Siti Khairunnisa, Riska Amelza, Nurmasyitah. Nurmasyitah
{"title":"Kajian Konsep Termodinamika Pada Diffuser Sederhana","authors":"Siti Khairunnisa, Riska Amelza, Nurmasyitah. Nurmasyitah","doi":"10.59141/comserva.v2i10.642","DOIUrl":null,"url":null,"abstract":"In this study the diffuser has different functions. You may already know the function of this diffuser. Diffuser Has a function to clean the air from viruses, dust, and pollution. Usually, the diffuser is mixed with essential oil to give a nice scent around the room. The purpose of this study was to examine the physics concept of the diffuser by knowing the ratio of the relationship between water volume and time, and the relationship between time and temperature in mode 1 and mode 2. the purpose of this research can be implemented. There are several stages in conducting research regarding the comparison of the relationship between volume of water and time, and the relationship of time with temperature in mode 1 and mode 2. Based on the graph above, the relationship between volume and evaporation run out using 1 minute mode, when 15 ml of evaporation run out for 35 minutes, when 25 ml evaporates for 90 minutes, when 35 ml evaporates for 120 minutes and when 45 ml of water evaporates for 240 minutes. When viewed from the correlation value R^2 = 0.9072, this shows that there is a relationship of 90.0% (accurate correlation). Furthermore, the relationship of water volume to time is obtained, when 5 ml of water evaporates for 10 minutes, when 15 ml evaporates for 25 minutes, when 25 ml evaporates for 70 minutes, when 35 ml evaporates for 35 minutes 90 minutes and when 45 ml of water evaporates for 120 minutes. In this study the diffuser has different functions. You may already know the function of this diffuser. Diffuser Has a function to clean the air from viruses, dust, and pollution. Usually, the diffuser is mixed with essential oil to give a nice scent around the room. The purpose of this study was to examine the physics concept of the diffuser by knowing the ratio of the relationship between water volume and time, and the relationship between time and temperature in mode 1 and mode 2. the purpose of this research can be implemented. There are several stages in conducting research regarding the comparison of the relationship between volume of water and time, and the relationship of time with temperature in mode 1 and mode 2. Based on the graph above, the relationship between volume and evaporation run out using 1 minute mode, when 15 ml of evaporation run out for 35 minutes, when 25 ml evaporates for 90 minutes, when 35 ml evaporates for 120 minutes and when 45 ml of water evaporates for 240 minutes. When viewed from the correlation value R^2 = 0.9072, this shows that there is a relationship of 90.0% (accurate correlation). Furthermore, the relationship of water volume to time is obtained, when 5 ml of water evaporates for 10 minutes, when 15 ml evaporates for 25 minutes, when 25 ml evaporates for 70 minutes, when 35 ml evaporates for 35 minutes 90 minutes and when 45 ml of water evaporates for 120 minutes. When viewed from the correlation value R^2 = 0.981, this shows that there is a relationship of 9.8% (very accurate correlation). While the relationship of time to temperature in mode 1 is obtained at 15 minutes with a temperature of 29.6⁰C, at 35 minutes the required temperature is 29.4⁰C at 90 minutes the required temperature is 30.2⁰C , at 120 minutes the required temperature is 32.9⁰C, at 420 minutes the required temperature is 37.9⁰C. When viewed from the correlation value R^2 = 0.9094, this shows that there is a relationship of 90.0% (accurate correlation). And based on the graph above in Figure 4 regarding the relationship of time to temperature in mode 1 obtained at 10 minutes with a temperature of 27.8⁰C, at 25 minutes the required temperature is 29.4⁰C at 70 minutes the required temperature is 30, 2⁰C , at 90 minutes the required temperature is 30.7⁰C, at 120 minutes the required temperature is 31.4⁰C. When viewed from the correlation value R^2 = 0.9067, this indicates that there is a relationship of 90.0% (accurate correlation).","PeriodicalId":256888,"journal":{"name":"COMSERVA Indonesian Jurnal of Community Services and Development","volume":"50 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-02-26","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"COMSERVA Indonesian Jurnal of Community Services and Development","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.59141/comserva.v2i10.642","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0

摘要

在本研究中,扩散器具有不同的功能。你可能已经知道这个扩散器的功能了。具有清除空气中病毒、灰尘和污染物的功能。通常,扩散器与精油混合在一起,在房间里散发出一种很好的香味。本研究的目的是通过了解在模式1和模式2中水量与时间的关系,以及时间与温度的关系的比率,来检验扩散器的物理概念。本研究的目的可以实现。在模态1和模态2中,水的体积与时间的关系以及时间与温度的关系的比较研究分为几个阶段。由上图可知,体积与蒸发量的关系采用1分钟模式,15ml蒸发量用完35分钟,25ml蒸发量用完90分钟,35ml蒸发量用完120分钟,45ml蒸发量用完240分钟。从相关值R^2 = 0.9072来看,存在90.0%的关系(精确相关)。进而得到5 ml水蒸发10分钟、15 ml水蒸发25分钟、25 ml水蒸发70分钟、35 ml水蒸发35分钟、90分钟、45 ml水蒸发120分钟时,水量与时间的关系。在本研究中,扩散器具有不同的功能。你可能已经知道这个扩散器的功能了。具有清除空气中病毒、灰尘和污染物的功能。通常,扩散器与精油混合在一起,在房间里散发出一种很好的香味。本研究的目的是通过了解在模式1和模式2中水量与时间的关系,以及时间与温度的关系的比率,来检验扩散器的物理概念。本研究的目的可以实现。在模态1和模态2中,水的体积与时间的关系以及时间与温度的关系的比较研究分为几个阶段。由上图可知,体积与蒸发量的关系采用1分钟模式,15ml蒸发量用完35分钟,25ml蒸发量用完90分钟,35ml蒸发量用完120分钟,45ml蒸发量用完240分钟。从相关值R^2 = 0.9072来看,存在90.0%的关系(精确相关)。进而得到5 ml水蒸发10分钟、15 ml水蒸发25分钟、25 ml水蒸发70分钟、35 ml水蒸发35分钟、90分钟、45 ml水蒸发120分钟时,水量与时间的关系。从相关值R^2 = 0.981来看,这表明存在9.8%的关系(非常精确的相关性)。模式1中时间与温度的关系在15分钟时获得,温度为29.6⁰C,在35分钟时所需温度为29.4⁰C,在90分钟时所需温度为30.2⁰C,在120分钟时所需温度为32.9⁰C,在420分钟时所需温度为37.9⁰C。从相关值R^2 = 0.9094来看,存在90.0%的关系(精确相关)。根据图4中关于模式1中时间与温度的关系的图表,在10分钟温度为27.8⁰C时获得,在25分钟时所需温度为29.4⁰C,在70分钟时所需温度为30.2⁰C,在90分钟时所需温度为30.7⁰C,在120分钟时所需温度为31.4⁰C。从相关值R^2 = 0.9067来看,这表明存在90.0%的关系(准确相关)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kajian Konsep Termodinamika Pada Diffuser Sederhana
In this study the diffuser has different functions. You may already know the function of this diffuser. Diffuser Has a function to clean the air from viruses, dust, and pollution. Usually, the diffuser is mixed with essential oil to give a nice scent around the room. The purpose of this study was to examine the physics concept of the diffuser by knowing the ratio of the relationship between water volume and time, and the relationship between time and temperature in mode 1 and mode 2. the purpose of this research can be implemented. There are several stages in conducting research regarding the comparison of the relationship between volume of water and time, and the relationship of time with temperature in mode 1 and mode 2. Based on the graph above, the relationship between volume and evaporation run out using 1 minute mode, when 15 ml of evaporation run out for 35 minutes, when 25 ml evaporates for 90 minutes, when 35 ml evaporates for 120 minutes and when 45 ml of water evaporates for 240 minutes. When viewed from the correlation value R^2 = 0.9072, this shows that there is a relationship of 90.0% (accurate correlation). Furthermore, the relationship of water volume to time is obtained, when 5 ml of water evaporates for 10 minutes, when 15 ml evaporates for 25 minutes, when 25 ml evaporates for 70 minutes, when 35 ml evaporates for 35 minutes 90 minutes and when 45 ml of water evaporates for 120 minutes. In this study the diffuser has different functions. You may already know the function of this diffuser. Diffuser Has a function to clean the air from viruses, dust, and pollution. Usually, the diffuser is mixed with essential oil to give a nice scent around the room. The purpose of this study was to examine the physics concept of the diffuser by knowing the ratio of the relationship between water volume and time, and the relationship between time and temperature in mode 1 and mode 2. the purpose of this research can be implemented. There are several stages in conducting research regarding the comparison of the relationship between volume of water and time, and the relationship of time with temperature in mode 1 and mode 2. Based on the graph above, the relationship between volume and evaporation run out using 1 minute mode, when 15 ml of evaporation run out for 35 minutes, when 25 ml evaporates for 90 minutes, when 35 ml evaporates for 120 minutes and when 45 ml of water evaporates for 240 minutes. When viewed from the correlation value R^2 = 0.9072, this shows that there is a relationship of 90.0% (accurate correlation). Furthermore, the relationship of water volume to time is obtained, when 5 ml of water evaporates for 10 minutes, when 15 ml evaporates for 25 minutes, when 25 ml evaporates for 70 minutes, when 35 ml evaporates for 35 minutes 90 minutes and when 45 ml of water evaporates for 120 minutes. When viewed from the correlation value R^2 = 0.981, this shows that there is a relationship of 9.8% (very accurate correlation). While the relationship of time to temperature in mode 1 is obtained at 15 minutes with a temperature of 29.6⁰C, at 35 minutes the required temperature is 29.4⁰C at 90 minutes the required temperature is 30.2⁰C , at 120 minutes the required temperature is 32.9⁰C, at 420 minutes the required temperature is 37.9⁰C. When viewed from the correlation value R^2 = 0.9094, this shows that there is a relationship of 90.0% (accurate correlation). And based on the graph above in Figure 4 regarding the relationship of time to temperature in mode 1 obtained at 10 minutes with a temperature of 27.8⁰C, at 25 minutes the required temperature is 29.4⁰C at 70 minutes the required temperature is 30, 2⁰C , at 90 minutes the required temperature is 30.7⁰C, at 120 minutes the required temperature is 31.4⁰C. When viewed from the correlation value R^2 = 0.9067, this indicates that there is a relationship of 90.0% (accurate correlation).
求助全文
通过发布文献求助,成功后即可免费获取论文全文。 去求助
来源期刊
自引率
0.00%
发文量
0
×
引用
GB/T 7714-2015
复制
MLA
复制
APA
复制
导出至
BibTeX EndNote RefMan NoteFirst NoteExpress
×
提示
您的信息不完整,为了账户安全,请先补充。
现在去补充
×
提示
您因"违规操作"
具体请查看互助需知
我知道了
×
提示
确定
请完成安全验证×
copy
已复制链接
快去分享给好友吧!
我知道了
右上角分享
点击右上角分享
0
联系我们:info@booksci.cn Book学术提供免费学术资源搜索服务,方便国内外学者检索中英文文献。致力于提供最便捷和优质的服务体验。 Copyright © 2023 布克学术 All rights reserved.
京ICP备2023020795号-1
ghs 京公网安备 11010802042870号
Book学术文献互助
Book学术文献互助群
群 号:481959085
Book学术官方微信