Science Teachers’ Lived Experiences in Promoting STEM Career Interests among Rural High School Students in Masbate
DOI:
https://doi.org/10.5281/zenodo.20833957Keywords:
Career Promotion, Experiential Learning, Rural High School, Science Teachers, STEM EducationAbstract
This qualitative phenomenological study explored the lived experiences of Science Teachers in promoting Science, Technology, Engineering, and Mathematics (STEM) career interests among rural high school students in Masbate. Through semi-structured interviews with 8 Science Teachers from public secondary schools in the 2nd district of Masbate, this research aimed to understand the science teachers' lived experiences, the strategies, programs, initiatives, the challenges, and the impact of science teachers' efforts in promoting the STEM career interests among the students. The study utilized Colaizzi’s phenomenological method for data analysis that resulted in formulation of four main themes and twelve subthemes. Experiential Learning and Real-World Relevance, Role Modeling and Career Exposure, Academic Preparedness Issues and Limited STEM Knowledge, and Building Confidence and Encouraging Curiosity. The findings revealed that hands-on activities, inquiry-based learning, and career exposure programs were essential to make the STEM careers attainable and relevant for students. The science teachers must provide more opportunities among the students to engage in expirements, problem-solving task, research activities, laboratory work, and community-based STEM projects. The science teachers’ role as mentors and their personal experiences in STEM served as powerful motivators that shaped the students’ confidence, aspirations, and career decisions. On the other hand, challenges such as lack of resources and opportunities, limited awareness and knowledge of diverse STEM careers, personal barriers and motivation, peer and family influences limit the full students' engagement in STEM. Science teachers mentioned the positive changes among the students’ attitudes towards STEM careers, emphasizing the effectiveness of mentorship, reinforcement and support, and practical exposure. With all the results gathered it needs to enhance the hands-on and inquiry-based learning, increase STEM career awareness, provide adequate resources and opportunities, and strengthen the teachers mentorship.
References
Adams, P. D., Smith, J., Lee, R., & Patel, A. (2024). Increasing retention for rural and underrepresented STEM students. ASEE Annual Conference. https://peer.asee.org/board-312-increasing-retention-for-rural-and-underrepresented-stem-students.pdf
Ambroce, J. J. D., & Daza, S. D. (2025). Lived experiences of out-of-field public school science teachers: A qualitative research. Psychology and Education: A Multidisciplinary Journal, 36(10), 1172–1200. https://www.scribd.com/document/861983117/Lived-Experiences-of-Out-of-Field-Public-School-Science-Teachers-A-Qualitative-Research
Aslam, S., Alghamdi, A. A., Abid, N., & Kumar, T. (2023). Challenges in implementing STEM education: Insights from novice STEM teachers in developing countries. Sustainability, 15(19), 14455. https://www.mdpi.com/2071-1050/15/19/14455
Bayot, M. F. (2024). Teachers' lived experiences in teaching science during the pandemic. Ignatian International Journal for Multidisciplinary Research, 2(4), 71–82. https://icceph.com/wp-content/uploads/2024/04/TEACHERS-LIVED-EXPERIENCES-IN-TEACHING-SCIENCE-DURING-THE-PANDEMIC.pdf
Berry, A., McKeever, S., Murphy, B., & Delany, S. J. (2022). Addressing the “Leaky Pipeline”: A Review and Categorisation of Actions to Recruit and Retain Women in Computing Education. arXiv. https://arxiv.org/pdf/2206.06113
Blotnicky, K. A., Franz-Odendaal, T., French, F., & Joy, P. (2018). A study of the correlation between STEM career knowledge, mathematics self-efficacy, career interests, and career activities on the likelihood of pursuing a STEM career. International Journal of STEM Education, 5(22). https://stemeducationjournal.springeropen.com/articles/10.1186/s40594-018-0118-3
Cain, E. J., Valauri, A., Perry, J. R., & DeLoach, A. (2024). Exploring how rural schools and communities influence the academic journeys of college students in STEM majors. The Rural Educator, 45(3), 15–33. https://files.eric.ed.gov/fulltext/EJ1440899.pdf
Camilon, J. (2023). Perceptions of STEM students towards the STEM strand. ASEAN Journal of Science and Education Studies, 3(1), 45–52. https://www.ejournal.bumipublikasinusantara.id/index.php/ajsed/article/view/672
Canning, E. A., et al. (2024). An exploration of the relationship between active learning and student motivation in STEM. CBE—Life Sciences Education. https://pmc.ncbi.nlm.nih.gov/articles/PMC11427012/
Dacumos, L. P. N. (2023). STEM education and the project-based learning: A review article. STEM ER. https://www.hksmp.com/journals/stemer/article/download/385/425
DeJonckheere, M., & Vaughn, L. M. (2019). Semistructured interviewing in primary care research: A balance of relationship and rigour. Family Medicine and Community Health, 7(2), e000057. https://doi.org/10.1136/fmch-2018-000057
Department of Science and Technology – Science Education Institute. (2024, February 27). Innovative learning models push to generate interest in STEM education. DOST Regional Office VI. https://region6.dost.gov.ph/2024/02/27/innovative-learning-models-push-to-generate-interest-in-stem-education/
Ferrell, V. A., & Tharpe, A. S. (2024). Enhancing rural science education through school district–university partnership. Education Sciences, 14(7), 712. https://www.mdpi.com/2227-7102/14/7/712?utm
Gevera, C. M. C. (2025). Lived experiences of teachers in using inquiry-based learning strategy to enhance student performance in science. International Research Journal of Modernization in Engineering Technology and Science, 7(08), Article 81894. https://www.irjmets.com/upload_newfiles/irjmets70800022485/paper_file/irjmets70800022485.pdf
Geverola, I. J. R., Mutya, R. C., Siason, L. M. B., & Bonotan, A. (2022). Challenges and struggles of public senior high school science teachers during the new normal. Journal of Research, Policy & Practice of Teachers & Teacher Education, 12(1), 49–68. https://ejournal.upsi.edu.my/index.php/JRPPTTE/article/view/6340/3592
Gill, M. J. (2020). Phenomenology as qualitative methodology. In N. Mik-Meyer & M. Jarvinen (Eds.), Qualitative analysis: Eight approaches (pp. 73-94). SAGE. https://www.researchgate.net/publication/341104030_Phenomenology_as_qualitative_methodology
Goodpaster, K. P., Adedokun, O. A., & Weaver, G. C. (2012). Teachers’ perceptions of rural STEM teaching: Implications for rural teacher retention. The Rural Educator, 33(3), 9–22. https://files.eric.ed.gov/fulltext/EJ987621.pdf
Guillermo, A. S., & Manzano, A, T. (2022). Lived experiences of science teachers of Pangasinan II in the new-normal education: A phenomenological study. (2022). International Journal of Advanced Research. https://www.journalijar.com/article/40251/lived-experiences-of-science-teachers-of-pangasinan-ii-in-the-new-normal-education%3A-a-phenomenological-study/
Ilagan, M. C. J. (2021). Career guidance status of freshman students. Asia Pacific Journal of Academic Research in Social Sciences, 6(1), 37–46. Retrieved from Lyceum of the Philippines University repository. https://research.lpubatangas.edu.ph/wp-content/uploads/2022/09/6-APJARSS-2021-17.pdf
Ismail, M. H., Salleh, M. F. M., & Nasir, N. A. M. (2019). The issues and challenges in empowering STEM on science teachers in Malaysian secondary schools. International Journal of Academic Research in Business and Social Sciences, 9(13), 430–444. https://hrmars.com/papers_submitted/6869/The_Issues_and_Challenges_in_Empowering_STEM_on_Science_Teachers_in_Malaysian_Secondary_Schools.pdf
Jones, R. M. ., & Emenike, M. E. (2024). Pursuing Retention and Success of Rural and Diverse STEM Students: A Qualitative Investigation of a Program Ecosystem and Undergraduate Participants. Journal of STEM Education: Innovations and Research, 25(1). https://jstem.org/jstem/index.php/JSTEM/article/view/2631/2353
Lopez, N., Morgan, D. L., Hutchings, Q. R., & Davis, K. (2022). Revisiting critical STEM interventions: a literature review of STEM organizational learning. International Journal of STEM Education, 9, Article 39. https://doi.org/10.1186/s40594-022-00357-9
Maestrado, J. T., & Bucar, J. D. (2024). Career Guidance Advocacy Program and the Grade 10 completers’ career choice. International Journal of Multidisciplinary: Applied Business and Education Research, 5(2). https://www.ejournals.ph/article.php?id=22563&utm
Magaji, A., Ade-Ojo, G., & Bijlhout, D. (2022). The impact of after-school science club on the learning progress and attainment of students. International Journal of Instruction, E-IJI. https://eric.ed.gov/?id=EJ1355335
Mahoney, M. P. (2010). Students’ attitudes toward STEM: Development of an instrument for high school STEM-based programs. Journal of Technology Studies, 36(1), 24-34. https://scholar.lib.vt.edu/ejournals/JOTS/v36/v36n1/mahoney.html
Mao, P., Cai, Z., He, J., Chen, X., & Fan, X. (2021). The relationship between attitude toward science and academic achievement in science: A three-level meta-analysis. Frontiers in Psychology, 12, Article 784068. https://www.frontiersin.org/journals/psychology/articles/10.3389/fpsyg.2021.784068/full
Margot, K. C., & Kettler, T. (2019). Teachers’ perceptions of STEM integration and education: A systematic literature review. International Journal of STEM Education, 6(1), Article 2. https://stemeducationjournal.springeropen.com/articles/10.1186/s40594-018-0151-2
Palinkas, L. A., Horwitz, S. M., Green, C. A., Wisdom, J. P., Duan, N., & Hoagwood, K. (2015). Purposeful sampling for qualitative data collection and analysis in mixed method implementation research. Administration and Policy in Mental Health and Mental Health Services Research, 42(5), 533–544. https://doi.org/10.1007/s10488-013-0528-y
Perez, et al. (2021). Factors that influence Grade 12 STEM students in choosing science, technology, engineering, and mathematics strand. International Journal of Engineering, Artificial Intelligence and Science. http://ijeais.org/wp-content/uploads/2025/1/IJEAIS250101.pdf
Popa, R. A., & Ciascai, L. (2017). Students' attitude towards STEM education. Acta Didactica Napocensia, 10(4), 55-62. https://www.researchgate.net/publication/322129010_Students'_Attitude_towards_STEM_Education
Provendido, L. A. L., Rosal, P. I., Patosa, C. F. B., Panayas, S. C., & Velasquez, A. J. C. (2024). STEM exposure and STEM career aspirations to senior high school students in Davao Doctors College, Inc. Asian Journal of Education and Social Studies, 50(8), 172–180. https://journalajess.com/index.php/AJESS/article/view/1517/2968
Punzalan, C. H. (2022). STEM interests and future career perspectives of junior high school students: A gender study. International Journal of Research in Education and Science (IJRES), 8(1), 93–102. https://ijres.net/index.php/ijres/article/view/1139/pdf
Rahman, L. (2024). Pedagogical Approach in STEM Education: A Literature Review. International Journal of Engineering Research & Technology, 13(09). https://www.ijert.org/research/pedagogical-approach-in-stem-education-a-literature-review-IJERTV13IS090039.pdf
Rosas, T. J. A. (2019). Lived experiences of junior high school specialized science teachers teaching science using the spiral progression approach. Journal of Education and Society. https://journals.lnu.edu.ph/index.php/jes/article/view/26/32
Sahin, A., & Waxman, H. C. (2021). Factors affecting high school students' STEM career interest: Findings from a 4-year study. Journal of STEM Education: Innovations and Research, 22(3), 5-19. https://www.jstem.org/jstem/index.php/JSTEM/article/view/2472/2224
Salisu, M., Che Rus, R., Yusuf, M., Bamiro, N., & Idris, M. (2025). Systematic review of teacher attrition rates and their far reaching implications on STEM education in the context of Society 5.0. STEM Education, 5(3), 473–497. https://www.aimspress.com/aimspress-data/steme/2025/3/PDF/steme-05-03-023.pdf
Simons, et al. (2025). STEM lives: The experiences of sexual and gender minority teachers in the United States. Humanities and Social Sciences Communications, 12, 699. https://www.nature.com/articles/s41599-025-04749-4
Sung, E., Han, J., & Kelley, T. (2025). Enhancing STEM attitudes of rural high school students through engineering design-based learning. Journal of Technology Education, 36(2), 113–137. https://files.eric.ed.gov/fulltext/EJ1472028.pdf
Tijap, H. C., Malamdag, J. E., Paz, P. M. G., & Pelgone, A. J. O. (2022). Filipino science teachers’ needs, challenges, and practices in the new normal. Journal of Physics and Mathematics Integration for the Philippines and Asia, 23(1), 123–151. https://jpmipa.fkip.unila.ac.id/index.php/jpmipa/article/view/419/312
Wang, et al. (2023). Gender differences in high school students' interest in STEM careers. International Journal of STEM Education, 10(59). https://www.researchgate.net/publication/374555866_Gender_differences_in_high_school_students'_interest_in_STEM_careers_a_multi-group_comparison_based_on_structural_equation_model
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2026 International Journal of Research on Multidisciplinary Studies

This work is licensed under a Creative Commons Attribution 4.0 International License.







