Jurnal Teori dan Aplikasi Fisika https://jtaf.fmipa.unila.ac.id/index.php/jtaf <div style="width: 100%; text-align: center; margin-bottom: 25px;"><img style="width: 100%; max-width: 100%; border-radius: 8px; box-shadow: 0 4px 12px rgba(0,0,0,0.1);" src="https://jtaf.fmipa.unila.ac.id/public/journals/1/homepageImage_en_US.png" alt="JTAF Homepage Image" /></div> <div style="display: flex; flex-wrap: wrap; gap: 25px; padding-bottom: 25px; border-bottom: 2px solid #1D4E9E; margin-bottom: 30px;"> <div style="flex: 1; min-width: 160px; text-align: center;"><img style="width: 100%; max-width: 160px; border-radius: 4px; box-shadow: 0 8px 16px rgba(0,0,0,0.15); border: 1px solid #ddd;" src="https://jtaf.fmipa.unila.ac.id/public/journals/1/cover_issue_27_en_US.jpg" alt="JTAF Cover" /></div> <div style="flex: 2; min-width: 300px;"> <table style="width: 100%; border-collapse: collapse; background-color: #ffffff; border: 1px solid #e1e8f0;"> <tbody> <tr style="background-color: #f8fbff; border-bottom: 1px solid #e1e8f0;"> <td style="padding: 10px 15px; font-weight: bold; width: 35%; color: #1d4e9e; border-right: 1px solid #e1e8f0;">Journal Name</td> <td style="padding: 10px 15px;">Jurnal Teori dan Aplikasi Fisika</td> </tr> <tr style="background-color: #ffffff; border-bottom: 1px solid #e1e8f0;"> <td style="padding: 10px 15px; font-weight: bold; color: #1d4e9e; border-right: 1px solid #e1e8f0;">Abbreviation</td> <td style="padding: 10px 15px;"><a style="color: #1d4e9e; text-decoration: none; font-weight: bold;" href="https://jtaf.fmipa.unila.ac.id/index.php/jtaf">JTAF</a></td> </tr> <tr style="background-color: #f8fbff; border-bottom: 1px solid #e1e8f0;"> <td style="padding: 10px 15px; font-weight: bold; color: #1d4e9e; border-right: 1px solid #e1e8f0;">Frequency</td> <td style="padding: 10px 15px;">2 issues / year (January &amp; July)</td> </tr> <tr style="background-color: #ffffff; border-bottom: 1px solid #e1e8f0;"> <td style="padding: 10px 15px; font-weight: bold; color: #1d4e9e; border-right: 1px solid #e1e8f0;">ISSN / E-ISSN</td> <td style="padding: 10px 15px;"><a style="color: #1d4e9e; text-decoration: none; font-weight: 600;" href="https://portal.issn.org/resource/ISSN/2303-016X" target="_blank" rel="noopener">2303-016X</a> / <a style="color: #1d4e9e; text-decoration: none; font-weight: 600;" href="https://portal.issn.org/resource/ISSN/2549-1156" target="_blank" rel="noopener">2549-1156</a></td> </tr> <tr style="background-color: #f8fbff; border-bottom: 1px solid #e1e8f0;"> <td style="padding: 10px 15px; font-weight: bold; color: #1d4e9e; border-right: 1px solid #e1e8f0;">Publisher</td> <td style="padding: 10px 15px;">Physics Dept, FMIPA, University of Lampung</td> </tr> <tr style="background-color: #ffffff;"> <td style="padding: 10px 15px; font-weight: bold; color: #1d4e9e; border-right: 1px solid #e1e8f0;">Editor in Chief</td> <td style="padding: 10px 15px;">Dr. Junaidi, S.Si., M.Sc.</td> </tr> </tbody> </table> </div> </div> <div style="text-align: center; margin-bottom: 35px;"> <h3 style="color: #1d4e9e; margin-bottom: 15px; font-size: 1.1em; letter-spacing: 1px; font-weight: 800;">INDEXED BY</h3> <div style="display: grid; grid-template-columns: repeat(auto-fit, minmax(110px, 1fr)); gap: 10px;"><a style="padding: 10px; background: #fff; border: 1px solid #e1e8f0; border-radius: 8px;" href="https://sinta.kemdiktisaintek.go.id/journals/profile/5138" target="_blank" rel="noopener"><img style="width: 100%; height: 35px; object-fit: contain;" src="https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEhSoT_IZxNIg5EFI4pyy4jPGEIfFrHqGRdtS54cB2n8B3Fu9mRxBtBoRpqVEwDEgFXcO6pRoxPA22Z9-To2VYXd8tWj9Y_Z5-JQGZtK1G6GcdjNBQ370w4llAzKlxOF80LfBRRlO3e0NdnKhPZbM0Y4A_A6N0wL-OTeKiZf_NFUhgExhDGdJj8GtHoxJMA/s320-rw/s3.png" alt="Sinta" /></a> <a style="padding: 10px; background: #fff; border: 1px solid #e1e8f0; border-radius: 8px;" href="https://garuda.kemdiktisaintek.go.id/journal/view/15440" target="_blank" rel="noopener"><img style="width: 100%; height: 35px; object-fit: contain;" src="https://journal.eng.unila.ac.id/public/site/images/jitetadmin/garudaa.jpg" alt="Garuda" /></a> <a style="padding: 10px; background: #fff; border: 1px solid #e1e8f0; border-radius: 8px;" href="https://scholar.google.co.id/citations?user=G7YlergAAAAJ" target="_blank" rel="noopener"><img style="width: 100%; height: 35px; object-fit: contain;" src="https://journal.eng.unila.ac.id/public/site/images/admin/google-scholar-logo-20151.png" alt="Google Scholar" /></a> <a style="padding: 10px; background: #fff; border: 1px solid #e1e8f0; border-radius: 8px;" href="https://search.crossref.org/?q=2549-1156" target="_blank" rel="noopener"><img style="width: 100%; height: 35px; object-fit: contain;" src="https://journal.eng.unila.ac.id/public/site/images/jitetadmin/crossref-1-edt1.png" alt="Crossref" /></a></div> </div> <div style="text-align: justify;"> <h3 style="color: #1d4e9e; border-left: 5px solid #1D4E9E; padding-left: 15px; margin-bottom: 12px; font-weight: 800;">OVERVIEW</h3> <p><strong>The Journal of Theory and Applications in Physics (JTAF)</strong> serves as a high-quality platform for researchers and students in <strong>theoretical and applied physics</strong>. We are an Open Access journal ensuring global accessibility with <strong>no submission fees</strong>.</p> </div> <div style="margin-top: 30px; padding: 5px; border: 1px solid #e1e8f0; border-radius: 8px; background: #fff;"><iframe style="border: none;" src="https://jtaf.fmipa.unila.ac.id/report.php" width="100%" height="520" frameborder="0"></iframe></div> en-US [email protected] (Administration) [email protected] (Ayu Aprilia) Fri, 31 Jul 2026 17:00:48 +0000 OJS 3.2.1.5 http://blogs.law.harvard.edu/tech/rss 60 Studi Penggunaan Biokomposit Anyaman Jute dengan Filler MWCNT sebagai Material Perisai Interferensi Elektromagnetik https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/646 <p>Dominasi material sintetis dalam aplikasi perisai interferensi elektromagnetik (EMI) memicu kebutuhan akan alternatif yang lebih ramah lingkungan. Penelitian ini mengevaluasi kinerja biokomposit hibrida berbasis anyaman serat jute (JF) yang diperkuat dengan <em>Multi-Walled Carbon Nanotubes</em> (MWCNT) sebagai material penyerap gelombang elektromagnetik. Sampel dibuat dengan memvariasikan persentase serat (10%, 20%, dan 30%) dari berat komposit total, serta persentase MWCNT (0%, 2%, dan 5%) dari berat polimer matriks epoksi resin untuk mengetahui komposisi optimum. Hasil karakterisasi menunjukkan bahwa integrasi MWCNT berkorelasi positif terhadap peningkatan konduktivitas listrik bahan. Namun, teramati adanya batasan dalam penambahan serat, di mana persentase volume serat yang tinggi justru mengurangi EMI dari material JF. Efektivitas perisai tertinggi tercatat pada variasi persentase 10% JF dengan 5% MWCNT, yang menghasilkan nilai <em>Shielding Effectiveness</em> (SE) sebesar -9,847 dB pada frekuensi 14 MHz. Temuan ini menegaskan bahwa rasio yang tepat antara matriks alam dan <em>filler</em> konduktif sangat krusial dalam perancangan material fungsional berkelanjutan.</p> <p> </p> <p><strong>Kata kunci: </strong>Biokomposit, Perisai EMI, Serat Jute, MWCNT.</p> M. Ian Apriansyah, Diah Permata, Herman Halomoan Sinaga, Nining Purwasih, Bambang Sutrisno Copyright (c) 2026 M. Ian Apriansyah, Diah Permata, Herman Halomoan Sinaga, Nining Purwasih, Bambang Sutrisno https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/646 Sat, 01 Aug 2026 00:00:00 +0000 Distribusi Aktivitas Radionuklida Alam di Kawasan Terdampak dan Tidak Terdampak Banjir Lahar Dingin Gunung Marapi Sumatera Barat https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/637 <p>Banjir lahar dingin merupakan salah satu bencana alam sekunder yang umum terjadi di wilayah vulkanik aktif. Material vulkanik mengandung logam berat dan unsur-unsur radioaktif alami seperti kalium-40 (K-40), thorium (Th-232), dan radium-226 (Ra-226). Tujuan penelitian ini untuk menentukan distribusi aktivitas radionuklida pada tanah yang terdampak dan tidak terdampak banjir lahar dingin Gunung Marapi berdasarkan peta kontur menggunakan titik pengambilan sampel dan menentukan peningkatan aktivitas radionuklida akibat banjir lahar dingin. Aktivitas radionuklida diukur menggunakan spektrometer gamma dan distribusi sebaran aktivitas radionuklida menggunakan <em>software surfer13</em>. Nilai rata-rata aktivitas radionuklida Ra-226, Th-232, dan K-40 pada sampel tanah yang terdampak banjir lahar dingin sebesar (14,92 ± 0,62) Bq/kg, (18,37 ± 0,83) Bq/kg dan (342,15 ± 7,85) Bq/kg. Sedangkan pada sampel tanah yang tidak terdampak sebesar (10,99 ± 0,62) Bq/kg, (22,34 ± 1.03) Bq/kg, dan (191,68 ± 5,06) Bq/kg. Terjadi peningkatan aktivitas radionuklida pada sampel tanah yang terdampak banjir lahar dingin jika dibandingkan dengan sampel pada daerah yang tidak terdampak. Nilai aktivitas radionuklida pada tanah yang terdampak banjir lahar dingin Gunung Marapi yang didapatkan masih berada dibawah ambang batas yang telah ditetapkan BAPETEN, ditinjau berdasarkan dengan PERKA BAPETEN No. 9 tahun 2009.</p> <p> </p> <p><strong>Kata kunci: </strong>Lahar dingin, radionuklida alam, spektrometer gamma, tanah, vulkanik</p> Ramacos Fardela, Novi Afriani, Kusdiana, Wahyudi, Dadong Iskandar, Latifah Aulia Rasyada Copyright (c) 2026 Ramacos Fardela, Novi Afriani, Kusdiana, Wahyudi, Dadong Iskandar, Latifah Aulia Rasyada https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/637 Sat, 01 Aug 2026 00:00:00 +0000 Perancangan dan Implementasi Sistem Monitoring Kualitas Air Berbasis IoT Menggunakan ESP32 dan Dashboard Web https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/606 <p><em>Access to clean and safe water is a fundamental and essential necessity to support daily human activities. Meanwhile, rapid population growth demands an efficient water quality monitoring system. This study aims to develop, test, and evaluate a water quality monitoring system based on the ESP32 microcontroller integreted with IoT. The prototype system is designed to measure physical and chemical parameters contained in water, including pH, TDS (Total Dissolved Solids), and Turbidity. The measurement data are displayed on an LCD and also transmitted in real time to a Firebase database, then visualized on a website. The measurement results show good accuracy, indiicated by the MAPE, MAE and RMSE values, which remain within acceptable limits. The developed monitoring website also presents trend graphs of water quality, as well as an on/off relay control feature to regulate sensor data transmission for better energy efficiency. These results provide an innovative and effective solution for real-time and remote water quality monitoring in support of high-quality water provision.</em></p> <p> </p> <p> </p> <p><strong><em>Keywords</em></strong>: <em>ESP32, IoT, pH, TDS, Turbidity</em></p> Yusuf Affandi, Giena Houri Qissisina , Yus Yusuf Hidayat, Rizki Yustisia Sari, Ferial Asferizal Copyright (c) 2026 Yusuf Affandi, Giena Houri Qissisina , Yus Yusuf Hidayat, Rizki Yustisia Sari, Ferial Asferizal https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/606 Sun, 02 Aug 2026 00:00:00 +0000 Desain dan Implementasi Detektor Suhu, Kelembaban, dan Karbon Monoksida (CO) Pasca Kebakaran Lahan Gambut di Sumatera Selatan https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/588 <p>Kebakaran lahan gambut di Sumatera Selatan, khususnya di Kabupaten Ogan Ilir, berdampak signifikan terhadap kualitas udara melalui pelepasan polutan berbahaya seperti karbon monoksida (CO) serta perubahan kondisi mikroklimat berupa suhu dan kelembaban. Penelitian ini bertujuan merancang dan menguji detektor portabel berbasis mikrokontroler ESP32 untuk memantau konsentrasi CO, suhu, dan kelembaban pada kondisi pascakebakaran. Sistem ini memadukan sensor MQ-7 dan DHT11, modul pencatat waktu RTC DS3231, serta penyimpanan data otomatis menggunakan MicroSD. Pengukuran dilakukan selama delapan jam pada area lahan gambut pascakebakaran di Ogan Ilir. Hasil menunjukkan bahwa CO masih terdeteksi dalam rentang 0,20–0,28 ppm meskipun kebakaran telah berakhir hampir satu bulan sebelumnya. Analisis mikroklimat memperlihatkan hubungan negatif kuat antara suhu dan kelembaban (r = –0,90). Validasi terhadap sistem pemantauan referensi menunjukkan korelasi sangat tinggi untuk suhu (r = 0,995), kelembaban (r = 0,999), dan CO (r = 0,84), menegaskan bahwa detektor portabel ini mampu menangkap pola fluktuasi lingkungan secara akurat. Temuan ini menunjukkan bahwa sistem berbasis ESP32 layak digunakan sebagai perangkat monitoring lingkungan berbiaya rendah pada wilayah rawan kebakaran lahan gambut.</p> <p> </p> <p><strong>Kata kunci: </strong>kebakaran lahan gambut, karbon monoksida, suhu, kelembaban, ESP32.</p> Arti Cahya Ardila, Hamdi Akhsan, Iful Amri Copyright (c) 2026 Arti Cahya Ardila, Hamdi Akhsan, Iful Amri https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/588 Sat, 01 Aug 2026 00:00:00 +0000 Studi Kelayakan Apron Timbal sebagai Alat Proteksi Radiasi Menggunakan Metode Radiografi Digital https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/585 <p>Penggunaan sinar-X dalam radiologi diagnostik berperan penting dalam peningkatan kualitas layanan kesehatan, namun berpotensi menimbulkan paparan radiasi terhadap tenaga medis. Oleh karena itu, kelayakan alat pelindung diri berbahan timbal, seperti apron, perlu dievaluasi secara berkala untuk memastikan efektivitas proteksinya. Penelitian ini bertujuan untuk mengevaluasi kelayakan apron timbal yang digunakan di Instalasi Radiologi Rumah Sakit Tipe B Banda Aceh menggunakan metode radiografi digital. Tiga apron diuji, terdiri atas dua apron yang digunakan di rumah sakit dan satu apron baru dari Laboratorium Fisika Medis sebagai kontrol. Pengujian dilakukan menggunakan pesawat sinar-X dengan parameter 75 kV, 100 mAs, dan jarak fokus–film (FFD) 100 cm. Hasil citra radiografi dianalisis menggunakan perangkat lunak <em>Radiant DICOM Viewer</em> untuk mengukur luas area retakan. Kelayakan ditentukan berdasarkan batas yang ditetapkan oleh BAPETEN, yaitu 15 mm² pada area sensitif dan 670 mm² pada area non-sensitif. Hasil studi menunjukkan bahwa Apron A memiliki retakan di area vital seluas 47,3 mm² (tidak layak), Apron B memiliki retakan di area vital 5,9 mm² dan area non-vital 51,2 mm² (layak), sedangkan Apron C hanya menunjukkan lipatan ringan tanpa retakan (layak). Hasil ini menegaskan pentingnya inspeksi radiografi berkala untuk mendeteksi kerusakan internal yang tidak terlihat secara visual serta memastikan pemeliharaan dan penyimpanan apron sesuai standar proteksi radiasi.</p> Intan Mulia Sari, Rahmatun Ridhani, Evi Yufita, Elin Yusibani Copyright (c) 2026 Intan Mulia Sari, Rahmatun Ridhani, Evi Yufita, Elin Yusibani https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/585 Fri, 31 Jul 2026 00:00:00 +0000 Pengaruh Radiasi Medan Elektromagnetik ELF (500 μT) Terhadap Eritrosit Dan Leukosit Pada Mencit Balb/C https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/539 <p>Kemajuan teknologi saat ini menimbulkan dampak paparan elektromagnetik yang menjadi bagian tak terpisahkan dari keseharian, salah satunya berasal dari berbagai sumber yang ada disekitar kita yang dapat menyebabkan efek biologis yang merugikan bagi manusia. Tujuan penelitian ini adalah mengkaji perbedaan proliferasi eritrosit dan leukosit berdasarkan intensitas dan lama paparan medan elektromagnetik ELF. Jenis penelitian yang digunakan yaitu <em>true experimental </em>dengan desain penelitian <em>pretest-posttes control grup </em>desain. Sampel yang digunakan sebanyak 28 ekor mencit Balb/C terdiri dari kelompok <em>pre-test</em> dan <em>post-test</em>. Perlakuan diberikan secara intermiten 15 menit dan 30 menit 2kali sehari selama 5 hari. Analisis statistik menggunakan <em>one Way Anova</em> dan uji <em>Kruskal Wallis</em>. Hasil penelitian pada proliferasi eritrosit didapatkan nilai signifikansi 0,540 dan &gt;0,05 artinya tidak terdapat perbedaan yang signifikan proliferasi eritrosit mencit Balb/C. Sedangkan pada leukosit didapatkan hasil nilai signifikansi 0,013 dan &lt;0,05 artinya terdapat perbedaan yang signifikan proliferasi leukosit mencit Balb/C. Dari hasil penelitian tersebut perlu dilakukan penelitian lanjutan mengenai pengaruh proliferasi eritrosit dan leukosit dengan intensitas lebih besar dan waktu pemaparan yang lebih lama.</p> <p> </p> <p> </p> <p>Kata kunci: ELF, Radiasi, Eritrosit, Leukosit, Mencit.</p> Saidah Intan Kurnia, Sudarti, Nila Mutia Dewi Copyright (c) 2026 Saidah Intan Kurnia, Sudarti, Nila Mutia Dewi https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/539 Fri, 14 Aug 2026 00:00:00 +0000 Perbaikan Beton Plastik PET dengan Metode Soybean Crude Urease-Calcite Precipitation (SCU-CP) https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/528 <p>Pembuatan beton ringan dengan substitusi plastik polyethylene terephthalate (PET) sebanyak 5% sebagai bahan pengganti agregat halus dan larutan kalsit berbahan dasar kedelai menggunakan metode Soybean Crude Urease - Calcite Precipitation (SCU-CP) dengan variasi larutan kalsit 0%, 5%, dan 10%. Penelitian ini bertujuan untuk mengkaji hasil pembuatan beton ringan berbasis limbah plastik PET dan larutan kalsit menggunakan metode SCU-CP. Sampel beton dibuat menjadi dua bentuk yaitu beton kubus untuk uji kuat tekan dan beton balok untuk uji konduktivitas termal. Hasil menunjukkan, substitusi plastik PET 5% mengurangi densitas 12,8% dan kuat tekan 43,3% dari beton normal, tetapi meningkatkan sifat isolasi termal beton dengan penurunan konduktivitas termal 53%. Sedangkan substitusi larutan kalsit menyebabkan peningkatan densitas, kuat tekan, dan konduktivitas termal dibanding beton PET tanpa larutan kalsit. Substitusi larutan kalsit 5% dan 10% berturut-turut meningkatkan densitas 10,5% dan 12,8%; kuat tekan 9,4% dan 13,6%; serta konduktivitas termal 200% dan 375%. Larutan kalsit memperbaiki densitas dan kuat tekan beton PET, namun nilai kuat tekan yang diperoleh belum memenuhi standar sebagai beton ringan struktural. Nilai konduktivitas termal yang diperoleh tergolong rendah dan termasuk ke dalam jenis beton ringan. Dengan demikian, beton ini berpotensi digunakan sebagai material non-struktural, seperti pelapis dinding untuk mengurangi transfer panas.</p> <p> </p> <p><strong>Kata kunci: </strong>beton ringan, plastik PET, metode SCU-CP, kuat tekan beton, konduktivitas termal beton.</p> Tiara Aresti, Mega Nurhanisa, Azrul Azwar Copyright (c) 2026 Tiara Aresti, Mega Nurhanisa, Azrul Azwar https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/528 Fri, 31 Jul 2026 00:00:00 +0000 Automation of Irrigation System For Shallot Plants In Rocky Soil Locations Based On The Internet of Things https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/435 <p>This research implemented an automated shallot irrigation system in rocky soil locations based on the Internet of Things (IoT). The goal was to design an automatic irrigation tool for these locations and understand how users can access the system's output data. The system uses a NodeMCU ESP32 with a capacitive soil moisture sensor to measure soil moisture content (98.86% accuracy), a DHT11 sensor to measure air temperature (99.31% accuracy) and air humidity (99.24% accuracy), and a rain sensor. It controls a solenoid valve for watering and a pump for spraying pesticides, with sensor data displayed in real-time at https://iot.darmajaya.ac.id/home.html and an application with a 5-second delay. The tool waters automatically when soil humidity is &lt;30% or air humidity is &lt;50%, and stops when soil humidity is ≥50% and air humidity is ≥70%. Pump on/off control is done through the app after rain. Measured soil humidity values range from 19.46% to 79.19%, and air humidity from 17.6% to 96.6%. The system proved effective in supporting shallot growth in rocky soil locations.</p> <p><br><strong>Keywords:</strong> Application, Shallots, ESP32, Humidity, Irrigation Automation, Website.</p> flora finansia simbolon, Sri Wahyu Suciyati, Dodi Yudo Setyawan, Arif Surtono, Warsito Copyright (c) 2026 flora finansia simbolon, Sri Wahyu Suciyati, Dodi Yudo Setyawan, Arif Surtono, Warsito https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/435 Tue, 25 Aug 2026 00:00:00 +0000 Pengaruh Arus Waktu Dan Tebal Abdomen Terhadap Diagnostic Reference Level Pada Pemeriksaan CT Scan Abdomen https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/639 <p>Pemeriksaan CT <em>Scan abdomen </em>menghasilkan dosis radiasi tinggi yang dapat membahayakan pasien sehingga diperlukan <em>Diagnostic Reference Level</em> (DRL) sebagai acuan dalam penerimaan dosis radiasi tinggi untuk memastikan keselamatan pasien sesuai dengan prinsip ALARA (<em>As Low As Reasonably Achievable</em>). Penelitian ini dilakukan untuk menentukan DRL CT <em>Scan abdomen </em>dan menentukan pengaruh arus waktu serta tebal abdomen terhadap CTDIvol dan DLP. DRL ditetapkan pada persentil ke-75 (kuartil ke-3) dari sebaran data dosis radiasi pasien berupa CTDI<sub>vol</sub> dan DLP. Data diperoleh dari 50 sampel pasien dewasa dengan klasifikasi umur 18-65 tahun yang menjalani pemeriksaan CT <em>Scan abdomen </em>kontras dan non kontras. Parameter yang digunakan yaitu arus waktu dan tebal <em>abdomen</em>. Hasil penelitian menunjukkan DRL CT <em>Scan abdomen </em>kontras yaitu CTDI<sub>vol</sub> sebesar 14,16 mGy dan DLP sebesar 675,66 mGy.cm, sedangkan DRL <em>CT Scan abdomen </em>non kontras yaitu CTDI<sub>vol</sub> sebesar 13,99 mGy dan DLP sebesar 675,66 mGy.cm. DRL untuk pemeriksaan CT <em>Scan abdomen </em>di Instalasi Radiologi RSUD Prof. Dr. Margono Soekarjo Purwokerto masih berada pada tingkat aman karena lebih rendah daripada I-DRL yang ditetapkan oleh BAPETEN. Hubungan antara dosis radiasi dengan arus waktu dan tebal <em>abdomen </em>adalah berbanding lurus. Dimana pengaruh ketebalan abdomen terhadap CTDIvol dan DLP lebih sebesar daripada arus waktu ditunjukan dengan gradien grafik hubungan tersebut.</p> <p> </p> <p> </p> <p> </p> <p><strong>Kata kunci</strong> CT Scan, <em>Diagnostic Reference Level</em>, CTDIvol, arus waktu, tebal abdomen.</p> Efita Pratiwi Adi, Agus Sholeh, Intan Nailussalam, Adilla Luthfia, Muflihatun Copyright (c) 2026 Efita Pratiwi Adi, Agus Sholeh, Intan Nailussalam, Adilla Luthfia, Muflihatun https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/639 Sat, 01 Aug 2026 00:00:00 +0000 Evaluating the Accuracy of Smartphone Light Sensors in a Uniformly Accelerated Motion Experiment https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/623 <p><em>This study aims to design and implement a motion experiment using a smartphone’s light sensor, powered by the Phyphox application, to investigate uniformly accelerated linear motion. A dynamic cart equipped with a smartphone was released along a rail inclined at 1°, with an LED strip serving as the light source. The smartphone's light sensor recorded variations in light intensity as the cart moved, allowing for the determination of acceleration over time. Data analysis focused on the relationship between acceleration and motion, demonstrating consistent acceleration values ranging from 0.127 m/s² to 0.128 m/s² across multiple trials. The LED setup was adjusted to optimize data collection, ensuring the reliability of measurements. These results confirm the theoretical principles of uniformly accelerated motion and highlight the effectiveness of smartphone-based sensors for experimental and educational applications. Despite a percentage error of approximately 25% when compared to theoretical calculations, the small standard deviation value of 0.000242 indicates a high level of precision and repeatability in the experimental results. This suggests that the experiment, although not perfectly accurate, can still serve as a reliable instructional tool in physics classrooms. The experimental design is not only low-cost and portable but also adaptable to different learning environments, making it a suitable alternative when conventional lab tools are unavailable. Future research could explore alternative sensor configurations or extended applications in physics education. Additionally, improvements in the light sensor’s sensitivity, optimizing the distance between light sources, and using more mobile supporting structures are recommended to increase data accuracy and ease of implementation in physics experiments for students studying linear motion.</em></p> <p> </p> <p> </p> <p><strong><em>Keywords</em></strong>: <em>inclined plane; light sensor; linear motion; lux meter; phyphox.</em></p> Rahma Alliya Aqquilla, Najmi Hiyan Fathinah, Asep Akmal Fadia Nurhalim, Ika Mustika Sari, Alfiansah Sandion Prakoso, Rizki Zakwandi Copyright (c) 2026 Rahma Alliya Aqquilla, Najmi Hiyan Fathinah, Asep Akmal Fadia Nurhalim, Ika Mustika Sari, Alfiansah Sandion Prakoso, Rizki Zakwandi https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/623 Sat, 01 Aug 2026 00:00:00 +0000 Prototipe Sistem IoT untuk Pemantauan Glukosa Non-Invasif, SpO2, Suhu dan Denyut Jantung pada Lansia https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/600 <p>Prevalensi Diabetes Melitus (DM) di Indonesia meningkat menjadi 11,7% pada tahun 2023, dengan lebih dari 60% penderita berusia di atas 55 tahun. Manajemen diabetes pada lansia menghadapi tantangan kompleks, termasuk ketidaknyamanan dan risiko infeksi dari metode pemantauan glukosa darah invasif. Penelitian ini bertujuan mengembangkan prototipe glucometer non-invasif berbasis IoT yang terintegrasi dengan sensor SpO2, suhu, dan denyut jantung (BPM) untuk pemantauan kesehatan holistik lansia. Metode pengembangan meliputi perancangan sistem hardware dan software, integrasi telemedicine, serta uji akurasi terhadap alat standar. Hasil analisis pada 49 sampel menunjukkan kinerja yang variabel: parameter suhu memiliki korelasi sangat baik (r=0,834) dan MAPE 4,1%; SpO2 dan BPM menunjukkan kinerja cukup dengan korelasi 0,612 dan 0,723; namun pengukuran glukosa belum akurat dengan korelasi 0,521 dan MAPE 64,8%. Sistem telemedicine berhasil dikembangkan untuk pemantauan jarak jauh dan pencatatan data real-time. Disimpulkan bahwa prototipe ini menjanjikan untuk pemantauan tanda vital dasar, namun memerlukan pengembangan lebih lanjut pada algoritma pengukuran glukosa non-invasif sebelum dapat diaplikasikan secara klinis<br /><br /></p> <p><strong>Kata kunci: </strong>Glucometer Non-Invasif, IoT, Telemedicine, Sensor Multi-Parameter, Diabetes Melitus, Pemantauan Jarak Jauh.</p> <p>.</p> Mohamad Sofie, Pramesti, Mohammad Rofi’i, Elita Felicia Shafa, Rikham Maulana Ahmad Copyright (c) 2026 Mohamad Sofie, Pramesti, Mohammad Rofi’i, Elita Felicia Shafa, Rikham Maulana Ahmad https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/600 Sat, 01 Aug 2026 00:00:00 +0000 Visualisasi Komputasi Fungsi Gelombang dan Probabilitas Partikel Kuantum dalam Sumur Potensial Tak Hingga Satu Dimensi https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/586 <p><em>This research aims to develop computational visualization of the wave function and probability distribution of particles in a one dimensional infinite potential well. The wave function is obtained analytically from the time-independent Schrödinger equation and then normalized to give it probabilistic meaning. Numerical simulations are carried out using Python with the NumPy library for computation and Matplotlib for visualization, allowing manipulation of parameters such as box length and quantum number. The visualization results confirm the basic concepts of quantum mechanics, namely quantized energy levels, sinusoidal wave function forms with a specific number of nodes, and probability distributions that have several peaks and are always positive. The simulation also shows the correspondence between wave-function nodes and zero-probability points, as well as the increasing complexity of oscillations and variations in probability distributions as the quantum number increases. These findings are consistent with theoretical predictions and show that the computational approach is effective in visualizing abstract concepts in quantum mechanics, thereby clarifying the relationship between mathematical formulation and its physical interpretation.</em></p> Faizah Istisania, Vina Yanti, Hamdi Akhsan, Melly Ariska Copyright (c) 2026 Faizah Istisania, Vina Yanti, Hamdi Akhsan, Melly Ariska https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/586 Fri, 31 Jul 2026 00:00:00 +0000 Enhancement Enhancement of Dye Sensitized Solar Cell Performance using Blocking Layer TiO2 by Sputtering Method https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/564 <p><strong><em>Abstract.</em></strong><em> In this study, the efficiency of dye-sensitized solar cells (DSSC) was improved through the use of a multilayer blocking layer (BL) of TiO<sub>2</sub>. Multilayer BL TiO₂ has been successfully deposited using the sputtering and spin coating methods. Based on the XRD results, the crystal size increased from 17.24 to 25.86 nm for multilayer BL TiO<sub>2</sub>. Based on the SEM results, the morphology of all samples is quite uniform and suitable for the blocking layer, and the porosity of BL TiO₂ is smaller than that of multilayer BL TiO₂. Based on the UV-Vis absorbance results, the layer shifted from a wavelength of 248 to 257 nm, indicating a blue shift. The estimated energy gap decreased from 3.58 to 3.55 eV. Multilayer BL TiO<sub>2</sub> shows a high efficiency of 4.49% compared to BL TiO<sub>2</sub> with an efficiency of 2.50%. Additionally, based on the EIS results, the R<sub>ct</sub> decreased from 66.41 to 12.53 Ω.</em></p> <p><em><strong>Keywords</strong>: DSSC, multilayer blocking layer, spin coating, sputtering, TiO<sub>2</sub>.</em></p> Alfiatul Ma'arifah, Ikfa Rika Elma Suherlianti, Herlin Pujiarti Copyright (c) 2026 Alfiatul Ma'arifah, Ikfa Rika Elma Suherlianti, Herlin Pujiarti https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/564 Fri, 31 Jul 2026 00:00:00 +0000 Pengaruh Variasi Konsentrasi Nanokomposit CoFe₂O₄/Cdots terhadap Karakteristik Gugus Fungsi, Sifat Optik, dan Morfologi yang Disintesis melalui Pendekatan Green Synthesis https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/536 <p>CoFe<sub>2</sub>O<sub>4</sub>/Cdots nanocomposites have been successfully synthesized by combining CoFe<sub>2</sub>O<sub>4</sub> synthesized from <em>Moringa oleifera </em>(MO) extract and Cdots synthesized from watermelon rind. CoFe<sub>2</sub>O<sub>4</sub>/Cdots nanocomposites were synthesized using a green synthesis method. This study began with the synthesis of MO, CoFe<sub>2</sub>O<sub>4</sub>, Cdots, then CoFe<sub>2</sub>O<sub>4</sub>/Cdots. Thus, CoFe<sub>2</sub>O<sub>4</sub>/Cdots-10, CoFe<sub>2</sub>O<sub>4</sub>/Cdots-20, and CoFe<sub>2</sub>O<sub>4</sub>/Cdots-30 were obtained, each based on variations in the concentration of Cdots to CoFe<sub>2</sub>O<sub>4</sub>, that is 10, 20, and 30 ml. After the synthesis process, characterization was carried out using FTIR, UV-Vis and TEM. The results of FTIR testing on nanocomposites showed the presence of typical functional groups of Cdots and typical functional groups of CoFe<sub>2</sub>O<sub>4</sub>. The combination of both produces a wave number shift caused by the emergence of new bonds between Cdots and CoFe<sub>2</sub>O<sub>4</sub>. The results of UV-Vis testing show that the addition of Cdots does not significantly affect the absorbance, but there is a shift in the absorbance peak to the left along with the addition of Cdots variations. This causes the band gap energy value to increase. The results of TEM testing show that the morphology of both samples is semi-spherical and tends to agglomerate along with the addition of Cdots. However, the addition of Cdots concentration results in a smaller particle diameter and is relatively more uniform. This results in a larger surface area and is effective for use in various applications. The results of Selected Area Electron Diffraction (SAED) show that the diffraction ring with the presence of a lattice is still in the CoFe<sub>2</sub>O<sub>4</sub> phase.</p> <p> </p> <p> </p> <p><strong>Kata kunci: </strong>CoFe₂O₄/Cdots nanocomposite, green synthesis, FTIR, UV–Vis, TEM, optical properties, morphology.</p> <p> </p> Angelika Ramona Putri Hasibuan, Edi Suharyadi, Suprihatin , Posman Manurung Copyright (c) 2026 Angelika Ramona Putri Hasibuan, Edi Suharyadi, Suprihatin , Posman Manurung https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/536 Sat, 01 Aug 2026 00:00:00 +0000 Studi Pengaruh Ukuran Pebble bed Terhadap Termal Hidrolik Pada Thorium Molten Salt Reactor Solid Fuel (TMSR-SF) Menggunakan COMSOL Multiphysics https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/484 <p><strong><em>Abstract.</em></strong> <em>The development of nuclear energy, particularly in the Thorium Molten Salt Reactor Solid Fuel (TMSR-SF) requires a deep understanding of thermal-hydraulic characteristics, including temperature, flow velocity, and pressure within the reactor core. This research aims to analyze the influence of pebble bed diameter on temperature and pressure, as well as to examine the impact of initial fluid flow conditions on fluid velocity within the TMSR-SF reactor core. Simulations were conducted </em><em>by</em><em> the Heat Transfer in Fluids and Laminar Flow modules in the COMSOL Multiphysics application. The simulation results show that the highest temperature difference percentage between the 6 cm and 9 cm pebble beds is 0.7%, while between the 6 cm and 12 cm pebble beds, it is 1.7%. </em><em>P</em><em>ercentage </em><em>t</em><em>he highest pressure drop over time was observed in the 6 cm pebble bed at 1.6%, followed by the 9 cm pebble bed at 1.4%, and the 12 cm pebble bed at 1.5%. Additionally, the percentage difference </em><em>off</em><em> the initial fluid flow rate decreas</em><em>ing</em><em> was recorded at 0.09% between the 6 cm and 9 cm pebble beds and 0.26% between the 9 cm and 12 cm pebble beds. The 6 cm pebble bed diameter provides more optimal thermal-hydraulic performance, particularly in terms of temperature stability and fluid flow consistency, which are crucial for the efficiency and safety of TMSR-SF reactor operation</em></p> <p><strong><em>Keywords</em></strong>: <em>COMSOL Multiphysics, TMSR-SF, thermal hydraulics, pebble bed, diameter variations</em></p> I Gusti Ayu Putu Dwi Ekasari, Yanti Yulianti, Duwi Hariyanto, Gurum Ahmad Pauzi Copyright (c) 2026 I Gusti Ayu Putu Dwi Ekasari, Yanti Yulianti, Duwi Hariyanto, Gurum Ahmad Pauzi https://creativecommons.org/licenses/by/4.0 https://jtaf.fmipa.unila.ac.id/index.php/jtaf/article/view/484 Fri, 31 Jul 2026 00:00:00 +0000