My teaching approach integrates mechanical principles with anatomical, physiological, and technological perspectives to help students understand and analyze human movement in sport. I teach Movement Analysis at the undergraduate level and Advanced Sports Biomechanics at the postgraduate level. My courses combine theoretical instruction with laboratory-based learning, high-speed video analysis, biomechanical measurement, data interpretation, and the practical evaluation of athletic techniques.
Level: Fourth-Year Undergraduate Students
Institution: College of Physical Education and Sport Sciences, University of Al-Qadisiyah
This course introduces the qualitative and quantitative analysis of sports movement. It covers movement phases, kinematic variables, mechanical interpretation of athletic techniques, video-based observation, error identification, and the application of movement analysis to teaching and coaching.
Level: Master’s Students
Institution: College of Physical Education and Sport Sciences, University of Al-Qadisiyah
This course examines advanced mechanical principles and their application to sports performance. It covers biomechanical dimensions, kinematic and kinetic analysis, biomechanical curve interpretation, measurement technologies, applications in sports medicine, and research-based evaluation of athletic movement.
Level: Master’s Students
Semester: First Semester
Institution: Department of Physical Education, College of Education for Women, University of Al-Qadisiyah
This elective course provides an advanced and integrated analysis of human movement based on mechanical, anatomical, and physiological principles. It emphasizes kinematic and kinetic variables, high-speed video analysis, interpretation of movement phases, and the practical evaluation of sports techniques.
Practical teaching activities are conducted through the Biomechanics and Motion Analysis Laboratory at the College of Physical Education and Sport Sciences, University of Al-Qadisiyah. Students apply theoretical concepts through high-speed video recording, movement-phase identification, kinematic analysis, biomechanical measurement, and data interpretation. Laboratory and research activities may also incorporate surface electromyography, plantar-pressure systems, motion-analysis software, and technology-assisted assessment of sports performance.
My graduate supervision focuses on sports biomechanics, human movement analysis, neuromuscular performance, volleyball biomechanics, and technology-assisted assessment of athletic performance. I support postgraduate students throughout research design, methodological planning, laboratory data collection, biomechanical and statistical analysis, interpretation of findings, and academic thesis writing.
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MASTER’S THESES SUPERVISED
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DOCTORAL DISSERTATIONS SUPERVISED
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THESIS AND DISSERTATION EXAMINATIONS