Ahmad Zaeni
Universitas Negeri Semarang

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Analysis of Higher Order Thinking Skills in a TPACK Based Flipped Classroom Supported by Dynamic Assessment Ahmad Zaeni; Kartono; Mulyono; Y.L. Sukestiarno
Hipotenusa: Journal of Mathematical Society Vol. 7 No. 2 (2025): Hipotenusa: Journal of Mathematical Society
Publisher : Program Studi Tadris Matematika Universitas Islam Negeri (UIN) Salatiga

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.18326/hipotenusa.v7i2.5554

Abstract

This study aims to identify students’ mathematical higher order thinking skills (HOTS) through the implementation of a Flipped Classroom model grounded in the Technological Pedagogical and Content Knowledge (TPACK) framework and supported by dynamic assessment. A mixed method approach with a concurrent embedded design was employed. The study involved 32 prospective mathematics teachers, divided evenly into an experimental group (n = 16) receiving TPACK based Flipped Classroom instruction with dynamic assessment and a control group (n = 16) receiving conventional instruction. HOTS were measured using a validated essay based test aligned with indicators of interpretation, analysis, evaluation, inference, and problem solving. For the qualitative phase, three students representing high, medium, and low prior ability levels were purposively selected. Data were analyzed using both quantitative and qualitative techniques. Quantitative data were analyzed using paired and independent samples t-tests and N-Gain, while qualitative data were examined using open coding and thematic analysis. Descriptive results showed higher posttest scores for the experimental group (M = 74.3, SD = 10.4) compared to the control group (M = 55.1, SD = 9.0). The independent samples t-test indicated a statistically significant difference between groups (p < .05), with a large effect size (Cohen’s d = 1.65) and a moderate N-Gain of 0.58 in the experimental group. Qualitative findings revealed that the high ability student demonstrated complete alignment with HOTS indicators through coherent modeling and proof strategies, while the medium ability student exhibited accurate procedural reasoning and partial conceptual explanation. The low ability student showed limited abstraction but demonstrated incremental improvement through scaffolded feedback. The combined findings show that integrating TPACK based Flipped Classroom instruction with dynamic assessment supports deeper mathematical reasoning by linking pre class technological engagement with in class mediated learning. This study contributes to the literature by demonstrating how dynamic assessment operationalized within a TPACK aligned flipped environment can strengthen students’ HOTS across varying ability levels.
Critical Thinking in Mathematics Education: A Systematic Literature Review and Bibliometric Analysis Ahmad Zaeni; Kartono Kartono; Mulyono Mulyono; Yohanes Leonardus Sukestiyarno
Mosharafa: Jurnal Pendidikan Matematika Vol. 14 No. 3 (2025): July
Publisher : Department of Mathematics Education Program IPI Garut

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31980/mosharafa.v14i3.3476

Abstract

Minat akademis terhadap berpikir kritis dalam pendidikan matematika terus meningkat, tetapi pemetaan kontribusi ilmiah yang menyeluruh masih terbatas. Studi ini memadukan tinjauan pustaka sistematis dan analisis bibliometrik untuk memetakan tren publikasi, fokus tema, dan jejaring kolaborasi riset. Menggunakan protokol PRISMA, artikel dihimpun dari Scopus dengan kata kunci “critical thinking” dan “mathematics education” hingga 3 Juli 2025. Dari 2.088 catatan awal, 142 artikel memenuhi kriteria. Analisis VOSviewer menunjukkan pertumbuhan publikasi yang stabil dalam lima tahun terakhir, dengan dominasi studi kualitatif. Tema-tema utama meliputi integrasi berpikir kritis dalam kurikulum matematika, penerapan model pembelajaran inovatif seperti Problem-Based Learning dan kelas terbalik, serta pengembangan instrumen asesmen untuk keterampilan berpikir tingkat tinggi. Tinjauan ini merangkum lima komponen inti berpikir kritis matematis: pemecahan masalah autentik, pertanyaan reflektif, penalaran, evaluasi, dan strategi metakognitif, yang mendukung pemahaman konseptual dan fleksibilitas kognitif. Implikasinya, pendidik dan peneliti perlu mengintegrasikan komponen tersebut dalam desain pembelajaran dan asesmen, serta menguji efektivitasnya melalui studi empiris pada berbagai konteks dan jenjang pendidikan. Academic interest in critical thinking in mathematics education has increased, yet comprehensive mapping of scholarly contributions remains limited. This study combines a systematic literature review and bibliometric analysis to identify publication trends, key themes, and research collaboration networks. Using the PRISMA protocol, articles were retrieved from Scopus with the keywords “critical thinking” and “mathematics education,” covering publications up to July 3, 2025. Of 2,088 initial records, 142 articles met the eligibility criteria. VOSviewer mapping shows steady publication growth over the past five years, with qualitative studies as the dominant approach. Major themes include integrating critical thinking into the mathematics curriculum, applying innovative instructional models such as Problem-Based Learning and flipped classrooms, and developing assessment instruments for higher-order thinking skills. This review summarizes five core components of mathematical critical thinking authentic problem solving, reflective questioning, reasoning, evaluation, and metacognitive strategies which support conceptual understanding and cognitive flexibility. These findings imply that educators and researchers should embed these components into teaching and assessment designs and examine their effectiveness through empirical studies across diverse contexts and educational levels.