Students’, Pre-Service Mathematics Teachers’, and In-Service Mathematics Teachers’ Perception on Calculus Learning Video

Shelly Lubis(1*), Wahyu Setyaningrum(2), Abdul Halim Abdullah(3), Muhamad Rizky Al Gafari(4), Habibullah Habibullah(5),


(1) Universitas Negeri Yogyakarta
(2) Universitas Negeri Yogyakarta
(3) Universiti Teknologi Malaysia
(4) Sampoerna University
(5) Universitas Riau Kepulauan
(*) Corresponding Author

Abstract


Calculus is a branch of mathematics that must be studied in school, especially at the high school level. One of the subjects in calculus is the application of integral on the volume of solid of revolution. The use of learning video as media can help students in a conceptual understanding of the volume of solid of revolution, which is one of the abstract objects in calculus. This article discusses the development of solid revolution learning videos' volume. It describes students' perception, pre-service mathematics teachers, and in-service mathematics teachers in the video. The subjects who participated in this study were 48 students in grade 12 in one state high school in Sambas Regency, West Borneo, 8 pre-service mathematics teachers of one of the universities in Yogyakarta, and 3 high school mathematics teachers in Sambas Regency. Data were collected by using a questionnaire consisting of several open questions. Through open questions, subjects were intended to express their ideas or opinions about the learning video. The finding showed that most respondents have positive perceptions of calculus learning video. 76,74% of students agree that the video is suitable for use at the beginning of learning this subject; all in-service mathematics teachers agree, and 75% of pre-service mathematics teachers also agree. This indicates that the learning video can be used as one of the teaching aids in the learning of solid revolution


Keywords


Conceptual understanding; Learning video; Solid of revolution

Full Text:

PDF

References


Arcana, I. N. (2011). Pengembangan Media Pembelajaran Mandiri Berbantuan Komputer untuk Meningkatkan Pemahaman Konsep Kalkulus II. Magister Scientiae, 30, 53–65. https://doi.org/10.33508/mgs.v0i30.632

Branch, R. M. (2009). Instructional design: The ADDIE approach. New York: Springer.

Buckingham, D. (2003). Media education: literacy, learning, and contemporary culture. New Hampshire: Odyssey Press Inc.

Cuoco, A. A., Goldenberg, E. P., & Mark, J. (1995). Technology and the mathematics curriculum : some new initiatives. The Mathematics Teacher, 88(3), 236–240. https://doi.org/10.5951/mt.88.3.0236

Graham, T., & Berry, J. (1992). Using Video in the Teaching of Mathematics. Mathematics in School, 21(3), 19–21. Retrived from https://www.jstor.org/stable/30214878

Heinich, R., Molenda, M., Russel, J. D., & Smaldino, S. E. (1996). Instructional media and technology for learning (5th ed.). Englewood Cliffs: Prentice-Hall, Inc.

Henderson, R. W., Landesman, E. M., & Kachuck, I. (1985). Computer-Video Instruction in Mathematics : Field Test of an Interactive Approach. Journal for Research in Mathematics Education, 16(3), 207–224. Retrived from https://www.jstor.org/stable/748394

Kuhfitting, P. K. F. (1984). Basic technical mathematics with calculus. California: Wadsworth, Inc.

Labasariyani, N. L. P., & Marlida, N. L. P. M. (2017). Penggunaan video pembelajaran sebagai alat bantu dalam mempersiapkan bahan ajar kalkulus I untuk mahasiswa STMIK STIKOM Indonesia. Jurnal Ilmu Komputer Dan Sains Terapan, 7(2), 93–97. https://doi.org/10.31598/sacies.v7i2.193

Lynn, R. E. (1985). Technical mathematics and calculus. Canada: John Wiley & Sons, Inc.

Muna, H., Nizaruddin, & Murtianto, Y. H. (2017). Pengembangan Video Pembelajaran Matematika Berbantuan Macromedia Flash 8 Dengan Pendekatan Kontekstual Pada Materi Program Linier Kelas XI. Aksioma, 8(2), 9–18. https://doi.org/10.26877/aks.v8i2.1686

Mustafidah, H., & Aryanto, D. (2010). Pengembangan media pembelajaran digital interaktif kalkulus-II dalam peningkatan prestasi belajar mahasiswa. Techno, 11(2), 84–93. http://dx.doi.org/10.30595/techno.v11i2.21

Niess, M. L., & Walker, J. M. (2009). This Rock “n†Roll Video Teaches Math. Learning & Leading with Technology, 36(8), 36–37. Retrived from https://eric.ed.gov/?id=EJ842843

Purwanti, B. (2015). Pengembangan Media Video Pembelajaran Matematika dengan Model Assure. Jurnal Kebijakan Dan Pengembangan Pendidikan, 3(1), 42–47. https://doi.org/10.22219/jkpp.v3i1.2194

Star, J. R., & Strickland, S. K. (2008). Learning to observe: using video to improve preservice mathematics teachers’ ability to notice. Journal of Mathematics Teacher Education, 11(2), 107–125. https://doi.org/10.1007/s10857-007-9063-7

Suryadi, S. (2014). Perancangan perangkat lunak penerapan integral dalam menghitung isi perputaran kurva. INFORMATIKA, 2(1), 20–39. https://doi.org/10.36987/informatika.v2i1.193




DOI: 10.24235/eduma.v10i2.8599

Article Metrics

Abstract view : 51 times
PDF - 11 times

Refbacks

  • There are currently no refbacks.




Copyright (c) 2022

toto

slot

SUNDA787

SUNDA787

SUNDA787

SUNDA787

SUNDA787 href="https://www.happycyclist.org/">SUNDA787 Online SITUS SUNDA787SUNDA787 DaftarSUNDA787 ViralSUNDA787 MaxwinSUNDA787 LoginSUNDA787 Slotslot spadegamingslot onlineslot resmislot hari inislot gacorgacor7selotgacorsitus slotsitus slot gacorslot maxwinslot jackpot maxwin x1000jackpot maxwin x1000judi gameslot shopeepayslot bri onlineslot jackpotslot x500 maxwinslot online terlengkap

slot gacor

slot88

slot online

agen sbobet terpercaya

agen sbobet terpercaya

Login Alternatif 3DSbobet

slot terpercaya

slot gacor hari ini

link slot thailand

slot gacor

slot gacor

situs slot gacor

slot online

maxslot88

slot

demo slot

binus4d

slot88

slot demo

slot gacor

slot gacor

sendok88

toto slot

slot

idnslot

kadang pemahaman baru muncul setelah mahjong ways dijalani pelan mahjong ways sering terlihat berbeda ketika fokus berubah bukan soal cepat atau lambat mahjong ways mengajak membaca alur di tengah permainan yang mengalir mahjong ways menyimpan makna mahjong ways akhirnya dipahami sebagai proses yang berlapis persepsi sering berubah setelah mahjong wins dilihat lebih dalam mahjong wins kadang dipahami dari cara berpikir bukan hasil ada alur tenang yang terbentuk saat mahjong wins dibiarkan mengalir mahjong wins muncul dalam bentuk pengalaman bukan kejutan dari sudut yang jarang diperhatikan mahjong wins terasa nyata ada banyak cara memaknai rtp tergantung sudut pandang pengamat dalam pengamatan jangka panjang rtp memiliki cerita sendiri di balik angka rtp terkadang tersimpan pola pemahaman melihat rtp sebagai bagian dari gambaran yang lebih besar rtp bukan sekadar rujukan namun bagian dari proses berpikir rtp kerap muncul dalam diskusi saat pengalaman mulai dibandingkan rtp menjadi menarik saat dibaca tanpa ekspektasi berlebihan rtp sering dipahami berbeda ketika konteksnya ikut diperhatikan rtp terasa berbeda ketika dilihat dalam alur yang utuh rtp tidak selalu berbicara angka kadang soal pola pikir

slot gacor hari ini

Petugas Administrasi Rumah Sakit Pekanbaru Temukan Celah Cuan Lewat Game Big Bass Bonanza

Yuantoto

LGO234

Slot Gacor

<a style="visibility: hid