Claim Missing Document
Check
Articles

Found 3 Documents
Search

INTEGRASI SAINS DAN ISLAM: MENGUNGKAP HUKUM KEPLER SEBAGAI BUKTI KETERATURAN ALAM SEMESTA DALAM AL-QUR’AN A. Rivaldi Hasibuan; Cinta Marcella Namira; Fatricya Handayani; Fitria Fadila Haris; Miftahul Jannah; Nazhira Mizilfa; Novita Zuraida; Ramadhan Saleh Lubis
Consilium: Education and Counseling Journal Vol 6 No 1 (2026): Edisi Maret
Publisher : Biro 3 Kemahasiswaan dan Kerjasama Universitas Abduracman Saleh Situbondo

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36841/consilium.v6i1.6274

Abstract

Keteraturan alam semesta telah lama menjadi objek kajian ilmuwan dan menjadi bukti kebesaran Tuhan dalam berbagai perspektif keagamaan. Dalam sains, Hukum Kepler menjelaskan keteraturan gerak planet dalam tata surya, sementara dalam Islam, Al-Qur'an menyebutkan keteraturan benda langit sebagai bagian dari ketetapan Allah. Penelitian ini menganalisis keterkaitan antara Hukum Kepler dan ayat-ayat Al-Qur'an untuk menunjukkan bahwa konsep keteraturan alam semesta yang dijelaskan dalam sains telah disebutkan dalam Islam. Studi literatur dan tafsir ilmiah digunakan dengan mengkaji sumber utama, yaitu Al-Qur'an, tafsirnya, serta jurnal dan buku astronomi. Analisis dilakukan melalui identifikasi ayat terkait, kajian literatur ilmiah, dan komparasi teori dengan tafsir, dengan validitas data dijamin melalui teknik triangulasi. Hasil penelitian menunjukkan bahwa prinsip keteraturan dalam Hukum Kepler selaras dengan konsep keteraturan alam dalam Al-Qur'an, sebagaimana tercermin dalam QS. Yasin: 38 dan QS. Ar-Rahman: 5, yang menegaskan bahwa matahari dan bulan beredar sesuai ketetapan Allah. Integrasi sains dan Islam dalam pendidikan memperkuat keimanan, menanamkan nilai tauhid, serta mendorong eksplorasi ilmiah dengan perspektif spiritual. Sejarah peradaban Islam juga menunjukkan bahwa ilmu dan agama saling melengkapi, sebagaimana dicontohkan oleh para ilmuwan Muslim dalam mengembangkan sains berbasis nilai-nilai Islam. Keterbaruan penelitian ini terletak pada analisis interdisipliner yang menghubungkan Hukum Kepler dengan ayat-ayat Al-Qur'an, sehingga memperkuat integrasi sains dan agama dalam kajian astronomi Islam.
Simulasi Gerak Pengejaran Misil terhadap Target dengan Lintasan Melingkar Menggunakan Python Lourensia Bravini Lahera; Cinta Marcella Namira; Elisa Siregar; Dewi Wulandari; Howard Situmorang; Yuni Warty
JIPFRI (Jurnal Inovasi Pendidikan Fisika dan Riset Ilmiah) Vol. 9 No. 2 (2025): November Edition
Publisher : Universitas Nurul Huda

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30599/jipfri.v9i2.4734

Abstract

This study aims to model the pursuit motion between guided missiles and a circularly moving aircraft using Python-based numerical simulation. The target moves along a circular path with a constant angular speed, while the missile follows a pure pursuit strategy, continuously adjusting its path toward the target's current position. Two scenarios are simulated: single pursuer and multi-agent pursuers. In the single-missile scenario, the missile forms a spiral trajectory and intercepts the target in approximately 4.9 seconds. In the multi-agent configuration, five missiles launched from different vertical positions successfully destroy the target within 8.3 seconds, with the first interception occurring at 6.7 seconds. The model is based on numerical solutions of differential equations governing relative motion dynamics. The results demonstrate that increasing the number of pursuers enhances interception speed and system effectiveness. The study is supported by animations, distance-time graphs, and damage analysis.
Eksplorasi Relativistik Fenomena Dilatasi Waktu: Studi Kritis Perjalanan Roket melalui Simulasi Virtual Walter Fendt Septi Maria; Jessica Urischiliya Banjarnahor; Katherine Cindy Apriliana Sibarani; Cesilia Sondang Uli Sitanggang; Vesona Cahya Rohana Sinaga; Dame Lamtiur Simanjuntak; Veronika Vransiska Tarigan; Cinta Marcella Namira; Ribka Nainggolan; Arya Sandro Simanjorang
Lambda: Jurnal Ilmiah Pendidikan MIPA dan Aplikasinya Vol. 5 No. 4 (2026): Lambda : Jurnal Ilmiah Pendidikan MIPA dan Aplikasinya
Publisher : Lembaga Bale Literasi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58218/lambda.v5i4.1869

Abstract

This study aims to explore the phenomenon of time dilation based on the Special Theory of Relativity through the Walter Fendt Relativity Simulation. The main problem in this research is how the relative velocity of an object affects the difference in time rates between two observers in different reference frames. The research employs a virtual experimental method with a descriptive quantitative approach. Data were obtained from simulations with relative velocities of (v/c = 0.3, 0.6, 0.8, 0.9, and 0.95), which were then compared with theoretical calculations using Einstein’s time dilation equation. The results indicate that as the relative velocity increases, the time difference between the two observers becomes greater. The percentage of agreement between the simulation and theoretical results shows a very small deviation, indicating that the Walter Fendt simulation has good validity in representing the concept of time dilation. These findings suggest that virtual simulations are effective in enhancing the understanding of relativistic concepts in modern physics learning.