Augmented Reality for Introducing Fuel Cell as Electrochemical Energy Conversion on Vocational School

<span>Nowadays, one kind of promising energy is fuel cell technology, which produces electricity while hydrogen gas flows from anode to cathode through a membrane. A single fuel cell can be integrated in series as a fuel cell stack. It shows electro-chemical process, where the gas flows from t...

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Main Authors: Siti Sendari, Mahfud Jiono, Markus Diantoro, Poppy Puspitasari, Heru Surjanto, Hadi Nur
Format: Article
Language:English
Published: International Association of Online Engineering (IAOE) 2020-07-01
Series:International Journal of Interactive Mobile Technologies
Subjects:
Online Access:https://online-journals.org/index.php/i-jim/article/view/15573
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spelling doaj-c54819724b0d4617bdf7028297357ab92021-09-02T14:53:16ZengInternational Association of Online Engineering (IAOE)International Journal of Interactive Mobile Technologies1865-79232020-07-011412162810.3991/ijim.v14i12.155736131Augmented Reality for Introducing Fuel Cell as Electrochemical Energy Conversion on Vocational SchoolSiti Sendari0Mahfud Jiono1Markus Diantoro2Poppy Puspitasari3Heru Surjanto4Hadi Nur5State University of Malang, IndonesiaState University of MalangState University of MalangState University of MalangState University of MalangUniversiti Teknologi Malaysia, Johor Bahru<span>Nowadays, one kind of promising energy is fuel cell technology, which produces electricity while hydrogen gas flows from anode to cathode through a membrane. A single fuel cell can be integrated in series as a fuel cell stack. It shows electro-chemical process, where the gas flows from the anode to cathode through a membrane and acts as protons and electrons. Students have plenty of difficulties to understand the concept of the electro-chemical process. Thus, this paper studies the effectiveness of usability of the developed augmented reality (AR) technology for bridging the difficulties in electrochemical process, especially fuel cell energy conversion. AR technology is used as an accomplished tool of a conventional book, where students can learn deeply about the process, such as practicing steps and problem solving using animation. The implementation results show that the developed AR can help students enjoy to study fuel cell energy conversion, which means that the developed AR can support learning process effectively</span>https://online-journals.org/index.php/i-jim/article/view/15573augmented realityfuel cellenergy conversion
collection DOAJ
language English
format Article
sources DOAJ
author Siti Sendari
Mahfud Jiono
Markus Diantoro
Poppy Puspitasari
Heru Surjanto
Hadi Nur
spellingShingle Siti Sendari
Mahfud Jiono
Markus Diantoro
Poppy Puspitasari
Heru Surjanto
Hadi Nur
Augmented Reality for Introducing Fuel Cell as Electrochemical Energy Conversion on Vocational School
International Journal of Interactive Mobile Technologies
augmented reality
fuel cell
energy conversion
author_facet Siti Sendari
Mahfud Jiono
Markus Diantoro
Poppy Puspitasari
Heru Surjanto
Hadi Nur
author_sort Siti Sendari
title Augmented Reality for Introducing Fuel Cell as Electrochemical Energy Conversion on Vocational School
title_short Augmented Reality for Introducing Fuel Cell as Electrochemical Energy Conversion on Vocational School
title_full Augmented Reality for Introducing Fuel Cell as Electrochemical Energy Conversion on Vocational School
title_fullStr Augmented Reality for Introducing Fuel Cell as Electrochemical Energy Conversion on Vocational School
title_full_unstemmed Augmented Reality for Introducing Fuel Cell as Electrochemical Energy Conversion on Vocational School
title_sort augmented reality for introducing fuel cell as electrochemical energy conversion on vocational school
publisher International Association of Online Engineering (IAOE)
series International Journal of Interactive Mobile Technologies
issn 1865-7923
publishDate 2020-07-01
description <span>Nowadays, one kind of promising energy is fuel cell technology, which produces electricity while hydrogen gas flows from anode to cathode through a membrane. A single fuel cell can be integrated in series as a fuel cell stack. It shows electro-chemical process, where the gas flows from the anode to cathode through a membrane and acts as protons and electrons. Students have plenty of difficulties to understand the concept of the electro-chemical process. Thus, this paper studies the effectiveness of usability of the developed augmented reality (AR) technology for bridging the difficulties in electrochemical process, especially fuel cell energy conversion. AR technology is used as an accomplished tool of a conventional book, where students can learn deeply about the process, such as practicing steps and problem solving using animation. The implementation results show that the developed AR can help students enjoy to study fuel cell energy conversion, which means that the developed AR can support learning process effectively</span>
topic augmented reality
fuel cell
energy conversion
url https://online-journals.org/index.php/i-jim/article/view/15573
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