdullah, Fathiah
spellingShingle Alias, Azrul Nizam
Md Ab Lazis, Mardhiatul Najwa
Sugandi, Julyle Muhamad
Mohd Salman, Nurfasyarina Azureen
Mohd Khalid, Muhammad Hafiz
Julius, Rafael
Mohamad Sahapini, Noor Fadhilah
Yahya, Mohd Ashmir
Mahfodz, Zulfadli
Ramli, Fariesha Farha
Abdullah, Fathiah
Study on Green Energy Converter for the Purpose of Optimising Teaching and Learning in Energy Science
author_facet Alias, Azrul Nizam
Md Ab Lazis, Mardhiatul Najwa
Sugandi, Julyle Muhamad
Mohd Salman, Nurfasyarina Azureen
Mohd Khalid, Muhammad Hafiz
Julius, Rafael
Mohamad Sahapini, Noor Fadhilah
Yahya, Mohd Ashmir
Mahfodz, Zulfadli
Ramli, Fariesha Farha
Abdullah, Fathiah
author_sort Alias, Azrul Nizam
title Study on Green Energy Converter for the Purpose of Optimising Teaching and Learning in Energy Science
title_short Study on Green Energy Converter for the Purpose of Optimising Teaching and Learning in Energy Science
title_full Study on Green Energy Converter for the Purpose of Optimising Teaching and Learning in Energy Science
title_fullStr Study on Green Energy Converter for the Purpose of Optimising Teaching and Learning in Energy Science
title_full_unstemmed Study on Green Energy Converter for the Purpose of Optimising Teaching and Learning in Energy Science
title_sort study on green energy converter for the purpose of optimising teaching and learning in energy science
publisher UiTM Press
publishDate 2020
url http://ir.uitm.edu.my/id/eprint/13720/1/13720.pdf
http://ir.uitm.edu.my/id/eprint/13720/
https://smrj.uitm.edu.my/
https://doi.org/10.24191/smrj.v17i1.7889
_version_ 1685648429057835008
score 13.211869