ANALISA RESISTIVITAS KAWAT PENGHANTAR DITINJAU DARI METODE JEMBATAN WHEATSTONE DAN METODE HUKUM OHM PADA MODUL PRAKTIKUM FISIKA
DOI:
https://doi.org/10.54378/bt.v12i2.79Keywords:
resistivity, Ohm law, Wheatstone Bridge, linear regressionAbstract
The analysis of the resistivity of a wire based on the Wheatstone bridge method and the Ohm law method in physics experiment module has been done. The analysis of the resistivity of a wire was done in a physics laboratory at UPNVJ engineering faculty. This topic was studied because there has been no experiment in the themed of electricity in the physics experiment module at the faculty of engineering UPNVJ. The most popular method applied to obtain wire resistivity value is the Ohm law method. In order to enlarge the understanding of the electricity concept, this research needed other method that can be used to find out the wire resistivity namely the Wheatstone Bridge method. This research aimed to obtain the resistivity value of Nichrome wire from two different methods. The methods were the Ohm law method and the Wheatstone bridge method. In Ohm law method, the wire length was subsequent varied. Then, the electric voltage value and an electric current were recorded. While in the Wheatstone bridge method, it was used circuit bridge. The value of the variable resistor was varied and the segment length metal plate was measured. The data were processed in order to obtain the Nichrome wire resistivity values by linear regression method. From Ohm law method and the Wheatstone bridge method were respectively obtained the value of Nichrome wire was ρ±Δρ=(2,875±0,005)x10-6 Ωm and ρ±Δρ=(5,00±0,25)x10-6 Ωm. The results of the two methods are match with the value of the standard of the Nichrome wire is ρ=1,0x10-6 Ωm. By using the two methods, it was expected that the students’ understanding of the electricity concept was increasingly widespread.References
Giancolli, 2001, Fisika Jilid 2, Penerbit Erlangga, Jakarta.
Squires, G.L., 1968, Practical Physics, New York: McGraw-Hill.
Sutrisno, 1986, Elektronika, Teori Dasar dan Penerapannya, Jilid 1, Penerbit ITB, Bandung.
Tim Penyusun Praktikum Fisika Dasar, 2010, Panduan Praktikum Fisika Dasar FMIPA UGM, Yogyakarta.
Tim Penyusun Panduan Praktikum Fisika Dasar, 2013, Panduan Praktikum Fisika Dasar Fakultas Saintek UIN Sunan Kalijaga, Yogyakarta.
Tipler A, P., 2001, Fisika Untuk Sains dan Teknik, Edisi ketiga, jilid 2, Erlangga, Jakarta.
www.csivc.csi.cuny.edu diunduh pada 1 Nopember 2016.
Downloads
Published
Issue
Section
License
Journal Bina Teknika grants open acces to all of its content, based on that matter makes all research papers published are freely available to public which ensures greater global excchange of knowledge
Journal Bina Teknika is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
Refers to these license, all research papers agree to the following terms:
- Attribution - Authors holds the credit of their research works published, in order to use materials from one or more research papers published in Bina Teknika should be given appropriate credit
- Non Commercial - All research papers published in Bina Teknika may not use for commercial purposes
- Share Alike - Any creation made under one or more concepts from research papers published in Bina Teknika should be distribute your contributions under the same license as original