Implementation of Video Tracker Application for Measurement of Elastic Pendulum Oscillatory Motion
Abstract
Advances in technology have a huge impact on the development of physics, the tracker application is one example of technological developments in the field of physics that can solve problems in analysing videos of the motion of an object recorded using a smartphone. One of the motion phenomena that can be analysed using the tracker application is the oscillatory motion of an elastic pendulum. The purpose of this research to know the analysis of elastic pendulum motion in the form of oscillation trajectory and period using tracker application. The method used in this research is experimental method. The results of the analysis obtained from this research are that the oscillation trajectory of the elastic pendulum does not move the same or irregularly when oscillating, and the period that occurs in the oscillation of the x and y axes against time (t) is relatively constant.
Downloads
References
N. W. Rini, J. Saefan, and D. N. Khoiri, “57 Prosiding Seminar Nasional Lontar Physics Forum VI 2022”.
M. Ulin Nuha and S. B. Waluya, “METODE AVERAGING UNTUK MENYELESAIKAN PERSAMAAN DIFERENSIAL NONLINEAR PENDULUM ELASTIS,” 2015. [Online]. Available: http://journal.unnes.ac.id/sju/index.php/ujm
T. S. Amer, M. A. Bek, and S. S. Hassan, “The dynamical analysis for the motion of a harmonically two degrees of freedom damped spring pendulum in an elliptic trajectory,” Alexandria Engineering Journal, vol. 61, no. 2, pp. 1715–1733, Feb. 2022, doi: 10.1016/j.aej.2021.06.063.
T. S. Amer, M. A. Bek, M. S. Nael, M. A. Sirwah, and A. Arab, “Stability of the Dynamical Motion of a Damped 3DOF Auto-parametric Pendulum System,” Journal of Vibration Engineering and Technologies, vol. 10, no. 5, pp. 1883–1903, Jul. 2022, doi: 10.1007/s42417-022-00489-w.
A. Nurdin and S. Hastuti, “ANALISA GERAKAN OSILATOR HARMONIK TEREDAM MENGGUNAKAN METODE NUMERIK,” 2019.
L. L. R. Trifina, A. Warsito, L. A. S. Lapono, and A. C. Louk, “VISUALISASI FENOMENA HARMONIS DAN CHAOS PADA GETARAN TERGANDENG BERBASIS KOMPUTASI NUMERIK RUNGE KUTTA,” 2023.
S. Y. G. Toda, A. Harso, and R. B. Astro, “Pengembangan Mobile Learning Sebagai Sumber Belajar Fisika Pada Materi Gerak Lurus Untuk Siswa Kelas X,” Lensa: Jurnal Kependidikan Fisika, vol. 9, no. 2, p. 124, Dec. 2021, doi: 10.33394/j-lkf.v9i2.4387.
S. R. Fakultas, T. Informasi, U. Islam, K. Muhammad, and A. Al Banjari, “PENGOLAHAN CITRA DIGITAL DAN HISTOGRAM DENGAN PHYTON DAN TEXT EDITOR PHYCHARM,” 2020.
P. Citra, W. M. Darma, and A. Purwanto, “Pengolahan Citra Digital (Widhi Mahardi Darma)225.”
Y. M. Elot, Y. Angol, G. Alus, R. B. Astro, and A. Nasar, “ANALISIS PERCEPATAN GRAVITASI BERBASIS VIDEO TRACKING PADA AYUNAN BANDUL,” Jurnal Kumparan Fisika, vol. 5, no. 2, pp. 69–76, Aug. 2022, doi: 10.33369/jkf.5.2.69-76.
I. A. Rizki, N. F. Citra, H. V. Saphira, W. Setyarsih, and N. P. Putri, “EKSPERIMEN DAN RESPON MAHASISWA TERHADAP PRAKTIKUM FISIKA NON-LABORATORIUM MENGGUNAKAN APLIKASI TRACKER VIDEO ANALYSIS UNTUK PERCOBAAN KINEMATIKA GERAK,” Journal of Teaching and Learning Physics, vol. 6, no. 2, pp. 77–89, Aug. 2021, doi: 10.15575/jotalp.v6i2.12640.
M. R. Syepudin, R. Siti Badriah, R. M. Warga, T. Kartini, and W. Zikbal, “MENGANALISIS SUDUT PENDULUM PADA BIDANG MIRING MENGGUNAKAN SOFTWARE TRACKER VIDEO,” JoTaLP: Journal of Teaching and Learning Physics, vol. 3, pp. 14–20, 2018, doi: 10.15575/jtlp.v3i2.6553.
R. B. Astro, H. Doa, K. Denny, and P. Meke, “PENGEMBANGAN PETUNJUK PRAKTIKUM GAYA GESEK DI BIDANG MIRING BERBASIS VIDEO TRACKING UNTUK MENINGKATKAN MINAT MAHASISWA,” vol. 7, no. 2, 2021.
A. Rafid and F. Gani, “STRING (Satuan Tulisan Riset dan Inovasi Teknologi) HUBUNGAN ANTARA VARIASI SUDUT DENGAN NILAI PERIODE PADA BANDUL MENGGUNAKAN MIKROKONTROLLER ARDUINO.”
R. M. Muspa and Y. Pramudya, “Studi Numerik Gerak Osilasi Teredam Balok Pada Bidang Miring,” JRST (Jurnal Riset Sains dan Teknologi), vol. 7, no. 1, p. 59, Mar. 2023, doi: 10.30595/jrst.v7i1.15315.
Y. Acu, B. P. Lapanporo, and A. A. Kushadiwijayanto, “Model Sederhana Gerak Osilator dengan Massa Berubah Terhadap Waktu Menggunakan Metode Runge Kutta,” POSITRON, vol. 7, no. 2, p. 42, Jan. 2018, doi: 10.26418/positron.v7i2.23276.
Copyright (c) 2024 Sigit Ristanto, Hafizh Aji Prakosa, Nur Khoiri, Affandi Faisal Kurniawan, Joko Saefan
This work is licensed under a Creative Commons Attribution 4.0 International License.
Ciptaan disebarluaskan di bawah Lisensi Creative Commons Atribusi 4.0 Internasional.