1Associate Professor, Department of Education, Sidho-Kanho-Birsha University, Purulia, West Bengal, India
2Professor, Department of Education, Sidho-Kanho-Birsha University, Purulia, West Bengal, India
American Journal of Educational Research.
2026,
Vol. 14 No. 7, 220-227
DOI: 10.12691/education-14-7-3
Copyright © 2026 Science and Education PublishingCite this paper: Subir Sen, Birbal Saha. Mapping Knowledge Bases and Structural Isolation in Mathematics Teachers’ TPACK: A Network Perspective.
American Journal of Educational Research. 2026; 14(7):220-227. doi: 10.12691/education-14-7-3.
Correspondence to: Birbal Saha, Professor, Department of Education, Sidho-Kanho-Birsha University, Purulia, West Bengal, India. Email:
birbalsaha@gmail.comAbstract
This study employs Network Analysis to examine the cognitive structure of teacher knowledge within the Technological Pedagogical Content Knowledge (TPACK) framework among 600 pre-service mathematics teachers in West Bengal. Utilizing the TPACK-Math Scale by Önal [1], the research explores the integration of eight knowledge domains: Content (CK), Pedagogical (PK), Technological (TK), and Contextual Knowledge (CNTK), along with their intersections. The network is remarkably dense, with a sparsity value of 0.143, indicating that 86% of theoretical relationships are empirically present. Technological Pedagogical Knowledge (TPK) emerged as the primary functional hub, showing the highest closeness (1.237) and strength (1.135). Pedagogical Knowledge (PK) acts as a critical bridge (betweenness = 0.917) connecting content mastery to technology. Both TK and CNTK exhibit negative centrality, suggesting these domains remain isolated from the broader pedagogical reasoning. Furthermore, Technological Content Knowledge (TCK) forms a siloed, redundant module with exceptionally high clustering coefficients (e.g., Zhang = 2.193). A negative correlation exists between TK and PCK (-0.071), suggesting that excessive focus on pure technology can inhibit the development of situated pedagogical expertise. The PK-CK axis remains the strongest relationship (weight = 0.480), serving as the framework’s foundational ‘spine’. The study concludes that while teachers have synthesized pedagogical and technological processes, professional development must transition from general technology training to network-rebalancing approaches. Recommendations include anchoring technology use in content-specific pedagogical goals and strengthening the links between technical skills and local classroom contexts to foster a more resilient and adaptive teaching expertise.
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