Measurement of Kinetic Friction Coefficient through Magnetic Induction Using Audacity Application in Physics Learning

This study is designed to produce an experimental device for the measurement of the kinetic friction coefficient of material through magnetic induction using Audacity application. The objects of material the kinetic friction coefficient of which is going to be measured is rough acrylic with rough ac...

Full description

Bibliographic Details
Main Authors: Fatkhur Rohman, Yohandri Azwir, Ahmad Fauzan
Format: Article
Language:English
Published: International Association of Online Engineering (IAOE) 2020-03-01
Series:International Journal of Online and Biomedical Engineering
Subjects:
Online Access:https://online-journals.org/index.php/i-joe/article/view/12553
id doaj-ace21bbf1efa4dbe96e0621a4d9f2acc
record_format Article
spelling doaj-ace21bbf1efa4dbe96e0621a4d9f2acc2021-09-02T05:23:38ZengInternational Association of Online Engineering (IAOE)International Journal of Online and Biomedical Engineering2626-84932020-03-01160311712510.3991/ijoe.v16i03.125535379Measurement of Kinetic Friction Coefficient through Magnetic Induction Using Audacity Application in Physics LearningFatkhur Rohman0Yohandri Azwir1Ahmad Fauzan2Educational Sciences, Doctoral Program, Universitas Negeri PadangDepartment of Physics, Universitas Negeri Padang, IndonesiaPostgraduate Program, Universitas Negeri Padang, IndonesiaThis study is designed to produce an experimental device for the measurement of the kinetic friction coefficient of material through magnetic induction using Audacity application. The objects of material the kinetic friction coefficient of which is going to be measured is rough acrylic with rough acrylic and wood with rough acrylic. The experimental setup was performed on the motion system of the mass of objects <em>m</em><sub>1</sub> and <em>m</em><sub>2</sub> that were connected through a pulley on a table and three solenoids are put under a table as the Electromagnetic Field (EMF) sensor. Analysis of the calculation of kinetic friction coefficient used two concepts, i.e. the kinematics concept to identify the load acceleration and the concept of the dynamic to find the kinetic friction coefficient. The results of the measurement of kinetic friction coefficient in this study have a match with the results obtained in the other studies. Hence, the tools and experimental approaches generated in this study are excellent for use in the learning activities so that teachers can teach physics applicatively.https://online-journals.org/index.php/i-joe/article/view/12553kinetic friction coefficient, magnetic induction, audacity, physics learning
collection DOAJ
language English
format Article
sources DOAJ
author Fatkhur Rohman
Yohandri Azwir
Ahmad Fauzan
spellingShingle Fatkhur Rohman
Yohandri Azwir
Ahmad Fauzan
Measurement of Kinetic Friction Coefficient through Magnetic Induction Using Audacity Application in Physics Learning
International Journal of Online and Biomedical Engineering
kinetic friction coefficient, magnetic induction, audacity, physics learning
author_facet Fatkhur Rohman
Yohandri Azwir
Ahmad Fauzan
author_sort Fatkhur Rohman
title Measurement of Kinetic Friction Coefficient through Magnetic Induction Using Audacity Application in Physics Learning
title_short Measurement of Kinetic Friction Coefficient through Magnetic Induction Using Audacity Application in Physics Learning
title_full Measurement of Kinetic Friction Coefficient through Magnetic Induction Using Audacity Application in Physics Learning
title_fullStr Measurement of Kinetic Friction Coefficient through Magnetic Induction Using Audacity Application in Physics Learning
title_full_unstemmed Measurement of Kinetic Friction Coefficient through Magnetic Induction Using Audacity Application in Physics Learning
title_sort measurement of kinetic friction coefficient through magnetic induction using audacity application in physics learning
publisher International Association of Online Engineering (IAOE)
series International Journal of Online and Biomedical Engineering
issn 2626-8493
publishDate 2020-03-01
description This study is designed to produce an experimental device for the measurement of the kinetic friction coefficient of material through magnetic induction using Audacity application. The objects of material the kinetic friction coefficient of which is going to be measured is rough acrylic with rough acrylic and wood with rough acrylic. The experimental setup was performed on the motion system of the mass of objects <em>m</em><sub>1</sub> and <em>m</em><sub>2</sub> that were connected through a pulley on a table and three solenoids are put under a table as the Electromagnetic Field (EMF) sensor. Analysis of the calculation of kinetic friction coefficient used two concepts, i.e. the kinematics concept to identify the load acceleration and the concept of the dynamic to find the kinetic friction coefficient. The results of the measurement of kinetic friction coefficient in this study have a match with the results obtained in the other studies. Hence, the tools and experimental approaches generated in this study are excellent for use in the learning activities so that teachers can teach physics applicatively.
topic kinetic friction coefficient, magnetic induction, audacity, physics learning
url https://online-journals.org/index.php/i-joe/article/view/12553
work_keys_str_mv AT fatkhurrohman measurementofkineticfrictioncoefficientthroughmagneticinductionusingaudacityapplicationinphysicslearning
AT yohandriazwir measurementofkineticfrictioncoefficientthroughmagneticinductionusingaudacityapplicationinphysicslearning
AT ahmadfauzan measurementofkineticfrictioncoefficientthroughmagneticinductionusingaudacityapplicationinphysicslearning
_version_ 1721179650139357184