Formulasi Trigonometri Dalam Pembuatan Software Penentuan Arah Kiblat berbasis Visual Basic

Authors

  • Mustafa Syukur Universitas Nurul Jadid Paiton Probolinggo
  • Muhammad Hasan Basri Universitas Nurul Jadid Paiton Probolinggo

DOI:

https://doi.org/10.48056/jintake.v10i2.56

Keywords:

Software, arah kiblat, persamaan trigonometri, ilmu falak.

Abstract

The science of Falak is basically divided into two types, namely the science of Falak Ilmiy, and the science of Falak Amaliy. The science of Falak discussing the direction of Qibla is basically calculating the amount of angles flanked by meridian lines that pass through a place that is called the Qibla direction with a large circle passing through the relevant place and the Kaaba, and calculating what time the sun cuts the path to the Kaaba. The problem that arises is not everyone is able to calculate the correct direction about the Qibla direction but instead uses a range of directions. It is possible to make an application program for determining the direction of Qibla and others so that it can be used for the general public and is easy to apply. This research helps how to calculate the direction of Qibla and how to make and apply the software of Qibla direction determination using visual basic. The results of this study can be used as a reference in solving various cases of physical analysis in various aspects related to other astronomy.

Author Biographies

Mustafa Syukur , Universitas Nurul Jadid Paiton Probolinggo

Universitas Nurul Jadid Paiton Probolinggo

Muhammad Hasan Basri, Universitas Nurul Jadid Paiton Probolinggo

Universitas Nurul Jadid Paiton Probolinggo

References

M. Z. Ibrahim and M. Z. Norashikin, “Universal Qibla and prayer time finder,” World Acad. Sci. Eng. Technol., vol. 58, pp. 447–452, 2009.

K. Umam, “Studi pemikiran KH. Ahmad Ghozali tentang metode hisab gerhana matahari global dalam kitab Al-Durru Al-Anîq.” UIN Walisongo Semarang, 2019.

M. N. Razali, R. Hanapi, E. Haji Abdul Rahim, and M. Z. Hashim, “An Intuitive Design Approach to Support User Experience(UX) in Determining Qibla Direction,” Int. J. Inf. Technol. Comput. Sci., vol. 8, no. 2, pp. 10–17, 2013.

D. I. Mulyana, M. B. Yel, and D. Syahreza, “Using Algorithm Jean Meuus and Solrad Simulation Application in Determining Early Months Qamariyah,” Procedia-Social Behav. Sci., vol. 65, pp. 845–853, 2012.

M. R. Syarif, “ISLAM FENOMENALIS GERHANA MATAHARI DI INDONESIA: Studi budaya ‘ Siemme Matanna Essoeâ€TM pada perempuan Bugis Bone,” ARICIS Proc., vol. 1, 2017.

H. Karttunen, P. Kröger, H. Oja, M. Poutanen, and K. J. Donner, Fundamental astronomy. Springer, 2016.

J. Shodiq, “Studi analisis metode hisab gerhana matahari Rinto Anugraha dalam buku Mekanika Benda Langit.” UIN Walisongo, 2016.

G. Basini and S. Capozziello, “Questioning the quark model. Strong interaction, gravitation and time arrows. An approach to asymptotic freedom,” EPL (Europhysics Lett., vol. 63, no. 5, p. 635, 2003.

M. Raharto and D. J. Arifin, “Telaah Penentuan Arah Kiblat Dengan Perhitungan Trigonometri Bola Dan Bayang-bayang Gnomon Oleh Matahari,” J. Fis. Himpun. Fis. Indones., vol. 11, no. 1, pp. 23–29, 2011.

H. Nurohmah and M. Ali, “Performansi Thyristor Controlled Series Capacitor (TCSC) Pada Saluran Transmisi Menggunakan Bahasa Pemrograman PSAT,” J. Intake, vol. 4, no. 2, pp. 62–74, 2013.

A. Padil, “Dasar-Dasar Ilmu Falak Dan Tataordinat: Bola Langit dan Peredaran Matahari,” Al Daulah J. Huk. Pidana dan Ketatanegaraan, vol. 2, no. 2, pp. 195–214, 2016.

Published

2019-04-25

How to Cite

[1]
Mustafa Syukur and Muhammad Hasan Basri, “Formulasi Trigonometri Dalam Pembuatan Software Penentuan Arah Kiblat berbasis Visual Basic ”, jintake, vol. 10, no. 2, pp. 79-82, Apr. 2019.