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Penerapan Algoritma Pathfinding Pada Game Petualangan Pemadam Kebakaran Menggunakan Metode Learning Instructional Design Kurniadi, Dede; Tresnawati, Dewi; Fitriani, Ranti
Jurnal Teknik Informatika dan Sistem Informasi Vol 11 No 1 (2025): JuTISI
Publisher : Maranatha University Press

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.28932/jutisi.v11i1.8514

Abstract

Firefighters have responsibilities in fire and rescue incidents that do not exist in fire incidents, such as evacuating wasp nests, rescuing animals trapped in trees or wells, and so on. The importance of understanding the duties of a fire extinguisher is toprovide awareness to the public that with the existence of a fire extinguisher, the management of environmental resources is better maintained to realize environmental safety and security from the dangers of fire disasters. With very rapid technological information, presenting firefighting duties can be more interesting if presented with an adventure-themed 3D educational game. This research uses the Digital Game-Based Learning Instructional Design (DGBL-ID) method and applies a pathfinding algorithm to the path thatwill be taken. This research produces an Android-based firefighting adventure game application. Testing the level of user satisfactionobtained very satisfactory results, which were measured based on Black Box testing with the Guttman Scale method calculation.
Formulation and characterization of nanoparticles combination of binahong leaves and bay leaves as a thin oral herbal preparation for diabetes prevention Priana, Eka; Jafar, Garnadi; Kusriani, R. Herni; Meilani, Intan; Fitriani, Ranti
Science Midwifery Vol 14 No 1 (2026): April: Health Sciences and related fields
Publisher : Institute of Computer Science (IOCS)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35335/midwifery.v14i1.2328

Abstract

Diabetes mellitus is a chronic metabolic disease with a steadily increasing prevalence globally. Binahong leaves (Anrederacordifolia) and bay leaves (Syzygiumpolyanthum) contains flavonoids, such as kaempferol, which have the potential as antidiabetics, but its use is limited by the low solubility, stability, and bioavailability of the active compounds. This study aims to formulate and characterize a nanoparticle herbal medicine combining the two leaves using PlantCrystal technology, and develop it into an oral thin herbal preparation. The simplicia was processed through sorting, washing, drying, grinding, and sieving, then characterized and screened for phytochemicals. The nanoparticle herbal medicine was evaluated based on particle size, polydispersity index, zeta potential, and particle morphology. The membrane lysis release test showed an increase in the release of active substances compared to the simplicia. Furthermore, the formulation was developed into an oral thin herbal and evaluated for its physical properties, including organoleptic, water content, pH, film thickness, fold resistance, weight uniformity, and disintegration time.