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<article xsi:noNamespaceSchemaLocation="http://jats.nlm.nih.gov/publishing/1.1/xsd/JATS-journalpublishing1-mathml3.xsd" dtd-version="1.1" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"><front><journal-meta><journal-id journal-id-type="publisher-id">erd</journal-id><journal-title-group><journal-title>Education Reform and Development</journal-title></journal-title-group><issn>2652-5364</issn><eissn>2652-5372</eissn><publisher><publisher-name>Bio-Byword Scientific Publishing Pty. Ltd.</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="doi">10.26689/erd.v8i1.13780</article-id><article-categories><subj-group subj-group-type="heading"><subject>Article</subject></subj-group></article-categories><title>Research on the Cultivation and Teaching Practice of Design Thinking of Absorbing Materials Based on Electromagnetic Parameters</title><url>https://artdesignp.com/journal/erd/8/1/10.26689/erd.v8i1.13780</url><author>GuoRui</author><pub-date pub-type="publication-year"><year>2026</year></pub-date><volume>8</volume><issue>1</issue><history><date date-type="pub"><published-time>2026-02-09</published-time></date></history><abstract>As critical materials in defense, military, and electronic information fields, microwave-absorbing materials require precise control and optimal matching of electromagnetic parameters. Current teaching in materials science programs at universities faces challenges such as disconnection from engineering practice and insufficient development of students ‘design thinking and innovation capabilities. This study focuses on electromagnetic parameters to establish a “knowledge-ability-cultivation” tripartite teaching objective, optimize the curriculum system, innovate diversified teaching methods, develop a scientific evaluation framework, explore pathways for cultivating design thinking, and validate the model’s feasibility, thereby providing references for curriculum reform in materials science programs.</abstract><keywords/></article-meta></front><body/><back><ref-list><ref id="B1" content-type="article"><label>1</label><element-citation publication-type="journal"><p>Zhang S, Zou Y, Shi X, et al., 2024, Teaching Reform and Practice of “Microelectronic Materials Design and Device Simulation”. Education and Teaching Forum, (43): 65–68.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B2" content-type="article"><label>2</label><element-citation publication-type="journal"><p>Xie W, Yao YZ, 2024, Design and Practice of Innovative Experimental Teaching: Biosynthesis and Applications of Composite Materials. Guangdong Chemical Industry, 51(18): 204–206 + 243.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B3" content-type="article"><label>3</label><element-citation publication-type="journal"><p>Li Y, Zheng L, 2023, Blended Teaching Practice of “Fundamentals of Materials Science” Oriented Towards Applied Talent Cultivation. Journal of Science Education, (30): 101–103.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B4" content-type="article"><label>4</label><element-citation publication-type="journal"><p>Chen B, Yan X, 2024, Teaching Reform and Practical Exploration of Basic Materials Science Courses in the New Era. China Modern Educational Equipment, (11): 127–129.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B5" content-type="article"><label>5</label><element-citation publication-type="journal"><p>Qian H, Zhang Y, Chen J, et al., 2022, Design and Practice of Interactive Teaching in Engineering Classroom Instruction at Universities: A Case Study of the “Polymer Material Processing Technology” Course. Contemporary Educational Theory and Practice, 14(05): 33–38.</p><pub-id pub-id-type="doi"/></element-citation></ref></ref-list></back></article>
