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Environmental Engineering Innovation to Tackle Water Crisis in Modern Era Yuanyuan Wang; Shanshan Xu; Morse Kathryn
Journal of Moeslim Research Technik Vol. 1 No. 1 (2024)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/technik.v1i1.831

Abstract

Water crisis has become one of the major challenges of the modern era, with increasing demand for clean water and decreasing availability of quality water resources. In this context, environmental engineering innovations are crucial to effectively address this challenge. This research aims to explore various environmental engineering innovations that can be used to address the water crisis in the modern era. The main focus of this research is to identify technical solutions that can be applied to improve water management and increase the availability of clean water. The research method used involved an in-depth literature survey to gather information on recent environmental engineering innovations in addressing the water crisis. In addition, the research also involved a comparative analysis of various solutions that have been implemented in different regions around the world. The results show that there are various environmental engineering innovations that can be effective in addressing the water crisis in the modern era, including water treatment technologies, sustainable water resource management, and the use of renewable energy in water treatment systems. The conclusion of this research is that environmental engineering innovations play an important role in addressing the water crisis in the modern era. By implementing these innovative solutions, it is expected to achieve water quality restoration and sustainable increase in clean water availability.
Utilization of Drones Technology in Infrastructure Inspection and Maintenance Morse Kathryn; Wang Joshua; Elladdadi Mark
Journal of Moeslim Research Technik Vol. 1 No. 2 (2024)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/technik.v1i2.883

Abstract

The utilization of drones technology in infrastructure inspection and maintenance has become an important topic in civil engineering and infrastructure management studies. Adequate infrastructure supports the social and economic progress of a country, but requires regular maintenance to ensure its reliability. This research aims to investigate the effectiveness of utilizing drone technology in performing infrastructure inspection and maintenance, and to evaluate its impact on the efficiency and accuracy of the process. The research method used was a literature study and analysis of data from previous studies relevant to this topic. In addition, the research also involved primary data collection through interviews with experts in the field of drones and infrastructure technology. The results show that the utilization of drones technology can significantly improve the efficiency and accuracy in conducting infrastructure inspection and maintenance. Drones are able to reach areas that are difficult to reach manually and provide detailed and real-time data. The utilization of drone technology is a very potential solution in improving efficiency and accuracy in infrastructure inspection and maintenance. By utilizing drones, the process can be done more quickly, cheaply, and safely, so that it can support sustainable infrastructure development.
Current Quantum Optics Research: Exploring the Potential of Quantum Computing McCarty Elliot; Scherschligt Oscar; Morse Kathryn
Journal of Tecnologia Quantica Vol. 1 No. 1 (2024)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/quantica.v1i1.874

Abstract

Quantum Optics is a branch of physics that studies the interaction between light and matter on a quantum scale. Research in this field aims to understand the basic properties of light particles (photons) and matter (atoms, molecules) and utilize them in various applications, including quantum computing. The aim of this research is to explore the potential of quantum computing in the context of Quantum Optics. This includes quantum algorithm development, experimental implementation, and practical applications in quantum information processing. The research method used involves a combination of theoretical and experimental approaches. The theoretical approach involves the development and mathematical analysis of Quantum Optics models, while the experimental approach involves the design and implementation of quantum physics systems in the laboratory. The research results show significant progress in the development of quantum algorithms that can be used in modeling quantum physics systems, quantum information processing, and other applications. In addition, the experimental results also show achievements in the implementation of quantum system prototypes that can be applied in the field of quantum computing. From the research that has been conducted, it can be concluded that quantum computing has great potential in improving the understanding of quantum physical systems and in developing new technologies based on quantum principles. However, challenges such as quantum quality control and maintenance and system scalability remain the focus of future research. As such, current Quantum Optics research offers exciting and potentially paradigm-shifting insights into future information processing and computing technologies