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FAIR WEALTH DISTRIBUTION THROUGH INSTRUMENTS IN ISLAMIC ECONOMICS Rezeki, Sri Gusti; Ferdiansyah, Veri; Adisa, Yunda; Ginting, Dea Cindi Amelia; Amelia, Rizqa
CURRENT ADVANCED RESEARCH ON SHARIA FINANCE AND ECONOMIC WORLDWIDE Vol. 2 No. 3 (2023): APRIL
Publisher : Transpublika Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55047/cashflow.v2i3.657

Abstract

Distribution plays a crucial role in ensuring fair allocation of resources and commodities to individuals in a community, with the objective of achieving maslahat (benefit). In Islamic economics, distribution has a broader significance compared to other economic systems, encompassing the fair distribution of resources, goods, and services through market mechanisms, enabling individuals to experience the benefits of produced commodities. This research aims to examine the importance of fair wealth distribution in Islam using principles such as waqaf, qard al-Hasan, musharakah, mudharabah, zakat, and infaq. Employing a qualitative methodology, data was collected from papers, research journals, books, and written sources, which were reviewed, interpreted, and analyzed through content analysis. The findings indicate that distribution instruments in Islamic economics serve as effective means to achieve fair and equitable distribution within society. By implementing waqaf, qard al-Hasan, musharakah, mudharabah, zakat, and infaq, communities can attain social justice and reduce economic disparities. However, public awareness, adequate infrastructure, and a supportive regulatory framework are crucial factors for the successful implementation of these distribution instruments. Through appropriate efforts, these instruments can become powerful tools in fostering a more inclusive, sustainable, and just economy.
Rancang Bangun Prototype Sistem Monitoring Dan Kontrol Tanaman Hidroponik Berbasis Internet of Things (IoT) Menggunakan Microcontroller ESP32 Ferdiansyah, Veri; Siska, Siska Atmawan Oktavia; Mulyanto, Yudi; Yunanri.W
Bulletin of Information Technology (BIT) Vol 6 No 3: September 2025
Publisher : Forum Kerjasama Pendidikan Tinggi (FKPT)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.47065/bit.v6i3.2198

Abstract

Hydroponic farming has emerged as an innovative solution to address land limitations and support sustainable food production. However, its success highly depends on consistent monitoring of light intensity and nutrient water availability. This study aims to design and develop a prototype monitoring and control system for hydroponic plants based on the Internet of Things (IoT) using the ESP32 microcontroller. The system employs an ultrasonic sensor to measure water level, a Light Dependent Resistor (LDR) sensor to detect light intensity, a 12V DC water pump, and LED grow lights as actuators. Environmental condition data is transmitted in real-time to the Blynk mobile application, which also provides automatic notifications when anomalies occur, such as low water levels or light intensity falling below the threshold. The development method used is Research and Development (R&D) with the ADDIE model, covering analysis, design, development, implementation, and evaluation stages. Testing results show that the system operates automatically and in real-time, achieving 100% detection accuracy for water level measurements and 98% for light intensity measurements. The implementation of this prototype is expected to improve the efficiency and effectiveness of small-scale hydroponic cultivation and serve as an affordable solution for farmers and the general public to adopt smart farming technology.