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1

Sabharwal, C. L. "Java, Java, Java." IEEE Potentials 17, no. 3 (1998): 33–37. http://dx.doi.org/10.1109/45.714612.

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Bik, Aart J. C., Juan E. Villacis, and Dennis B. Gannon. "javar: A prototype Java restructuring compiler." Concurrency: Practice and Experience 9, no. 11 (November 1997): 1181–91. http://dx.doi.org/10.1002/(sici)1096-9128(199711)9:11<1181::aid-cpe335>3.0.co;2-f.

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Kurniawan, Nia, Ahmad Muammar Kadafi, Muhammad Fathoni, Richo Firmansyah, Kartika Prabasari, and Muhammad Alif Fauzi. "A New Distribution Record of <i>Polypedates pseudotilophus</i> (Anura: Rhachoporidae) from East Java, Based on Morphology and Molecular Evidence." Russian Journal of Herpetology 30, no. 3 (June 27, 2023): 167–74. http://dx.doi.org/10.30906/1026-2296-2023-30-3-167-174.

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Polypedates pseudotilophus Matsui, Hamidy et Kuraishi, 2014 was priorly reported from Sumatra, West Java, and Central Java. Only a few specimens and genetic data were available and reports on its distributional range in Java are lacking. We reported a new distributional record of P. pseudotilophus from the lowland forest in Malang Regency, East Java Province, Indonesia, and provide morphological and genetic data. The East Java specimens were morphologically similar to Sumatra specimens also supported by genetic distance ranging between 2.2 – 2.4%. Although considered as conspecific, East Javan population formed a separate clade to Sumatran population.
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Flanagan, David, Patrick Niemeyer, Joshua Peck, Roger Sipson, Susan McKay, and Wolfgang Christian. "Java in a Nutshell; Exploring JAVA." Computers in Physics 11, no. 1 (1997): 46. http://dx.doi.org/10.1063/1.4822513.

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Havelund, Klaus, and Grigore Roşu. "Monitoring Java Programs with Java PathExplorer." Electronic Notes in Theoretical Computer Science 55, no. 2 (October 2001): 200–217. http://dx.doi.org/10.1016/s1571-0661(04)00253-1.

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6

Drysdale, Scot, Judith Hromcik, Mark Allen Weiss, and Reg Hahne. "Java in the morning...Java in the evening...Java in 2004." ACM SIGCSE Bulletin 35, no. 1 (January 11, 2003): 271–72. http://dx.doi.org/10.1145/792548.611909.

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7

Reinaldy H, Revel Aldwin, Essy Malays Sari Sakti, and Marnis Marnis. "RANCANG BANGUN APLIKASI JASA TITIP BERBASIS ANDROID." Tekinfo: Jurnal Bidang Teknik Industri dan Teknik Informatika 22, no. 1 (June 13, 2021): 81–87. http://dx.doi.org/10.37817/tekinfo.v22i1.1187.

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Perkembangan teknologi yang sangat cepat sudah dipakai dalam berbagai macam aspek kehidupan khususnya di bidang e-commerce. Kemudahan yang diberikan sebuah teknologi membuat masyarakat dapat melakukan banyak hal hanya melalui smartphone dalam satu genggaman tangan. Kegiatan travelling tidak hanya lagi menjadi hiburan namun membuka peluang orang untuk melakukan kegiatan transaksi bisnis, salah satunya dengan melakukan kegiatan jasa titip beli barang. Perancangan aplikasi Jasa Titip berbasis Android ini menggunakan bahasa pemrograman Java dan dengan basis data Firebase yang terintegrasi dengan Google Cloud, serta menggunakan Android Studio sebagai editor tampilan XML dan Java. Pengguna aplikasi ini dibagi menjadi 2, yaitu sebagai penyedia jasa titip dan konsumen sebagai pengguna jasa. Diharapkan aplikasi ini dapat menjadi wadah para penyedia dan pengguna jasa titip barang untuk melakukan kegiatan jual beli menjadi lebih mudah. Kata Kunci : Jasa Titip, e-commerce, Android, Java
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Hartel, Pieter H., and Luc Moreau. "Formalizing the safety of Java, the Java virtual machine, and Java card." ACM Computing Surveys 33, no. 4 (December 2001): 517–58. http://dx.doi.org/10.1145/503112.503115.

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9

Havelund, Klaus, and Thomas Pressburger. "Model checking JAVA programs using JAVA PathFinder." International Journal on Software Tools for Technology Transfer (STTT) 2, no. 4 (March 1, 2000): 366–81. http://dx.doi.org/10.1007/s100090050043.

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10

Rahayu, Imelia, Alusyanti Primawati, and Aulia Ar Rakhman Awaludin. "Perancangan Aplikasi Pemesanan Jasa Salon Tyas Kampung Gedong Berbasis Java." Jurnal Riset dan Aplikasi Mahasiswa Informatika (JRAMI) 4, no. 01 (January 15, 2023): 181–86. http://dx.doi.org/10.30998/jrami.v4i01.7155.

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Pada saat ini di Salon Tyas masih menggunakan cara manual untuk melakukan proses pendataan pelanggan, hal ini membuat pegawai kesulitan untuk mengolah data pelanggan yang memesan di Salon Tyas tersebut. Rumusan masalah dari latar belakang tersebut akan merancang aplikasi pemesanan jasa salon Tyas berbasis Java, aplikasi pemesanan perawatan, aplikasi pendataan pelanggan, aplikasi stok barang, aplikasi pendataan pegawai, aplikasi pembatalan, aplikasi supplier, aplikasi untuk membuat laporan. Tujuan penelitian adalah untuk merancang aplikasi pemesanan jasa Salon Tyas berbasis Java. Metode penelitian yang digunakan adalah metode Study Case yaitu metode ini berbentuk penjelasan tentang masalah, kejadian atau situasi tertentu. Setelah peneliti membuat rancangan aplikasi pemesanan jasa Salon Tyas berbasis Java, akhirnya peneliti dapat menarik kesimpulan bahwa dengan adanya aplikasi ini pegawai dapat mengefisien waktu karena proses pengerjaan sudah lebih mudah. Data yang diinput akan lebih aman karena semua sudah masuk ke dalam sistem aplikasi.
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11

Chang, Chi-Chao, and Thorsten von Eicken. "Javia: A Java interface to the virtual interface architecture." Concurrency: Practice and Experience 12, no. 7 (2000): 573–93. http://dx.doi.org/10.1002/1096-9128(200005)12:7<573::aid-cpe500>3.0.co;2-o.

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12

Perangin-angin, Elvi Sunita, and Andi Diah Kuswanto. "Perancangan Aplikasi Pembayaran Jasa Layanan Salon Menggunakan Pemrograman Java." Jurnal Nasional Komputasi dan Teknologi Informasi (JNKTI) 5, no. 3 (June 28, 2022): 432–41. http://dx.doi.org/10.32672/jnkti.v5i3.4397.

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Abstrak - Dengan adanya kemajuan teknologi sebagai pendukung pemrosesan data dan informasi, komputer menjadi kebutuhan pokok perusahaan. Perusahaan dagang, jasa dan industri serta semua sektor ekonomi yang ada pada saat ini sudah menggunakan komputer sebagai pendukung usahanya. Salon adalah usaha yang bergerak dibidang kecantikan. Dalam kegiatan pembayaran pada salon masih manual. Jika terus berlangsung, hal ini tentu akan menghambat perkembangan perusahaan, karena akan menghambat kinerja dan efektifitas bagian administrasi, seperti peluang terjadinya kesalahan pemrosesan, validitas data, penyimpanan data yang tidak terorganisir, ketidak akuratan data dan lain-lain. Perancangan program untuk pembayaran adalah sebuah solusi yang sangat tepat untuk menangani permasalahan yang ada, karena selain membuat sebuah proses pembayaran sangat penting karena sering terjadi kesalahan pada proses pembayaran dan menyebabkan kerugian bagi perusahaan. Oleh karena itu perancangan program pembayaran pada salon ini dapat mengurangi kesalahan dan peningkatan efisiensi. Jadi akan meningkatkan kemajuan perusahaan. Penulis menggunakan bahasa pemrograman java, karena memiliki keuntungan yaitu memiliki sarana akses data yang lebih cepat, karena lebih sedikit mengetik, secara otomatis kesalahan lebih kecil karena sintaks pemrograman juga tidak perlu dihafalkan lagi karena semuanya telah disediakan di dalam menu pilihana yang tinggal dipilih sesuai kebutuhan dan anda untuk membuat aplikasi database yang berkemampuan tinggi.Kata kunci: Pembayaran jasa, layanan salon, java
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13

Susanti, Susi, Sri Sulistijowati Handajani, and Diari Indriati. "GSTARI model of BPR assets in West Java, Central Java, and East Java." Journal of Physics: Conference Series 1025 (May 2018): 012119. http://dx.doi.org/10.1088/1742-6596/1025/1/012119.

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14

Wirdateti, Wirdateti, Hayati Aziza, and Handayani Handayani. "Keragaman Genetik Kukang Jawa (Nycticebus javanicus) Menggunakan Control Region (D-loop) DNA Mitokondria (mtDNA) (GENETIC DIVERSITY ON JAVAN SLOW LORIS (NYCTICEBUS JAVANICUS) USING OF CONTROL REGION (D-LOOP) mtDNA)." Jurnal Veteriner 20, no. 3 (November 17, 2019): 360. http://dx.doi.org/10.19087/jveteriner.2019.20.3.360.

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Javan slow loris (Nycticebus javanicus) one of the species of the genus Nycticebus is endemic in Java. Their distribution region is in West Java and Banten, and also reported to be found in Central Java and East Java, although very rarely. Status of the species is Critically Endangered due to high levels of poaching, habitat loss and habitat fragmentation, so that the necessary conservation in order to increase the population. For conservation management it is necessary to know the status of genetic resources that play of role in breeding, then this research is to explore the genetic population of the Javan slow loris from some locations in West Java. The research objective was to assess the diversity of their current population of Java loris through the control region (D-loop) of mitochondrial DNA (mtDNA). A total of 23 individuals samples from Gunung Halimun Park, Tasikmalaya, Garut, Ciamis, Jember and confiscated at the Rehabilitation Center IAR Bogor were used in this stydy. Specific primers of D-loop are used for loris with a length of 296 bp sequence. The result showed there are only five different sites and formed six haplotypes, each haplotypes only 1-3 nucleotides different. Low genetic diversity is shown as much as 42.96% of individuals show the same sequence or genetic distance (d) = 0 that indicate was monomorf population from different population. The genetic distance of the entire population was 0.003 ± 0:01 (0.3%).
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15

Mahabir, Joy. "Java Scenes." Anthurium A Caribbean Studies Journal 7, no. 1 (January 1, 2010): 18. http://dx.doi.org/10.33596/anth.151.

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16

Emurian, Henry H. "Teaching Java." International Journal of Information and Communication Technology Education 3, no. 4 (October 2007): 34–49. http://dx.doi.org/10.4018/jicte.2007100104.

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17

Igarashi, Atshushi, Benjamin Pierce, and Philip Wadler. "Featherweight Java." ACM SIGPLAN Notices 34, no. 10 (October 1999): 132–46. http://dx.doi.org/10.1145/320385.320395.

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18

Zhang, Xiangmin. "Java Security." Library & Archival Security 16, no. 2 (June 2000): 5–20. http://dx.doi.org/10.1300/j114v16n02_02.

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19

Frenger, Paul. "Hard Java." ACM SIGPLAN Notices 43, no. 5 (May 2008): 5–9. http://dx.doi.org/10.1145/1402227.1402231.

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Bogdanas, Denis, and Grigore Roşu. "K-Java." ACM SIGPLAN Notices 50, no. 1 (May 11, 2015): 445–56. http://dx.doi.org/10.1145/2775051.2676982.

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21

Wang, Yanlin, Haoyuan Zhang, Bruno C. d. S. Oliveira, and Marco Servetto. "Classless Java." ACM SIGPLAN Notices 52, no. 3 (May 12, 2017): 14–24. http://dx.doi.org/10.1145/3093335.2993238.

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22

Oaks, Scott. "Java Security." EDPACS 27, no. 4 (October 1999): 15–16. http://dx.doi.org/10.1201/1079/43250.27.4.19991001/30274.4.

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23

Knudsen, Jonathan. "Java Cryptography." EDPACS 27, no. 4 (October 1999): 16. http://dx.doi.org/10.1201/1079/43250.27.4.19991001/30275.5.

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24

Owens, Barbara Boucher, Rich Pattis, Chris Stephenson, Jack Rehder, and Dean Sanders. "JAVA IDEs." ACM SIGCSE Bulletin 34, no. 1 (March 2002): 213–14. http://dx.doi.org/10.1145/563517.563421.

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25

Igarashi, Atsushi, Benjamin C. Pierce, and Philip Wadler. "Featherweight Java." ACM Transactions on Programming Languages and Systems 23, no. 3 (May 2001): 396–450. http://dx.doi.org/10.1145/503502.503505.

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26

Larsen, Albert L. "Java programming." ACM SIGSOFT Software Engineering Notes 26, no. 1 (January 2001): 97–98. http://dx.doi.org/10.1145/505894.505922.

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27

Kim, M., S. Kannan, I. Lee, O. Sokolsky, and M. Viswanathan. "Java-MaC." Electronic Notes in Theoretical Computer Science 55, no. 2 (October 2001): 218–35. http://dx.doi.org/10.1016/s1571-0661(04)00254-3.

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Helal, S. "Pervasive Java." IEEE Pervasive Computing 1, no. 1 (January 2002): 82–85. http://dx.doi.org/10.1109/mprv.2002.993147.

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Stokes, Trevor. "Junked java." Trends in Plant Science 6, no. 8 (August 2001): 346. http://dx.doi.org/10.1016/s1360-1385(01)02072-6.

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Reza, Juan Rolando. "Java supervenience." Computer Languages, Systems & Structures 38, no. 1 (April 2012): 73–97. http://dx.doi.org/10.1016/j.cl.2011.08.002.

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Hegarty, Benjamin. "Java Spirit." Asia Pacific Journal of Anthropology 15, no. 5 (September 19, 2014): 500–502. http://dx.doi.org/10.1080/14442213.2013.865689.

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Palmer, Zachary, and Scott F. Smith. "Backstage Java." ACM SIGPLAN Notices 46, no. 10 (October 18, 2011): 939–58. http://dx.doi.org/10.1145/2076021.2048137.

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Hardin, D. S. "Learning java." IEEE Instrumentation and Measurement Magazine 4, no. 2 (June 2001): 40–48. http://dx.doi.org/10.1109/mim.2001.930985.

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Gontmakher, Alex, and Assaf Schuster. "Java consistency." ACM Transactions on Computer Systems 18, no. 4 (November 2000): 333–86. http://dx.doi.org/10.1145/362670.362673.

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Paterson, James H., and John Haddow. "Teaching Java." ACM SIGCSE Bulletin 35, no. 3 (September 2003): 273. http://dx.doi.org/10.1145/961290.961638.

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Fox, Geoffrey. "Java Grande." Software Focus 2, no. 1 (2001): 25–26. http://dx.doi.org/10.1002/swf.25.

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Stephenson, J. "Jilting Java." JAMA: The Journal of the American Medical Association 286, no. 14 (October 10, 2001): 1704—a—1704. http://dx.doi.org/10.1001/jama.286.14.1704-a.

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Stephenson, Joan. "Jilting Java." JAMA 286, no. 14 (October 10, 2001): 1704. http://dx.doi.org/10.1001/jama.286.14.1704-jwm10010-2-1.

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Шемилева, М. С.-А., and М. И. Кудусова. "Java EE8." ТЕНДЕНЦИИ РАЗВИТИЯ НАУКИ И ОБРАЗОВАНИЯ 92, no. 11 (2022): 43–45. http://dx.doi.org/10.18411/trnio-12-2022-520.

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В этой статье мы рассмотрим: В чем заключается работа в java ee 8? Перспективы работы на этой платформе? Развитие новой платформы. Новый функционал платформы Java ee8. Как развивалась эта платформа, какие перспективы преследует платформа и что ее ждет в скором будущем.
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Purwati, Nani, and Novi Anggreani. "Perancangan Sistem Informasi Penerimaan Jasa Servis Pada CV. Java Multimedia Yogyakarta." Indonesian Journal on Software Engineering (IJSE) 6, no. 1 (June 8, 2020): 33–43. http://dx.doi.org/10.31294/ijse.v6i1.8042.

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Abstract: CV. Java Multimedia is one of the laptop service provider companies which is certainly always trying to provide maximum service in order to increase customer loyalty. Based on interviews with company managers CV. Java Multimedia Yogyakarta, there are several problems in business processes, namely the absence of a service number that makes it difficult for customers and also employees, causing the exchange of goods in the process of taking. To support companies in carrying out business processes optimally to customers, the authors make "Design of Service Information Acceptance Information Systems at CV. Java Multimedia Yogyakarta ". Research methods used in data collection are the observation method, the interview method and the literature study method. This design uses software development techniques namely the Rapid Application Development (RAD) method which includes business modeling, data modeling, process modeling, application generation and testing. The author tests the website using Black Box Testing so that the system runs in accordance with the desired environment.Keywords: Rapid Aplication Development,RAD, black box testingAbstrak: CV. Java Multimedia merupakan salah satu perusahaan penyedia jasa servis laptop yang tentunya selalu berusaha untuk memberikan pelayanan yang maksimal demi meningkatkan loyalitas pelanggan. Berdasarkan wawancara dengan Manager perusahaan CV. Java Multimedia Yogyakarta terdapat beberapa permasalahan dalam proses bisnis, yaitu tidak adanya nomer servis yang menyulitkan pelanggan dan juga karyawan, menyebabkan tertukarnya barang dalam proses pengambilan. Untuk mendukung perusahaan dalam menjalankan proses bisnis secara optimal kepada pelanggan, penulis membuat “Perancangan Sistem Informasi Penerimaan Jasa Servis Pada CV. Java Multimedia Yogyakarta”. Metode Penelitian yang digunakan dalam pengumpulan data adalah metode observasi, metode wawancara dan metode studi pustaka. Perancangan ini menggunakan teknik pengembangan software yaitu dengan metode Rapid Aplication Development (RAD) yang meliputi pemodelan bisnis, pemodelan data, proses pemodelan, generasi aplikasi dan pengujian. Penulis melakukan pengujian website menggunakan Black Box Testing agar sistem berjalan sesuai dengan lingkungan yang diinginkan.Kata kunci: Rapid Aplication Development,RAD, black box testing
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Jacob, Rincy, and Vinayak Bhardwaj. "A Review on Java Servlets vs. Java Applets." Journal of Advance Research in Computer Science & Engineering (ISSN: 2456-3552) 1, no. 4 (April 30, 2014): 10–15. http://dx.doi.org/10.53555/nncse.v1i4.517.

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Servlet technology is one of the leading web development technologies in the recent years due to its safety, portability, efficiency and elegance in design. They are platform and protocol-independent server side components, which run as part of a network service and dynamically extend Javaenabled servers. An applet on the other hand, is a Java program that can be embedded in an HTML page and executed by a Java enabled browser. It can be used for sharing resource data on enterprise intranets and for web page enhancements. Servlets used along with applets can be used for dynamic web content generation. The paper tries to analyze Java Servlets and Java Applets, their capabilities and limitations.
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Begole, J., C. A. Struble, and C. A. Shaffer. "Leveraging Java applets: toward collaboration transparency in Java." IEEE Internet Computing 1, no. 2 (1997): 57–64. http://dx.doi.org/10.1109/4236.601100.

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Cazzola, Walter, and Edoardo Vacchi. "@Java: Bringing a richer annotation model to Java." Computer Languages, Systems & Structures 40, no. 1 (April 2014): 2–18. http://dx.doi.org/10.1016/j.cl.2014.02.002.

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Hanifa, Berry Fakhry, Luhur Septiadi, Muhammad Asmuni Hasyim, Muhammad Fathoni, Kartika Prabasari, Muhammad Prayogi Erfanda, Mahmuddin Rahmadana, Hendro Widjanarko, and Nia Kurniawan. "New data on and the easternmost record&nbsp;of the Javan endemic Pearly Tree Frog, Nyctixalus margaritifer Boulenger, 1882 (Anura, Rhacophoridae)." Check List 19, no. 6 (December 4, 2023): 971–82. http://dx.doi.org/10.15560/19.6.971.

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New locality records and a range extension of the Javan endemic Pearly Tree Frog, Nyctixalus margaritifer Boulenger, 1882 are reported from Central Java and East Java. Our new data include the easternmost record in Java, a record from the eastern edge of Bromo Tengger Semeru National Park, which is approximately 142 km west of the species&rsquo; type locality in Gunung Willis in East Java. This tree-frog species inhabits undisturbed rainforest with a dense canopy and vegetation at elevations up to 1,200 m a.s.l. Based on a morphometric analysis of newly collected specimens, we found observable differences in several morphological characters. However, more specimens are needed to confirm the taxonomic status of the rare, endemic, and poorly known N. margaritifer.
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Handayani, Handayani, Dedy Duryadi Solihin, Hadi Sukadi Alikodra, Jakaria Jakaria, Puji Rianti, and Rois Mahmud. "Modeling the Habitat Suitability of Javan Banteng (Bos javanicus javanicus) Using Geographic Information System in Ujung Kulon National Park." BIOEDUSCIENCE 7, no. 3 (December 31, 2023): 297–305. http://dx.doi.org/10.22236/jbes/11547.

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Background: The Banteng population in Ujung Kulon National Park (TNUK) is less than 500 individuals. The habitat of Java Banteng in conservation areas has largely decreased. One approach to assessing the current status of biodiversity at all levels, especially in endangered species, is to use geospatial technology such as remote sensing and geographic information systems combined with spatial data science. This study aims to create a spatial model of the suitability of the Javan Banteng habitat in the TNUK area and identify the use of the Java Banteng habitat and environmental variables that affect the presence of Javan Banteng. Methods: This research data was collected through coordinate data for stool sampling and data from BTNUK using a method called maximum entropy (maximum). The analysis used the Relative Use Index, Maximum Entropy modeling, and Relative Abundance Index. Results: Based on research, the use of habitat by Java Banteng with the value of making a spatial distribution model can be analyzed by analyzing the contribution of environmental variables based on the level of contribution in percent and the results of the jackknife test, namely the percentage of contribution of environmental variables in this study showed that environmental parameters, slope (37.6%) were the highest parameters, followed elevation (25.8%), land cover (25.3%), and NDVI (6%), rivers (5.3%). The analysis of five environmental variables used in making the Javan Banteng distribution model showed that at an altitude of 45 meters above sea level, Java Banteng preferred to show 95%. The graph decreased at an altitude above 45 mdpl, and Java Banteng at 200 meters above sea level looked at 0%. Conclusions: Javan Banteng do not like or do not choose places with altitudes ranging from 200 - 625 meters above sea level.
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Hamidy, Amir, and Masafumi Matsui. "PHYLOGENETIC RELATIONSHIPS OF LEPTOBRACHIUM HASSELTII TSCHUDI, 1838 (AMPHIBIA, ANURA, MEGOPHRYIDAE) - DETECTION OF A POSSIBLE CRYPTIC SPECIES." TREUBIA 44 (January 11, 2018): 15. http://dx.doi.org/10.14203/treubia.v44i0.3286.

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By examining mitochondrial DNA phylogeny using 2424bp of sequence data 12S rRNA, tRNAval, and 16S rRNA genes, we evaluated the taxonomic relationships among Javan litter frogs Leptobrachium hasseltii from southern Sumatra, Java, and Bali. Leptobrachium hasseltii formed a well-supported monophyletic group, which comprised two major clades. One major clade represented the southern Sumatran and Javan populations and the other consisted of the population from Bali. The Javan and southern Sumatran clade included two subclades: the West Javan-southern Sumatran group and the Central Javan group. The genetic divergence between the two major clades (Bali vs. Java-Sumatra) suggested their separation happen at species level. Further studies using morphological and acoustic data are needed to determine the taxonomic status of Bali population.
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47

Gymnastiar, Billy Anugrah. "SEBARAN JEJAK MACAN TUTUL DI KAWASAN HUTAN LINDUNG GUNUNG TIKUKUR KPH BANDUNG SELATAN." Wanamukti: Jurnal Penelitian Kehutanan 22, no. 1 (November 10, 2021): 11. http://dx.doi.org/10.35138/wanamukti.v22i1.325.

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The Javan leopard (Panthera pardus) is an endemic species to Java and currently classified as critically endangered species on IUCN Red List, since there possibly even less than 100 left in the wild. One of habitat of Javan leopard is Protected Forest Area of Tikukur Mountain KPH Bandung Selatan. The object of research is to find out the existence signs, map the distribution, and describe the findings of leopard’s prey and any disturbances that occur to the java leopard in the Protected Forest Area of Tikukur Mountain KPH Bandung Selatan. The method of research are preliminary research and intensive research. Preliminary research was by interview, while intensive research by transect and album camera trap method. Based on the research, the number of leopard presence signs are one voice heard and two feces found. The existence of java leopard in the Protected Forest Area of Tikukur Moutain KPH Bandung Selatan is horizontally spread in 2 types of land use, namely forests and plantations. It vertically spreads at altitude of 1445-1617 masl with a sloping and sloping slope. The prey found are java langurs, partridge, and pigs. The disturbances occurred to the java leopard in the protected forest area of Tikukur mountain are in the form of PHBM, military training, hunting, and other activities namely, climbing activities.
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48

Fauzi, Muhammad Alif, Awal Riyanto, and Nia Kurniawan. "Morphometric Analysis of Sumatran, Kalimantan, and Javan <i>Cyrtodactylus</i>, which were Labelled as <i>Cyrtodactylus marmoratus</i>, Revealed Undescribed Species." Journal of Tropical Biodiversity and Biotechnology 7, no. 3 (October 17, 2022): 66688. http://dx.doi.org/10.22146/jtbb.66688.

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Cyrtodactylus marmoratus is originally described based on the specimen from Java. Due to the marbled body colour pattern and the similarity in morphology, many specimens from outside of Java have been identified as C. marmoratus. The ongoing research, both molecular and morphological studies, showed that C. marmoratus is restricted to Java. The taxonomic status of specimens labelled as C. marmoratus from outside Java remains unresolved. Here, we study the morphometric and meristic of Javan, Sumatran, and Kalimantan Cyrtodactylus which were labelled as C. marmoratus to reveal their taxonomic status. We examined 11 morphometric and 19 meristic characters in 51 specimens at Museum Zoologicum Bogoriense (MZB) originally from, Java, Sumatra, and Kalimantan labelled as C. marmoratus as well as other recognized species. Principal Component Analysis (PCA) results show that C. marmoratus from Java differs from previous specimens which labelled as C. marmoratus from Sumatra and Kalimantan. The PCA results also show that C. marmoratus from Martabe differs from C. marmoratus Java which is supported by statistical analysis on interorbital, HeadW, HeadD, tubercle on the ventrolateral fold, dorsal tubercle and ventral scales. We hypothesized that Cyrtodactylus from Martabe is a suspected undescribed species-await formal description, and overall molecular analyses are needed for future study.
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49

Sugianto, Rizal Ananda, Djoko Tjahjono Iskandar, and Tati Suryati Syamsudin. "New records of Cryptoblepharus cursor Barbour, 1911 (Squamata, Scincidae, Eugongylinae) from Java, Indonesia." Check List 20, no. 4 (July 1, 2024): 833–41. http://dx.doi.org/10.15560/20.4.833.

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he Lombok Snake-eyed Skink, Cryptoblepharus cursor Barbour, 1911 has been recorded in South Java prior to 1940. However, information on its population on the island are scarce. This study presents new records of C. cursor from Java. Visual Encounter Survey were conducted to observe habitat selections and collect skinks as voucher specimens. South Javan C. cursor are restricted to sandy littoral zones with Ipomoea pescaprae (L.) R.Br. &ndash; Spinifex littoreus (Burm.f.) Merr. whereas Lombok C. cursor are saxicolous, preferring rocky coasts. They also differ from the scansorial C. balinensis Barbour, 1911, a sympatric congener from Java.
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Milto, Konstantin D., and Yury A. Lukin. "A Revised Herpetofauna of Ujung Kulon National Park, West Java, Indonesia." Russian Journal of Herpetology 27, no. 6 (November 21, 2020): 353–68. http://dx.doi.org/10.30906/1026-2296-2020-27-6-353-368.

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The herpetofauna of Ujung Kulon National Park, Java Island, Indonesia currently includes 21 amphibian and 65 reptile species. Of which 15 species (17%) reported from the Ujung Kulon National Park for the first time. Ujung Kulon is the only documented habitat in Java for such rare species as Kalophrynus minusculus, Limnonectes malesianus, Sphenomorphus striolatus, and Tomistoma schlegelii. Tree Javan endemics currently registered on the park territory (Microhyla achatina, Limnonectes microdiscus, and Elapoidis fusca). The current level of Javan amphibian endemism is 41 – 54% and reptile endemism is 10 – 13%.
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