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Lee, Gyeong-Geon; Hong, Hun-Gi – History of Education, 2021
Comenius (1592-1670) has been widely studied in educational research, although limited work has addressed his thinking about science education comprehensively. His Pansophist philosophy led him to believe that science was a necessary subject for all ("Omnes"). Comenius emphasised useful scientific knowledge and core principles…
Descriptors: Science Education, Educational History, Philosophy, Science Curriculum
Haarsma, Deborah; Greuel, Brian; Lewis, Raymond – Christian Higher Education, 2019
The perceived conflict between science and Christianity continues to be a strong and prevalent narrative, both inside and outside the church. As three long-time science professors in Christian higher education, we have seen firsthand how this conflict orientation threatens both Christian faith and science education. National surveys confirm that…
Descriptors: Sciences, Christianity, Religious Factors, Science Teachers
Fleenor, Matthew C. – Global Education Review, 2018
David Galenson's bifurcation of creative types is well-founded across several strata of the traditional fine arts. According to Galenson, experimental innovators outwardly express their creativity at a later age after long periods of development. I reason that many of the students in undergraduate classrooms are experimental innovators, since…
Descriptors: Undergraduate Students, Physics, Majors (Students), Educational Innovation
Ingram, Neil R. – School Science Review, 2020
Conrad Hal Waddington (1905--1975) was an English biologist who was especially interested in the big (metaphysical) questions of life. His thinking has become part of the foundation of modern systems biology. This article applies his thinking to middle-years school biology curricula (for ages 11-16), to see if their approach to epistemic questions…
Descriptors: Middle School Students, Biology, Science Curriculum, Secondary School Science
Alsop, Steve; Gardner, Sam – Canadian Journal of Science, Mathematics and Technology Education, 2017
In this response essay we offer some critical comments on the nature of science (NOS) and thereby hopefully extend Hodson and Wong's (2017, this issue) argument concerning "understanding scientific practice." Drawing on selected theorising in science and technology studies (STS), we argue that NOS needs to take much more seriously…
Descriptors: Scientific Principles, Science Education, Philosophy, Science Curriculum
Dagher, Zoubeida R.; Erduran, Sibel – Canadian Journal of Science, Mathematics and Technology Education, 2017
The purpose of this commentary on Hodson and Wong's (2017, this issue) article is to clarify the merits of the expanded family resemblance approach (FRA) to science education, briefly alluded to in their article, and to discuss the implications of this approach relative to the question of demarcation they raise. In clarifying the merits of the…
Descriptors: Scientific Principles, Science Education, Scientific Concepts, Scientific Methodology
Hodson, Derek; Wong, Siu Ling – Canadian Journal of Science, Mathematics and Technology Education, 2017
Nature of science (NOS) is now a well-established focus of science education and a key element in defining scientific literacy. In recent years, a particular specification of NOS, often described as "the consensus view," has become very influential and has gained ready acceptance in many countries around the world as a template for…
Descriptors: Scientific Principles, Science Curriculum, Educational Assessment, Curriculum Development
Clary, Renee – Science Teacher, 2017
Although the age of the planet, the theory of biological evolution, and climate change are not "scientifically" controversial, students' familial and religious teachings can be perceived to be diametrically opposed to the science curriculum. However, there is a way for teachers to acknowledge alternative views and let students voice them…
Descriptors: Science Instruction, Student Attitudes, Reflection, Biology
Shaver, Ruth E. – ProQuest LLC, 2016
"I Wonder...Gaining Wisdom and Growing Faith Through Scientific Exploration" is an intergenerational science curriculum designed to be used in congregations. The goal of this curriculum and the theoretical work underpinning it is to counter the perception that people of faith cannot also be people who possess a scientific understanding…
Descriptors: Christianity, Science Education, Science Curriculum, Teaching Methods
Garik, Peter; Benétreau-Dupin, Yann – Science & Education, 2014
This is an editorial report on the outcomes of an international conference sponsored by a grant from the National Science Foundation (NSF) (REESE-1205273) to the School of Education at Boston University and the Center for Philosophy and History of Science at Boston University for a conference titled: "How Can the History and Philosophy of…
Descriptors: Conferences (Gatherings), International Programs, Science History, Philosophy
Østergaard, Edvin – Cultural Studies of Science Education, 2015
The question of how to foster rooting in science education points towards a double challenge; efforts to "prevent" (further) uprooting and efforts to "promote" rooting/re-rooting. Wolff-Michael Roth's paper discusses the uprooting/rooting pair of concepts, students' feeling of alienation and loss of fundamental sense of the…
Descriptors: Science Education, Phenomenology, Scientific Concepts, Models
Kaya, Ebru; Erduran, Sibel – Science & Education, 2013
In this paper, we trace the work of some philosophers of chemistry to draw some implications for the improvement of chemical education. We examine some key features of chemical knowledge, and how these features are relevant for school chemistry teaching and learning. In particular, we examine Laszlo's ("Foundations of Chemistry"…
Descriptors: Chemistry, Science Education, Scientific Principles, Epistemology
Talanquer, Vicente – Science & Education, 2013
Studies of the philosophy of chemistry over the past 15 years suggest that chemistry is a hybrid science which mixes scientific pursuits with technological applications. Dominant universal characterizations of the nature of science thus fail to capture the essence of the discipline. The central goal of this position paper is to encourage…
Descriptors: Chemistry, Educational Quality, Science Education, Science Curriculum
Koznjak, Boris – Physics Education, 2012
During the past few decades, a wide consensus has been reached in the community of science educators that it is almost unimaginable to conduct a quality science education without including the history and philosophy of science in some form in the science curriculum, and this is especially the case for physics education (Matthews 1994). However, in…
Descriptors: Physics, Science Curriculum, Historians, Textbooks
Vesterinen, Veli-Matti; Aksela, Maija; Lavonen, Jari – Science & Education, 2013
The aim of this study was to assess how the different aspects of nature of science (NOS) were represented in Finnish and Swedish upper secondary school chemistry textbooks. The dimensions of NOS were analyzed from five popular chemistry textbook series. The study provides a quantitative method for analysis of representations of NOS in chemistry…
Descriptors: Foreign Countries, Secondary School Science, Science Instruction, Chemistry