Dalam Rambatan Bunyi Di Udara

CEPAT RAMBAT BUNYI DI Mega Plong Tipe SUHU DENGAN MEMANFAATKAN SENSOR Kritik BERBANTUAN LOGGER Memihak DAN AUDACITYA

Abstract

Pada pokok bahasan bunyi khususnya dalam eksperimen cepat rambat bunyi, biasanya nan digunakan puas temperatur 25°C nan telah diteapkan. Ada plural suhu nan dapat digunakan kerjakan dicari cepat rambat obstulen yang tentunya berbeda dan berjenis-jenis serta diharapkan bertambah memudahkan mahasiswa dalam memahami pokok bahasan tesebut. Mutakadim dibuat organ eksperimen untuk menentukan cepat rambat obstulen di peledak pada keberagaman temperatur dengan memanfaatkan perangkat lunak
Audacity
dan
Logger Pro. Metode yang digunakan yakni regresi linier.

Hasil penelitian menunjukkan bahwa cepat rambat bunyi di awan mengelepai plong suhu. Hal ini ditunjukkan oleh kurva suhu terhadap cepat rambat bunyi dengan . Dengan  demikian maka diketahui bahwa semakin tataran suhu maka semakin segara ponten cepat rambat bunyi.

ABSTRACT

There is subject matter sounds particularly in experiments quickly creep, generally used at a temperature of 25 ° C that has been diteapkan. There is a wide range of temperatures that can be used to look for quick sound vines certainly different and varied and is expected to further facilitate students in understanding the subject matter are. Experimental tools have been created to determine quickly creep the sound in the air at the temperature variations by utilizing the software Audacity and Logger Pro. The method used is a linear regression.

The results showed that the vines fast sound in the air depends on temperature. This is shown by the curve of temperature against fast sound with vines  Thus it is known that the higher temperature then the greater the value of the vines fast sound.

Keywords  :  quickly creep, temperature variations, Logger Pro and Audacity

References

Ishafit. 2012. Teknologi Informasi dan Komunikasi Dalam Penataran Fisika: Komputerisasi Eksperimen Bunyi Berbasis Soundcard Laptop. Final Prosiding Seminar Nasional Fisika, No.201219.

Velasco, S., Rohman, F.L., Gonzalez, A., White, J.A. 2003. A Computer Assisted Experiment For The Measurment of The Temperature Dependence of The Speed of Sound in Air. Alam semesta Journal. Vol. 72, No. 2. DOI: 10.1119/1.1611479. p.276-279.

Buku:

Young dan Freedman, Roger A. 2002. Fisika Universitas Edisi ke deka- Jilid 1. 2002. Jakarta: Erlangga.

Supriyanto. 2006. Fisika SMA Bakal SMA Kelas XII. Jakarta: Erlangga.

Young dan Freedman, Roger A. 2003. Fisika Perkumpulan Edisi ke deka- Jilid 2. Jakarta: Erlangga.

Tippler, P. A. (2001). Fisika lakukan Sains dan Teknik jilid 1. Jakarta: Erlangga.

Vernier. (20012)

Akses internet:

http://softilmu.blogspot.com/2014/08/gelombang-bunyi.html. Diunduh terlepas 23 Mei 2022.

http://mulyawulansari.blogspot.com/2013/06/cepat-rambat-bunyi.html. Diunduh tanggal 23 Mei 2022

Audacity. (2013). “Audacity is free, open source, cross-plaform software for recording and editing sounds” dalam http://audacity.sourceforge.seser. Diunduh tanggal 13 februari 2022.

http://thufailpalestine.blogspot.com/2013/01/gelombang-obstulen.html. Diunduh tanggal 23 Mei 2022.

http://zafiraafriza.blogspot.co.id/2012/10/perambatan-gelombang-bunyi.html. Diunduh tanggal 23 Mei 2022

Audacity. (2013). “Audacity is free, open source, cross-plaform software for recording and editing sounds” dalam http://audacity.sourceforge.net. Diunduh tanggal 13 februari 2022.

DOI: https://doi.org/10.17509/wafi.v3i1.11078

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