Yıl: 2020 Cilt: 19 Sayı: 4 Sayfa Aralığı: 1864 - 1874 Metin Dili: İngilizce DOI: 10.17051/ilkonline.2020.729785 İndeks Tarihi: 07-10-2020

Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable

Öz:
The purpose of this study is to develop a valid and practical digital 3D books based on the mathematical understanding of a linear system with two variables. This study uses the ADDIE (Analysis, Design, Development, Implementation, and Evaluation) development model. Data were collected through semi-structured interviews, practicality tests, and validity questionnaires. The research samples werenine students and five mathematicians. The results of this study indicate that the use of digital 3D books is valid with a percentage of 92% and practicality with a percentage of 91.67%. In short, 3D books can be used in the learning process on a linear system of material with two variables and are easy to use for students. Teachers can facilitate the use of 3D books in mathematics learning classes, and students can also use this independently in learning.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • Abidin, Z. (2017). Penerapan Pemilihan Media Pembelajaran. Edcomtech Jurnal Kajian Teknologi Pendidikan 1(1), 9-20.
  • Adjizah, N., Rozak, A., & Pramuditya, S. A. (2019). Desain Bahan Ajar Digital Materi Sistem Persamaan Linear Dua Variabel (SPLDV) Berbasis Kemampuan Komunikasi Matematis Siswa. Prosiding Seminar Nasional Pendidikan Matematika 1(1), 10-20.
  • Al Tamimi, A. R. (2017). The Effect of Using Ausubel's Assimilation Theory and the Metacognitive Strategy (KWL) in Teaching Probabilities and Statistics Unit for First Grade Middle School Students’ Achievement and Mathematical Communication. European Scientifics, 13(1), 276-303.
  • Ahmadi, L. K & Amri, S. (2014). Pengembangan Model Pembelajaran Tematik Integratif. Jakarta: PT. Prestasi Pustakaraya.
  • Akbar, S. (2013). Instrumen Perangkat Pembelajaran. Bandung: Remaja Rosdakarya.
  • Bakar, M. T., Suryadi, D., Tonra, W. S., & Noto, M. S. (2018). The association between conceptual understanding and reasoning ability in mathematics: An analysis of DNR-based instruction models. Journal of Physics: Conference Series 1088(1), 1-5.
  • Branch, R. M. (2009). Instructional Design: The ADDIE Approach. USA: University of Georgia.
  • Dahar, R. W. (2011). Teori belajar dan pembelajaran. Jakarta: Erlangga.
  • Diani, R & Hartati, N. S. (2018). Flipbook Berbasis Literasi Islam: Pengembangan Media Pembelajaran Fisika dengan 3D Pageflip Professional. Jurnal Inovasi Pendidikan IPA 4(2), 234-244.
  • Farida, N. (2015). Analisis Kesalahan Siswa SMP Kelas VIII dalam Menyelesaikan Masalah Soal Cerita Matematika. Jurnal Program Studi Pendidikan Matematika 4(2), 1-10.
  • Febrianti, K. V., Bakri, F., & Nasbey, H. (2017). Pengembangan Modul Digital Fisika Berbasis Discovery Learning Pada Pokok Bahasan Kinematika Gerak Lurus. WaPFi (Wahana Pendidikan Fisika), 2(2), 18-26.
  • Hamdunah. (2015). Praktikalitas Pengembangan Modul Kontruktivisme dan Website pada Materi Lingkaran dan Bola. Lemma 2(1), 35-42.
  • Harisman, Y., Kusumah, Y. S., & Kusnandi, K. (2018). Teachers’ reflections on students’ mathematical problem solving in junior high school. Journal of Physics: Conference Series 1088(1), 1-8.
  • Hendriana, H., Rohaeti, E. E., & Sumarmo, U. (2017). Hard skills dan soft skills matematik siswa. Bandung: Refika Aditama.
  • Hidayat, W., Noto, M. S., & Sariningsih, R. (2019). The influence of adversity quotient on students’ mathematical understanding ability. Journal of Physics: Conference Series 1157(3), 1-5.
  • Hikmah, R. (2017). Penerapan Model Advance Organizer untuk Meningkatkan Kemampuan Pemahaman Siswa. Jurnal SAP (Susunan Artikel Penelitian), 1(3), 271-280.
  • Indariani, A., Ayni, N., Pramuditya, S. A., & Noto, M. S. (2019). Teknologi Buku Digital Matematika dan Penerapan Potensialnya dalam Distance Learning. JNPM (Jurnal Nasional Pendidikan Matematika), 3(1), 1-12.
  • Juneri, J., Rozak, A., & Pramuditya, S. A. (2019, March). Desain Bahan Ajar Digital Materi Fungsi Berbasis Kemampuan Komunikasi Matematis. Prosiding Seminar Nasional Pendidikan Matematika 1(1), 20-30.
  • Kelada, F (2008). Strategies and Methods of teaching and instructional models, Part I, 3rd, Tanta: Dar Al Maera Al Gamia.
  • Kemendiknas. (2010). Panduan Pengembangan Bahan Ajar Berbasis TIK. Kementrian Pendidikan Nasional: Dorektorat Pembinaan SMA.
  • Kurniawan, D., Suyatna, A., & Suana, W. (2015). Pengembangan Modul Interaktif Menggunakan Learning Content Development System pada Materi Listrik Dinamis. Jurnal Pembelajaran Fisika, 3(6), 1-10.
  • Kurniawati, H., Desnita, D., & Siswoyo, S. (2016). Pengembangan Media Pembelajaran Berbasis 3D PageFlip Fisika untuk Materi Getaran dan Gelombang Bunyi. Jurnal Penelitian dan Pengembangan Pendidikan Fisika, 2(1), 97-102.
  • Maryam, Masykur & Andriani. (2019). Pengembangan E-Modul Matematika Berbasis Open Ended Pada Materi Sistem Persamaan Linear Dua Variabel Kelas VIII. Jurnal Matematika dan Pendidikan Matematika 10(1), 1-10.
  • Pohan, J. E., Atmazaki, & Agustina. (2014). Pengembangan Modul Berbasis Pendekatan Kontekstual pada Menulis Resensi di Kelas IX SMP 7 Padang Bolak. Jurnal Bahasa, Sastra dan Pembelajaran 2(2), 1- 11.
  • Pramuditya, S. A., Noto, M. S., & Purwono, H. (2018). Desain Game Edukasi Berbasis Android pada Materi Logika Matematika. JNPM (Jurnal Nasional Pendidikan Matematika), 2(2), 165-179.
  • Pramuditya, S. A., Noto, M. S., & Syaefullah, D. (2018). The Educational Game Design on Relation and Function Materials. Journal of Physics: Conference Series 1013(1), 1-8.
  • Purnomo, D. (2012). Pengembangan Bahan Ajar Matematika Sebagai Sarana Pengembangan Kreativitas Berpikir. Jurnal Matematika dan Pendidikan Matematika 2(1), 1-8.
  • Puspita, Sumarni, & Pamelasari. (2014). Pengembangan Modul Bilingual Bergambar Terhadap Minat Belajar Siswa pada Tema Energi di Alam Sekitar. Unnes Science Education Journal 3(2), 476-480.
  • Putra, I. K. (2014). Teknologi Media Pembelajaran Sejarah Melalui Pemanfaatan Multimedia Animasi Interaktif. Jurnal Teknolf, 1(2), 20-25.
  • Sari, R. M, Amir, MZ & Risnawati. (2017). Pengembangan Lembar Kerja Siswa (LKS) Berbasis Pendekatan Realistic Mathematic Education (RME) untuk Memfasilitasi Kemampuan Representasi Matematis Siswa SMP. Formatif: Jurnal Ilmiah Pendidikan MIPA 7(1), 66-74.
  • Sinambela, P. N. J. M. (2017). Kurikulum 2013 dan Implementasnya dalam Pembelajaran. Generasi Kampus 6(2), 17-29.
  • Sugiyono. (2017). Meetode Penelitian dan Pengembangan (Research and Development/R&D). Bandung: Penerbit Alfabeta.
  • Sumantri, M. S. (2015). Media dan Pembelajaran. Jakarta: Rajawali Pers.
  • Sundayana, R. (2016). Media dan Alat Peraga dalam Pembelajaran Matematika. Bandung: Penerbit Alfabeta.
  • Suprihatiningsih, S & Annurwanda P. (2019). Pengembangan Modul Matematika Berbasis Masalah Pada Materi Sistem Persamaan Linear Dua Variabel. Jurnal Karya Pendidikan Matematika 6(1), 57-63.
  • Yerimadesi, Y., Bayharti, B., Handayani, F., & Legi, W.F. (2017). Pengembangan Modul Kesetimbangan Kimia Berbasis Pendekatan Saintifik Untuk Kelas XI SMA/MA. Sainstek: Jurnal Sains dan Teknologi, 8(1), 85-97.
  • Zahro, U. L., Serevina, V., & Astra, M. (2017). Pengembangan Lembar Kerja Siswa (LKS) Fisika dengan Menggunakan Strategi Relating, Experiencing, Applying, Cooperating, Transferring (REACT) Berbasis Karakter Pada Pokok Bahasan Hukum Newton. WaPFi (Wahana Pendidikan Fisika), 2(1), 63-68.
APA NOTO M, KARIMAH N, PRAMUDITYA S, ANGGRAENI Y (2020). Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable. , 1864 - 1874. 10.17051/ilkonline.2020.729785
Chicago NOTO Muchamad Subali,KARIMAH Nurul Ikhsan,PRAMUDITYA Surya Amami,ANGGRAENI Yeni Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable. (2020): 1864 - 1874. 10.17051/ilkonline.2020.729785
MLA NOTO Muchamad Subali,KARIMAH Nurul Ikhsan,PRAMUDITYA Surya Amami,ANGGRAENI Yeni Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable. , 2020, ss.1864 - 1874. 10.17051/ilkonline.2020.729785
AMA NOTO M,KARIMAH N,PRAMUDITYA S,ANGGRAENI Y Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable. . 2020; 1864 - 1874. 10.17051/ilkonline.2020.729785
Vancouver NOTO M,KARIMAH N,PRAMUDITYA S,ANGGRAENI Y Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable. . 2020; 1864 - 1874. 10.17051/ilkonline.2020.729785
IEEE NOTO M,KARIMAH N,PRAMUDITYA S,ANGGRAENI Y "Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable." , ss.1864 - 1874, 2020. 10.17051/ilkonline.2020.729785
ISNAD NOTO, Muchamad Subali vd. "Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable". (2020), 1864-1874. https://doi.org/10.17051/ilkonline.2020.729785
APA NOTO M, KARIMAH N, PRAMUDITYA S, ANGGRAENI Y (2020). Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable. İlköğretim Online (elektronik), 19(4), 1864 - 1874. 10.17051/ilkonline.2020.729785
Chicago NOTO Muchamad Subali,KARIMAH Nurul Ikhsan,PRAMUDITYA Surya Amami,ANGGRAENI Yeni Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable. İlköğretim Online (elektronik) 19, no.4 (2020): 1864 - 1874. 10.17051/ilkonline.2020.729785
MLA NOTO Muchamad Subali,KARIMAH Nurul Ikhsan,PRAMUDITYA Surya Amami,ANGGRAENI Yeni Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable. İlköğretim Online (elektronik), vol.19, no.4, 2020, ss.1864 - 1874. 10.17051/ilkonline.2020.729785
AMA NOTO M,KARIMAH N,PRAMUDITYA S,ANGGRAENI Y Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable. İlköğretim Online (elektronik). 2020; 19(4): 1864 - 1874. 10.17051/ilkonline.2020.729785
Vancouver NOTO M,KARIMAH N,PRAMUDITYA S,ANGGRAENI Y Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable. İlköğretim Online (elektronik). 2020; 19(4): 1864 - 1874. 10.17051/ilkonline.2020.729785
IEEE NOTO M,KARIMAH N,PRAMUDITYA S,ANGGRAENI Y "Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable." İlköğretim Online (elektronik), 19, ss.1864 - 1874, 2020. 10.17051/ilkonline.2020.729785
ISNAD NOTO, Muchamad Subali vd. "Digital 3D book and Ausubel theory: increasing the mathematical understanding in a linear system with two variable". İlköğretim Online (elektronik) 19/4 (2020), 1864-1874. https://doi.org/10.17051/ilkonline.2020.729785