THE VALIDITY MULTIMEDIA INTERACTIVE BASES ANDROID ON IONIC BOND MATERIAL

Authors

  • Muhammad Kharis Syarifuddin Universitas Negeri Surabaya
  • Kusumawati Dwiningsih

DOI:

https://doi.org/10.26740/jcer.v4n2.p63-70

Keywords:

Android-based interactive multimedia, validity, ionic bonding.

Abstract

This research is aims to describe the validity of interactive multimedia based on Android in the ion bonding sub material. This research uses Thiagarajan's 4-D development research consisting of Define; Design; Development and Disseminate. However, this research is limited to the Development stage of Thiagarajan in Ibrahim (2014). Multimedia validity is reviewed from the aspect of content validity and construct validity. This multimedia was validated by 2 Unesa chemistry lecturers and 1 chemistry teacher with the research instrument used in the form of a multimedia validation sheet then the results of the validation resulted in a validation score. Based on data analysis, it can be concluded that android-based interactive multimedia on the ion bond sub-material is valid for use with percentage content validation and construct validity respectively 91.85% and 89.61% with highly valid criteria.

Author Biographies

Muhammad Kharis Syarifuddin, Universitas Negeri Surabaya

Mahasiswa

Kusumawati Dwiningsih

Dosen Pendidikan Kimia

References

<p>[1] Dwiningsih, K., &amp; Rahma, P. T. 2018. Pengembangan Media Pembelajaran Kimia Menggunakan Media Laboratorium Virtual Berdasarkan Paradigma Pembelajaran di Era Global. <em>Kwangsan</em>, <em>6</em>(2).</p><p>[2] Kemendikbud. 2014. <em>Permendikbud No 103 Tentang Pedoman Pelaksanaan Pembelajaran.</em> Jakarta: kemendikbud.</p><p> [3] Supardi, K. I., &amp; Putri, I. R. 2010. Pengaruh penggunaan artikel kimia dari internet pada pembelajaran creative problem solving terhadap hasil belajar siswa SMA. <em>Jurnal Inovasi Pendidikan Kimia</em>, 574-581.</p><p>[4]Puslitbangaptikaikp. 2017. <em>Survey Penggunaan TIK 2017 : Serta Implikasinya Terhadap Aspek Sosial Budaya Masyarakat.</em> Jakarta: Pusat Litbang Aptika dan IKP.</p><p>[5] Mehdipour, Yousef &amp; Hamideh Zerehkafi. 2013. œMobile Learning for Education: Benefits and Challenges<em>. International Journal of Computational Engineering Research </em>(I JCER). Vol: 37 I ssue: 6.</p><p>[6]Ozmen, H. 2004. Some Student Misconception in Chemistry: A Literature Review of Chemical Bonding. <em>Journal of Science Education and Technology (JRST)</em>, 13 (2).</p><p>[7]Farida, I. 2009. The Importance of Development of Representational Competence in Chemical Problem Solving Using Interactive Multimedia. <em>Proceeding of The Third International Seminar on Science Education "Challenging Education in The Digital Era"</em>.</p><p>[8] Ilyasa, D. G., &amp; Dwiningsih, K. 2019. THE VALIDITY OF INTERACTIVE MULTIMEDIA ON IONIC BOND MATERIAL. <em>JCER (Journal of Chemistry Education Research)</em>, <em>3</em>(2), 51-57.</p><p>[9]Ibrahim, M. 2014. <em>Model Pengembangan Perangkat Pembelajaran menurut Jerold E. Kemp &amp; Thiagarajan.</em> Surabaya: PSMS PSS Unesa.</p><p>[10]Riduwan. 2015. <em>Skala Pengukuran Variabel-variabel Penelitian.</em> Bandung: Alfabeta.</p><p>[11]Arikunto, S. 2014. <em>Prosedur Penelitian Suatu Pendekatan Praktis.</em> Jakarta: Rineka Cipta.</p><p>[12] Treagust, D. f., Chittleborough, G. D., &amp; Mamiala, T. 2003. The role of microscopic and symbolic representationsin chemical explanations. <em>International Journal of Science Education</em>, 1353-1368.</p><p>[13]BNSP. 2006. <em>Permendiknas RI No. 22 Tahun 2006 tentang standar isi untuk Satuan Pendidikan Dasar dan Menengah.</em> Jakarta.</p><p>[14]Arsyad. 2014. <em>Media Pembelajaran.</em> Jakarta: Rajawali Press.</p><p>[15]Amirullah, G., &amp; Susilo, S. 2018. Pengembangan Media Pembelajaran Interaktif Pada Konsep Monera Berbasis Smartphone Android. <em>Wacana Akademika</em>, 2</p>

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Published

2021-01-03
Abstract views: 420 , PDF Downloads: 406