Development of continuity principles tools based on the WOKWI simulator Arduino Uno sensor for dynamic fluids
This research aims to develop a fluid, dynamic teaching aid for Senior High School. Visualization tools based on dynamic fluid materials. The method used in the research is the ADDIE development model (analysis, design, development, implementation, and evaluation). However, it is limited to ADD (Ana...
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| Veröffentlicht in: | Journal of physics. Conference series Jg. 2900; H. 1; S. 12014 - 12024 |
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| Format: | Journal Article |
| Sprache: | Englisch |
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Bristol
IOP Publishing
01.11.2024
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| ISSN: | 1742-6588, 1742-6596 |
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| Abstract | This research aims to develop a fluid, dynamic teaching aid for Senior High School. Visualization tools based on dynamic fluid materials. The method used in the research is the ADDIE development model (analysis, design, development, implementation, and evaluation). However, it is limited to ADD (Analysis, Design, and Development). This tool is designed using an Arduino UNO sensor, which can be connected to the sensor, and is made with 3D design with the help of Blender 4.1 software—the water flow sensor functions as a discharge meter. The LCD screen displays the results of the calculation of the discharge and water level in the venturi pipe. The tool has a guide sheet for programming procedures using WOKWI software. Based on the simulator results, the program code applied to the WOKWI simulator runs well with the Water Level Pump indicator ON/OFF. Media designs include Arduino, Resistor, Slides Witch, Arduino Atmega8, LED display, water pump, water pipe and venturi, DPDT relay, LED lamp, and ultrasonic distance measuring sensor. So, it can be concluded that the water flow or water level sensor program code and the continuity principles teaching aid design trials went well, so the implementation stage for high school level students can be carried out for further research. |
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| AbstractList | This research aims to develop a fluid, dynamic teaching aid for Senior High School. Visualization tools based on dynamic fluid materials. The method used in the research is the ADDIE development model (analysis, design, development, implementation, and evaluation). However, it is limited to ADD (Analysis, Design, and Development). This tool is designed using an Arduino UNO sensor, which can be connected to the sensor, and is made with 3D design with the help of Blender 4.1 software—the water flow sensor functions as a discharge meter. The LCD screen displays the results of the calculation of the discharge and water level in the venturi pipe. The tool has a guide sheet for programming procedures using WOKWI software. Based on the simulator results, the program code applied to the WOKWI simulator runs well with the Water Level Pump indicator ON/OFF. Media designs include Arduino, Resistor, Slides Witch, Arduino Atmega8, LED display, water pump, water pipe and venturi, DPDT relay, LED lamp, and ultrasonic distance measuring sensor. So, it can be concluded that the water flow or water level sensor program code and the continuity principles teaching aid design trials went well, so the implementation stage for high school level students can be carried out for further research. |
| Author | Sucahyo, I Zakaria, A |
| Author_xml | – sequence: 1 givenname: A surname: Zakaria fullname: Zakaria, A organization: Universitas Negeri Surabaya Department of Physics Education, Surabaya, Indonesia – sequence: 2 givenname: I surname: Sucahyo fullname: Sucahyo, I organization: Universitas Negeri Surabaya Department of Physics Education, Surabaya, Indonesia |
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| Cites_doi | 10.1016/j.amepre.2012.05.024 10.18488/61.v12i2.3676 10.3991/ijim.v18i01.46417 10.1088/1742-6596/1436/1/012103 10.1007/s11191-023-00439-2 10.1088/1742-6596/2715/1/012021 10.1021/la5033916 10.3390/healthcare8030235 |
| ContentType | Journal Article |
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| SubjectTerms | Design Design analysis Distance measurement Instructional aids Light emitting diodes Pipes Sensors Software Three dimensional flow Water discharge Water flow Water levels Water pipelines |
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| Title | Development of continuity principles tools based on the WOKWI simulator Arduino Uno sensor for dynamic fluids |
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