Interactive learning on logic circuits

Logic gates are building blocks for smart technology. Application of logic gates into technology may be difficult to grasp. Interactive learning is an effective method to learn new things. This project aims to address the lack of fun, flexible, portable ways to learn one of the complicated topics...

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Main Author: Gurusamy, Samyuktha
Other Authors: Boon Chirn Chye
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2024
Subjects:
Online Access:https://hdl.handle.net/10356/176181
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1761812024-05-17T15:44:29Z Interactive learning on logic circuits Gurusamy, Samyuktha Boon Chirn Chye School of Electrical and Electronic Engineering ECCBoon@ntu.edu.sg Engineering Interactive learning Logic circuits Logic gates are building blocks for smart technology. Application of logic gates into technology may be difficult to grasp. Interactive learning is an effective method to learn new things. This project aims to address the lack of fun, flexible, portable ways to learn one of the complicated topics in electronics. In this project, hardware and software products were developed to teach about logic gates in an interactive manner as there are not many existing exciting ways to learn electronics. The hardware products are a kit named LogiKit that comes with enlarged versions of logic gates called LogiKLego. These were developed to have the flexibility to try out different arrangements of logic gates that caters to different levels of understanding to observe the logic flow. The software product is an Android mobile application named LogiKApp was developed to teach and quiz on the basic theoretical knowledge on logic gates. In addition, this LogiKApp can also connect to LogiKit via Bluetooth to control the input and collect the truth table according to the placement of LogiKLego on LogiKit. Upon letting some try out these products, the feedback was positive and was said it helped them grasp the concepts easily, benefitting eager learners. Further recommendations were also made to incorporate more advanced topics and produce more LogiKLegos to allow more flexibility and creativity. Bachelor's degree 2024-05-15T05:01:00Z 2024-05-15T05:01:00Z 2024 Final Year Project (FYP) Gurusamy, S. (2024). Interactive learning on logic circuits. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/176181 https://hdl.handle.net/10356/176181 en A2035-231 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering
Interactive learning
Logic circuits
spellingShingle Engineering
Interactive learning
Logic circuits
Gurusamy, Samyuktha
Interactive learning on logic circuits
description Logic gates are building blocks for smart technology. Application of logic gates into technology may be difficult to grasp. Interactive learning is an effective method to learn new things. This project aims to address the lack of fun, flexible, portable ways to learn one of the complicated topics in electronics. In this project, hardware and software products were developed to teach about logic gates in an interactive manner as there are not many existing exciting ways to learn electronics. The hardware products are a kit named LogiKit that comes with enlarged versions of logic gates called LogiKLego. These were developed to have the flexibility to try out different arrangements of logic gates that caters to different levels of understanding to observe the logic flow. The software product is an Android mobile application named LogiKApp was developed to teach and quiz on the basic theoretical knowledge on logic gates. In addition, this LogiKApp can also connect to LogiKit via Bluetooth to control the input and collect the truth table according to the placement of LogiKLego on LogiKit. Upon letting some try out these products, the feedback was positive and was said it helped them grasp the concepts easily, benefitting eager learners. Further recommendations were also made to incorporate more advanced topics and produce more LogiKLegos to allow more flexibility and creativity.
author2 Boon Chirn Chye
author_facet Boon Chirn Chye
Gurusamy, Samyuktha
format Final Year Project
author Gurusamy, Samyuktha
author_sort Gurusamy, Samyuktha
title Interactive learning on logic circuits
title_short Interactive learning on logic circuits
title_full Interactive learning on logic circuits
title_fullStr Interactive learning on logic circuits
title_full_unstemmed Interactive learning on logic circuits
title_sort interactive learning on logic circuits
publisher Nanyang Technological University
publishDate 2024
url https://hdl.handle.net/10356/176181
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