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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.
Application of 3D Printing Techniques in Modern Infrastructure Development Mela Amelia Santika Shanshan Xu; Wolnough Cale; Mahon Nitin
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.v1i2.882

Abstract

Modern infrastructure development faces complex challenges in terms of speed, cost and sustainability. In an effort to meet these demands, 3D printing techniques have emerged as a promising innovative solution. However, there are still few studies that comprehensively examine the application of 3D printing techniques in the context of modern infrastructure development. This research aims to explore the potential application of 3D printing techniques in modern infrastructure development and to provide a deeper understanding of its benefits, challenges and practical implications. The research methods used include an in-depth literature study, case analysis, and interviews with relevant experts and practitioners. This approach allows us to have a holistic understanding of how 3D printing techniques can be applied in modern infrastructure development. The results show that the application of 3D printing techniques in modern infrastructure development has significant potential in terms of construction efficiency, design flexibility, and material waste reduction. However, there are still some challenges that need to be overcome, such as limited materials and standards, and limited availability of technology. Overall, this study concludes that 3D printing techniques have great potential to change the paradigm of modern infrastructure development. However, to fully realize this potential, cross-sectoral cooperation, investment in research and development, and the development of adequate regulations are required to overcome the challenges faced.
Analysis of Operational Performance and Service of the Jenggala Commuter Train (Route Surabaya Kota – Mojokerto) Hafid Zainuddin; Judiono Judiono; Shanshan Xu
Journal of Moeslim Research Technik Vol. 1 No. 3 (2024)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/technik.v1i3.1022

Abstract

This research aims to analyze the operational performance and facilities availability at the stations for the Jenggala Commuter Train connecting Surabaya Kota with Mojokerto. Through data collection and analysis, this study will evaluate issues frequently experienced by passengers such as improper departure times, delays, overcrowding, and ticket availability. Additionally, it will assess the service provided by the operators regarding passenger satisfaction with the Jenggala commuter service. The next step involves comparing the analysis results with applicable standards to identify appropriate solutions and recommendations to enhance the efficiency and quality of mass transportation services in urban areas of Indonesia, particularly in East Java. It is hoped that the findings of this research will significantly contribute to improving sustainability and the quality of life for communities through the enhancement of existing transportation systems. The operational performance has been assessed through several parameters. It was found that the load factor and punctuality of journeys have met the established standards. However, travel speed has not yet reached the desired standard. Through the Importance Performance Analysis (IPA) method, an evaluation of the Jenggala commuter train service was conducted by considering both low and high priority service attributes. This aims to ensure that the service performance meets the needs of passengers. The results of the passenger satisfaction level analysis using the Customer Satisfaction Index (CSI) method indicate that the overall satisfaction rating for the Jenggala commuter train service falls within the "satisfied" category. Thus, these findings provide insights into areas where operational performance can be improved and offer an understanding of passenger needs and expectations that can serve as a focus for improvement in the future.
New Challenges in Compressed Matter Physics: Future Research Projections Zhang Wei; Shanshan Xu; Murphy Xavier
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.v1i1.873

Abstract

Compressed Matter Physics has become an increasingly important field in understanding the properties of matter under extreme conditions, such as those found inside giant planets, neutron stars, and in experiments with ultra-intense lasers. However, although there has been progress in the understanding of compressed matter, there are still major challenges that need to be overcome in understanding the behavior of matter under these extreme conditions. This research aims to explore new challenges in the physics of compressed matter and identify future research projections that can overcome these challenges as well as to improve understanding of the properties of matter under extreme conditions and develop potential applications in various fields, including astronomy, nuclear physics, and materials engineering. This research method involves analysis of the latest literature in the field of compressed matter physics, as well as discussion and collaboration with experts in the scientific community. The results show that there are several major challenges in understanding the physics of compressed matter, including a deeper understanding of the behavior of matter at very high pressures and temperatures, as well as the development of more sophisticated technologies to measure and model these extreme conditions. In addition, we also identify several future research projections that can address these challenges, including the development of new experimental techniques, the development of more sophisticated theoretical models, and the use of more powerful energy sources to achieve extreme conditions. higher. The conclusions of this study highlight the importance of continuing to explore the world of compressed matter to understand the properties of matter under extreme conditions. By identifying key challenges and future research projections, we hope to inspire continued research in this field and advance understanding of the universe at extreme scales.
Transforming Society through Creative Technology: Case Studies of Social Innovation in Game Design and Virtual Reality Shanshan Xu; Cai Jixiong; Zhang Wei
Journal of Social Entrepreneurship and Creative Technology Vol. 1 No. 1 (2024)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/jseact.v1i1.1006

Abstract

The advent of creative technologies such as game design and virtual reality (VR) has opened new avenues for social innovation. These technologies offer immersive and interactive experiences that can address various societal challenges, from education to mental health. Despite their potential, there is limited comprehensive research on how these technologies are being utilized in social innovation. This research aims to explore how creative technologies in game design and virtual reality are transforming society through social innovation. The study seeks to identify successful case studies and analyze the impact of these technologies on different social sectors. The research employs a qualitative case study approach, examining six social innovation projects that leverage game design and VR. Data were collected through in-depth interviews with project leaders, direct observation, and analysis of project outcomes. This approach provides a detailed understanding of the implementation processes, challenges, and successes of each project. The findings indicate that game design and VR have significant potential to create positive social change. Projects in education showed enhanced student engagement and learning outcomes, while mental health initiatives reported improved therapeutic experiences and patient well-being. Other projects addressed issues such as social inclusion and environmental awareness, demonstrating the versatility and effectiveness of these technologies. The study concludes that creative technologies in game design and VR can play a transformative role in social innovation. By providing engaging and immersive experiences, these technologies can effectively address a wide range of societal challenges. Continued research and investment in these areas are recommended to fully harness their potential for social good.