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Contact Name
Adam Mudinillah
Contact Email
adammudinillah@staialhikmahpariangan.ac.id
Phone
+6285379388533
Journal Mail Official
adammudinillah@staialhikmahpariangan.ac.id
Editorial Address
Jorong Kubang Kaciak Dusun Kubang Kaciak, Kelurahan Balai Tangah, Kecamatan Lintau Buo Utara, Kabupaten Tanah Datar, Provinsi Sumatera Barat, Kodepos 27293.
Location
Kab. tanah datar,
Sumatera barat
INDONESIA
Research of Scientia Naturalis
ISSN : 30479932     EISSN : 30479940     DOI : 10.70177/scientia
Research of Scientia Naturalis is an international forum for the publication of peer-reviewed integrative review articles, special thematic issues, reflections or comments on previous research or new research directions, interviews, replications, and intervention articles - all pertaining to the research fields of Mathematics and Natural Sciences. All publications provide breadth of coverage appropriate to a wide readership in Mathematics and Natural Sciences research depth to inform specialists in that area. We feel that the rapidly growing Research of Scientia Naturalis community is looking for a journal with this profile that we can achieve together. Submitted papers must be written in English for initial review stage by editors and further review process by minimum two international reviewers.
Arjuna Subject : Umum - Umum
Articles 5 Documents
Search results for , issue "Vol. 1 No. 1 (2024)" : 5 Documents clear
ChatGPT application in ground settlement analysis using LISA V.8 FEA Efendi, Aco Wahyudi
Research of Scientia Naturalis Vol. 1 No. 1 (2024)
Publisher : Yayasan Adra Karima Hubbi

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Abstract

OpenAI, an artificial intelligence research center situated in Ohio, USA, created ChatGPT. The model can be used to create autonomous discussions in conversational apps, assist with content generation, and even assist with multi-language translation with various degrees of accuracy for each language. ChatGPT is increasingly being used in all scientific domains and has a good influence, as evidenced by past research findings. This research will use ChatGPT in the field of geotechnical engineering by studying the settlement of soil layers with spongy clay type and validating it with modeling using LISA V.8 FEA finite element analysis (license). It is expected that this research will provide similar results to previous studies in engineering and other social fields. This research was conducted to be able to determine and provide validation of the behavior of the subsidence that occurred using ChatGPT and Finite Element Method Software LISA FEA V.8 from the results obtained were in model (a) there was a decrease in soil up to 0.0206 mm and in model (b) there was a decrease of 0.0167 with a ratio of 0.811 and with the ChatGPT model obtained a decrease of 0.0226 mm with a ratio of 1.097.
Potential Utilization of Palms as Weaving Tools and Crafts in the Acehnese Community in Gandapura District, Bireuen Regency Roswita, Cut; Saputra, Syifa; Hanum, Erlia; Tutiliana, Tutiliana; Aldyza, Nadia
Research of Scientia Naturalis Vol. 1 No. 1 (2024)
Publisher : Yayasan Adra Karima Hubbi

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Abstract

Gandapura sub-district is an area that has the potential of unique natural resources rich in flora and fauna. However, the potential possessed by the community in processing palms has not been developed, and has not been able to increase market sales in order to improve the needs of their daily lives, In the end, this research activity was carried out can have an impact on community empowerment in increasing the production of plaits and community skills. already known information about the use of plants as tools, plaits and crafts by the community in this area, conducted an exploration of the existing knowledge in the community. The method used was participatory observation, questionnaires and semi-structured and free in-depth interviews (open ended) on various age groups, The results showed 7 types of plants for the production of tools, plaits and crafts, these types are Bak Jok ('), bak Pineng (Areca catechu), bak Teue (Borassus flabellifer), Ibus (carypha Utan) bak U (Cocos nucifera), bak Meria (Metroxylon sago), and bak Lipah (Nypa fruticans).
Arecaceae Plants (Palms) Used for Cultural Ceremonies in Acehnese Communities in Gandapura District, Bireuen Regency Roswita, Cut; Hanum, Erlia; Tutiliana, Tutiliana; Hasanah, Zainatul; Aldyza, Nadia
Research of Scientia Naturalis Vol. 1 No. 1 (2024)
Publisher : Yayasan Adra Karima Hubbi

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Abstract

Ethnobotany is a branch of science that studies the relationship between humans and plants and their environment. Arecaceae is one of the most important plant families for human life and its species are widely used in everyday life, one of which is as a material for traditional cultural ceremonies. Plant parts that are utilized by the community consist of fruit and leaves. Acehnese people who live in Gandapura District still closely hold cultural customs traditions in all kinds of traditional ceremonies in the region but have not been widely developed about the introduction of cultural customs using arecaceae plants to modern society. This research is useful to provide information to modern society about the cultural customs of the community in the traditional use of Arecaceae plants. This research has been conducted by collecting data by distributing questionnaires, semi-structured interviews and free in-depth (open ended) in various age groups. The results showed 2 types of Arecaceae plants that are utilized by the community as cultural ceremonial tools, these types are: bak U (Cocos nucifera) and bak Pineng (Areca catechu).
Effectiveness of experiment-based learning method in improving elementary school students' understanding of Islamic physics concepts Azzahra, Adinda; Amra, Abhanda; Pebrina, Rizki; Mudinillah, Adam
Research of Scientia Naturalis Vol. 1 No. 1 (2024)
Publisher : Yayasan Adra Karima Hubbi

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Abstract

This research is driven by the importance of developing effective learning methods to improve the understanding of Islamic physics concepts in elementary school students. The experiment-based learning method was chosen because it provides opportunities for students to learn actively through direct experience, observation, and reflection. Research that specifically evaluates this method in terms of students' understanding of Islamic physics in primary schools is limited. The purpose of this study is to fill the gap on the understanding of Islamic physics concepts in elementary school students by determining whether the experiment-based learning method is effective in this regard. This research method is using quantitative method, which collects data through distributing questionnaires using google from to educators. Quantitative methods are data that contain numbers. Then the questionnaire results are processed using SPSS, which is presented in the form of graphs or tables. This method is used to obtain clearer and complex results that can strengthen the data to be carried out and interviews provide written text of educators. The results showed that there was a significant increase in understanding of physics concepts between students who were taught. The experimental approach provides direct experience to students, allowing them to see and feel the principles of physics in a real context and relevant to Islamic values.
Exploring Quantum Tunability in Novel Hybrid Dielectric-Ferroelectric-Multiferroic Materials for Advanced Photonic Applications Tanuza, Zhang; Tiffany, Das; Vickie, Chao
Research of Scientia Naturalis Vol. 1 No. 1 (2024)
Publisher : Yayasan Adra Karima Hubbi

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Abstract

Dielectrics, ferroelectrics, and multiferroics are critical materials in modern technology due to their unique electrical, magnetic, and optical properties. Hybrid materials that combine these properties hold promise for advanced photonic applications. Quantum tunability, the ability to control material properties at the quantum level, offers opportunities to enhance performance and functionality in these hybrid materials. This study aims to investigate the potential of quantum tunability in novel hybrid dielectric-ferroelectric-multiferroic materials for advanced photonic applications. The research seeks to understand how combining these materials at the quantum level can lead to new functionalities and improved performance in photonic devices. A comprehensive approach was used, combining experimental and theoretical techniques. Hybrid materials were synthesized using epitaxial growth and chemical vapor deposition. X-ray diffraction, scanning electron microscopy, and spectroscopy characterized their structural, electrical, and optical properties. Quantum mechanical simulations were conducted to understand the interactions at the atomic level and predict material behavior under various conditions. The study demonstrated that hybrid materials exhibit unique properties that are not present in individual components. Enhanced dielectric and ferroelectric responses and improved magnetic and optical characteristics were observed. Quantum simulations revealed strong coupling between different ferroic orders, leading to tunable properties suitable for photonic applications. These findings were confirmed by experimental data, showing significant potential for these materials in advanced photonic devices. Quantum tunability in hybrid dielectric-ferroelectric-multiferroic materials offers a new pathway for developing advanced photonic applications. Integrating multiple ferroic properties at the quantum level enhances performance and new functionalities. Further research is needed to optimize these materials and address challenges related to stability and integration with existing technologies. This study provides a foundation for future photonics and multifunctional material design advancements.

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