Results for 'Philippine science education'

981 found
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  1.  32
    Spanish Jesuits in the Philippines: Geophysical Research and Synergies between Science, Education and Trade, 1865–1898.Aitor Anduaga - 2014 - Annals of Science 71 (4):497-521.
    SummaryIn 1865, Spanish Jesuits founded the Manila Observatory, the earliest of the Far East centres devoted to typhoon and earthquake studies. Also on Philippine soil and under the direction of the Jesuits, in 1884 the Madrid government inaugurated the first Meteorological Service in the Spanish Kingdom, and most probably in the Far East. Nevertheless, these achievements not only went practically unnoticed in the historiography of science, but neither does the process of geophysical dissemination that unfolded fit in with (...)
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  2. Exploring the Educational Advocacy of Graduate Students in Philippine Higher Education Institution.Manuel Caingcoy & Catherine Libertad - 2020 - Technium Social Sciences Journal 6 (1):18-35.
    Every school needs an advocate leader who can influence others to address issues, concerns, and problems that affect education, its quality, access, and the welfare of the stakeholders, especially that of the learners. This leader needs to subscribe to the redefined roles and nature of leadership. Advocacy leadership challenges educational leaders to take a progressive stance on pressing educational issues and problems. The next in line leaders need to awaken in themselves a specific advocacy and tune-in to this new (...)
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  3.  9
    A Retrospective Study of Technology Business Incubators in the Philippines.Karlo S. Sira, Carmelo V. Ambut, Naci John C. Trance, Rayjand T. Gellamucho, Richard C. De Leon & Gabriel M. Salistre Jr - forthcoming - Evolutionary Studies in Imaginative Culture:1485-1502.
    This study aims to assess Technology Business Incubators under (TBIs) the Higher Education Institution Readiness for Innovation and Technopreneurship (HeIRIT) with the auspices of the UPSCALE Innovation Hub, University of the Philippines-Diliman and the Department of Science and Technology-Philippine Council for Industry, Energy and Emerging Technology Research and Development (DOST-PCIEERD). Twenty TBIs were identified to give feedback and used as study participants using a questionnaire created by researchers based on the existing DOST metrics. The study's findings provided (...)
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  4. Philosophical Beliefs on Education and Pedagogical Practices Among Teachers in San Roque, Mabini, Bohol.Joshua Relator - 2024 - Psychology and Education: A Multidisciplinary Journal 17 (1):49-58.
    The philosophies of education serve as the guide of the teachers in handling the teaching-learning process. However, a belief will remain as a belief unless it is practiced. This study aimed to find the relationship between the philosophical beliefs and practices of the 30 teachers of the schools in San Roque, Mabini, Bohol - San Roque Elementary School and San Roque National High School, S.Y. 2019-2020. The study utilized a quantitative method descriptive survey research design. The research instrument used (...)
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  5.  40
    Critical Realist Action Research and Humanistic Management Education.Benito Teehankee - 2018 - Humanistic Management Journal 3 (1):71-90.
    In line with its institutional commitments and in order to strengthen the relevance of its business education program in addressing the persistent social challenges facing the Philippines, Mission University revised its Master of Business Administration curriculum in 2012. A core change in the curriculum was the incorporation of action research training and the requirement for graduation of implementing and defending an action research project. The introduction of action research, which is based on critical realist philosophy of science, was (...)
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  6. Introduction to Philosophy as Foundation to Modern Education.Mario C. Mapote - 2013 - Iamure International Journal of Literature, Philosophy and Religion 3 (1).
    Philosophy seems to be an obsolete human interest today not because it is really obsolete but because its development comes into the full and thus becomes hidden into the scene in the name of development itself. The trend of this so-called modern time is technological and practical. This is so because philosophy in the history of mankind reaches its second level i.e. the level of praxis, the practical level. Even the trend in education as well as in the field (...)
     
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  7.  22
    Extending lactational amenorrhoea in Manila: a successful breast-feeding education programme.Isidro Benitez, Julieta de la Cruz, Azucena Suplido, Virgilio Oblepias, Kathy Kennedy & Cynthia Visness - 1992 - Journal of Biosocial Science 24 (2):211-231.
    An experimental breast-feeding education programme conducted at the Philippine General Hospital in Manila demonstrated that women could be motivated to improve their breast-feeding practices and lengthen their period of lactational amenorrhoea in comparison to a control group. Mothers who participated in the programme breast-fed their babies more frequently, delayed the introduction of regular supplements, used fewer bottles and pacifiers and maintained night feeding longer than mothers who were not exposed to the positive breast-feeding messages. The programme was successful (...)
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  8.  10
    Fair Play Principle in Esports.Krzysztof Pezdek Physical Education & Wroclaw Sport Sciences - forthcoming - Sport, Ethics and Philosophy:1-14.
  9.  42
    Science education and moral education.Holmes Rolston - 1988 - Zygon 23 (3):347-355.
    Both science and ethics are embedded in cultural traditions where truths are shared through education; both need competent critics educated within such traditions. Education in both ought to be directed although moral education demands levels of responsible agency that science education does not. Evolutionary science often carries an implicit or explicit understanding of who and what humans are, one which may not be coherent with the implicit or explicit human self‐understanding in moral (...). The latter in turn may not be coherent with classical human self‐understandings. Moral education may enlighten and elevate the human nature that has evolved biologically. (shrink)
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  10.  34
    Filipinising colonial gender values: A history of gender formation in Philippine higher education.A. M. Leal R. Rodriguez - 2025 - Educational Philosophy and Theory 57 (1):79-90.
    The complicated colonial history of the Philippines impacts notions of gender in the Islands. Specifically, institutions with strong foreign roots, such as universities, maintain and challenge gender relations. The Philippines sees multiple gender issues in universities despite government-mandated gender mainstreaming policies for education (CMO-1), yet the influence of colonial values remains overlooked. This article contributes to philosophising Philippine education by providing the history of the country’s universities and their role in shaping gender relations. A threefold model of (...)
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  11. Postmodernism, science education and the slippery slope to the epistemic crisis.Renia Gasparatou - 2018 - Educational Philosophy and Theory 50 (14):1412-1413.
    Declarations of the death knell of postmodernism are rather quite commonplace. For its 50th anniversary, The Journal of Educational Philosophy and Theory conducted a philosophical experiment, asking philosophers of education to solicit a comment, argument or position concerning the so-called death of postmodern philosophy. Renia Gasparatou joined this experiment; in this short paper she suggests that, unfortunately, postmodernism is not dead enough!
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  12.  63
    Does Science Education Need the History of Science?Graeme Gooday, John M. Lynch, Kenneth G. Wilson & Constance K. Barsky - 2008 - Isis 99 (2):322-330.
    ABSTRACT This essay argues that science education can gain from close engagement with the history of science both in the training of prospective vocational scientists and in educating the broader public about the nature of science. First it shows how historicizing science in the classroom can improve the pedagogical experience of science students and might even help them turn into more effective professional practitioners of science. Then it examines how historians of science (...)
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  13. The Implications for Science Education of Heidegger’s Philosophy of Science.Robert Shaw - 2013 - Educational Philosophy and Theory 45 (5):546-570.
    Science teaching always engages a philosophy of science. This article introduces a modern philosophy of science and indicates its implications for science education. The hermeneutic philosophy of science is the tradition of Kant, Heidegger, and Heelan. Essential to this tradition are two concepts of truth, truth as correspondence and truth as disclosure. It is these concepts that enable access to science in and of itself. Modern science forces aspects of reality to reveal (...)
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  14.  12
    Science Education and Culture: The Contribution of History and Philosophy of Science.Fabio Bevilacqua, Enrico Giannetto & Michael R. Matthews - 2001 - Springer.
    This anthology contains selected papers from the 'Science as Culture' conference held at Lake Como, and Pavia University Italy, 15-19 September 1999. The conference, attended by about 220 individuals from thirty countries, was a joint venture of the International History, Philosophy and Science Teaching Group (its fifth conference) and the History of Physics and Physics Teaching Division of the European Physical Society (its eighth conference). The magnificient Villa Olmo, on the lakeshore, provided a memorable location for the presentors (...)
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  15. Science education in sociocultural context: Perspectives from the sociology of science.Gregory J. Kelly, William S. Carlsen & Christine M. Cunningham - 1993 - Science Education 77 (2):207-220.
     
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  16.  44
    Science education for citizenship: teaching socio-scientific issues.Mary Ratcliffe - 2003 - Philadelphia: Open University Press. Edited by Marcus Grace.
    Explores the teaching and learning of issues relating to the impact of science in society. This title offers practical guidance in devising learning goals and suitable learning and assessment strategies. It helps teachers to provide students with the skills and understanding needed to address these multi-faceted issues.
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  17.  41
    Science education, conceptual change and breaking with everyday experience.James W. Garrison & Michael L. Bentley - 1990 - Studies in Philosophy and Education 10 (1):19-35.
    Science educators and those who investigate science learning have tended, for good reason, to focus their attention on students' conceptual development, Such a focus is, however, too narrow to provide full and proper understanding of the complexities of original science learning. Recently developmental cognitive psychologists have called on the work of postpositivistic philosophers of science, especially Thomas Kuhn, to bolster their research into conceptual development in science acquisition. What these psychologists have not recognized is that (...)
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  18.  57
    The Philippine Higher Education Sector in the Time of COVID-19.Jeremiah Joaquin, Hazel Biana & Mark Anthony Dacela - 2020 - Frontiers in Education 5.
    This paper reports the policy-responses of different Philippine higher education institutions (HEIs) to the novel coronavirus, COVD-19 pandemic. It compares these responses with those made by HEIs in Indonesia, Thailand, and Vietnam. Publicly available data and news reports were used to gauge the general public’s reaction to these policies and how the Philippines’ responses fare with its Southeast Asian neighbors. The paper observes that despite the innovations made by Philippine HEIs in terms of alternative learning modes and (...)
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  19.  6
    Primary Science Education: A Teacher's Toolkit.Anne Forbes - 2023 - Cambridge University Press.
    Primary Science Education: A Teacher's Toolkit is an accessible and comprehensive guide to primary school science education and its effective practice in the classroom. Primary Science Education is structured in two parts: Planning for Science and Primary Science in the Classroom. Each chapter covers fundamental topics, such as: curriculum requirements (including the Australian Curriculum and Australian Professional Standards for Teachers); preparing effective learning sequences with embedded authentic assessment; combining science learning with (...)
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  20.  37
    Science education for democratic citizenship through the use of the history of science.Stein Dankert Kolstø - 2008 - Science & Education 17 (8-9):977-997.
  21.  32
    Bringing Inferentialism to Science Education.Edward Causton - 2019 - Science & Education 28 (1-2):25-43.
    In this article, I introduce Robert Brandom’s inferentialism as an alternative to common representational interpretations of constructivism in science education. By turning our attention away from the representational role of conceptual contents and toward the norms governing their use in inferences, we may interpret knowledge as a capacity to engage in a particular form of social activity, the game of giving and asking for reasons. This capacity is not readily reduced to a diagrammatic structure defining the knowledge to (...)
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  22.  65
    Postcolonial interventions within science education: Using postcolonial ideas to reconsider cultural diversity scholarship.Lyn Carter - 2006 - Educational Philosophy and Theory 38 (5):677–691.
    In this paper, I utilise key postcolonial perspectives on multiculturalism and boundaries to reconsider some of science education's scholarship on cultural diversity in order to extend the discourses and methodologies of science education. I begin with a brief overview of postcolonialism that argues its ability to offer theoretical insights to help revise science education's philosophical frameworks in the face of the newly intercivilisational encounters of contemporaneity. I then describe the constructs of multiculturalism, and borders (...)
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  23.  84
    Philosophy of science and science education.Derek Hodson - 1986 - Journal of Philosophy of Education 20 (2):215–225.
    Derek Hodson; Philosophy of Science and Science Education, Journal of Philosophy of Education, Volume 20, Issue 2, 30 May 2006, Pages 215–225, https://doi.org/1.
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  24. The science education reform movement: implications for social responsibility.John Ramsey - 1993 - Science Education 77 (2):235-258.
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  25. Science education as/for participation in the community.Wolff‐Michael Roth & Stuart Lee - 2004 - Science Education 88 (2):263-291.
  26.  31
    Science, Education and the French Revolution.L. Williams - 1953 - Isis 44 (4):311-330.
  27. Science education & the tightrope between scientism and relativism: a Wittgensteinian balancing act.Renia Gasparatou - 2023 - In Paul Standish & A. Skilbeck (eds.), Wittgenstein and Education: On Not Sparing Others the Trouble of Thinking,. Wiley. pp. 56-66.
    Mentalities like scientism and relativism idealise or belittle science respectively, and thus hurt science education and our literacy. However, it seems very hard to avoid the former mentality without sliding to the latter, and vise versa. I will suggest that part of what makes balancing between the two so difficult, is a representational account of meaning that science educators, like most of us really, usually endorse. Scientism then, arises from the assumption that ​there is such a (...)
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  28.  2
    Animals and Science Education: Ethics, Curriculum and Pedagogy.Michael P. Mueller, Arthur J. Stewart & Deborah J. Tippins (eds.) - 2017 - Cham: Imprint: Springer.
    This book discusses how we can inspire today's youth to engage in challenging and productive discussions around the past, present and future role of animals in science education. Animals play a large role in the sciences and science education and yet they remain one of the least visible topics in the educational literature. This book is intended to cultivate research topics, conversations, and dispositions for the ethical use of animals in science and education. This (...)
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  29.  92
    Science Education as Emancipatory: The case of Roy Bhaskar's philosophy of meta‐Reality.Michalinos Zembylas - 2006 - Educational Philosophy and Theory 38 (5):665–676.
    In this essay, I argue that Roy Bhaskar's philosophy of meta‐Reality creates the middle way to theorize emancipation in critical science education: between empiricism and idealism on the one hand, and naïve realism and relativism, on the other hand. This theorization offers possibilities to transcend the usual dichotomies and dualisms that are often perpetuated in some feminist and multiculturalist accounts of critical science education. Further, meta‐Reality suggests a radically new way to re‐visit the suspect notion of (...)
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  30.  32
    Modeling Theory in Science Education.Ibrahim A. Halloun - 2006 - Springer.
    This book is the culmination of over twenty years of work toward a pedagogical theory that promotes experiential learning of model-laden theory and inquiry in science.
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  31.  11
    Au risque de la science: Les conséquences éducatives et sociales du développement scientifique et technique. Annales 1999-2000.Jacques Arsac & Académie D'éducation Et D'études Sociales - 2000 - Sarment Editions du Jubilé.
    A la fin du XIXe siècle, le progrès des sciences et des techniques parut ouvrir une ère de bonheur où l'homme, délivré des tâches serviles et de toutes les superstitions, serait enfin le maître de la nature et de son propre destin. Mais le XXe siècle ne tint pas ces promesses. Certes, le progrès des sciences a fait reculer la mortalité infantile et allonger l'espérance de vie. Les nouveaux moyens de communication ont permis la circulation rapide d'informations autour du globe. (...)
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  32. Science education in Japan and the United States: Are the Japanese beating US at our own game?Anton E. Lawson - 1990 - Science Education 74 (4):495-501.
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  33.  14
    Science Education for Non-Majors: the Goal Is Literacy, the Method Is Separate Courses.David L. Adams - 1990 - Bulletin of Science, Technology and Society 10 (3):125-129.
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  34.  10
    Science education–an event staged on two stages simultaneously.Piotr Szybek - 2002 - Science & Education 11 (6):525-555.
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  35. European Science Education Research Association SERA is a new association formed at the European Conference on Research in Science Education held in Leeds, En.Philip Adey - 1996 - Science & Education 5:407-409.
     
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  36. Science education journals: From theory to practice.Luisa Viglietta - 1996 - Science Education 80 (4):367-394.
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  37.  18
    Science education for blind and visually impaired children.Janja Plazar, Cécil J. W. Meulenberg & Aksinja Kermauner - 2021 - Metodicki Ogledi 28 (1):167-190.
    Nastava iz prirodoslovnog područja danas se najčešće temelji na principima konstruktivizma prema kojima djeca trebaju biti aktivni sudionici procesa učenja i izgrađivati svoje znanje na temelju iskustva. Metode i sredstva korištena u nastavi prirodoslovnog područja moraju biti prilagođeni perceptivnim potrebama slijepe djece i djece s oštećenjima vida kako bi im se omogućilo aktivno sudjelovanje u procesu učenja. Cilj ovoga rada je opisati posljednje spoznaje o aktivnom i istraživačkom učenju slijepe djece i djece s oštećenjima vida u nastavi prirodoslovnog područja te (...)
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  38. Humanizing science education.James F. Donnelly - 2004 - Science Education 88 (5):762-784.
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  39. Science education in India.A. Kumar, D. P. Khandelwal & Simon George - 1987 - Science Education 71 (2):189-200.
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  40. International science education section—editorial policy statement.William W. Cobern & Section Coeditor - 1994 - Science Education 78 (3):217-220.
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  41.  30
    Science Education for Women in Antebellum America.Deborah Warner - 1978 - Isis 69 (1):58-67.
  42.  11
    Science Education: Principles.Joseph Agassi - 2020 - Foundations of Science 26 (3):553-558.
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  43.  12
    Humanistic Science Education in Japan and the United States --Notes and Observations from Two Recent Meetings.Marcel C. La Follette - 1979 - Science, Technology and Human Values 4 (3):36-40.
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  44. Science education, religious toleration, and liberal neutrality toward the good.Robert Audi - 2009 - In Harvey Siegel (ed.), The Oxford handbook of philosophy of education. New York: Oxford University Press.
  45.  57
    Appraising Constructivism in Science Education.Peter Slezak - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1023-1055.
    Two varieties of constructivism are distinguished. In part 1, the psychological or “radical” constructivism of von Glasersfeld is discussed. Despite its dominant influence in science education, radical constructivism has been controversial, with challenges to its principles and practices. In part 2, social constructivism is discussed in the sociology of scientific knowledge. Social constructivism has not been primarily concerned with education but has the most direct consequences in view of its challenge to the most fundamental, traditional assumptions in (...)
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  46.  41
    Skill Transmittance in Science Education.Brandon Boesch - 2019 - Science & Education 28 (1-2):45-61.
    It is widely argued that the skills of scientific expertise are tacit, meaning that they are difficult to study. In this essay, I draw on work from the philosophy of action about the nature of skills to show that there is another access point for the study of skills—namely, skill transmission in science education. I will begin by outlining Small’s Aristotelian account of skills, including a brief exposition of its advantages over alternative accounts of skills. He argues that (...)
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  47.  37
    Knowledge, Belief, and Science Education.Tiago Alfredo S. Ferreira, Charbel N. El-Hani & Waldomiro José da Silva-Filho - 2016 - Science & Education 25 (7-8):775-794.
    This article intends to show that the defense of “understanding” as one of the major goals of science education can be grounded on an anti-reductionist perspective on testimony as a source of knowledge. To do so, we critically revisit the discussion between Harvey Siegel and Alvin Goldman about the goals of science education, especially where it involves arguments based on the epistemology of testimony. Subsequently, we come back to a discussion between Charbel N. El-Hani and Eduardo (...)
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  48.  36
    Emile’s inquiry-based science education.Georgia Dimopoulou & Renia Gasparatou - 2024 - Journal of Philosophy of Education 58 (1):58-71.
    Over the past decades, science education researchers have suggested Inquiry-Based Science Education (IBSE) teaching interventions for science classes. In this article, we argue that IBSE’s basic principles can be traced back to Jean-Jacques Rousseau’s work Emile or On Education (1762). First, we will look at IBSE’s rationale. Then we will turn to Emile and outline Rousseau’s educational ideas concerning science education. We will show that Rousseau’s suggested practices for science education (...)
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  49. Science education: History at the edge.John L. Rudolph - 2011 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 42 (2):270-273.
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  50.  31
    Intercultural science education as a trading zone between traditional and academic knowledge.Jairo Robles-Piñeros, David Ludwig, Geilsa Costa Santos Baptista & Adela Molina-Andrade - 2020 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 84:101337.
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