scholarly journals Comparative study of scientific literacy: Indonesian and Thai pre-service science teachers report

Author(s):  
R. Ahmad Zaky El Islami ◽  
Prasart Nuangchalerm

The changing world needs literate citizens to live with creative society. This study aimed to compare science literacy of novice science teacher students from Thailand and Indonesia. Panel participants were 95 of Thai and 71 of Indonesian novice science teacher students who have been studying in the 1st and 2nd year of study in bachelor degree of science education programme. Data were collected by employed science literacy inventory; it was used for asking four components: content of science, context of science, science process, and scientific attitude based on local wisdom of Baduy’s society. Participants are freely considered in their perception. Results showed that Thai novice science teacher students had slightly better score than those Indonesian novice science teacher students, but statistical testing is not showed the differences. The future study is required to more investigation of how they promote science literacy in their school practicum.

2021 ◽  
pp. 209653112096678
Author(s):  
Guihua Zhang ◽  
Yuanrong Li ◽  
George Zhou ◽  
Sonia Wai-Ying Ho

Purpose: The Nature of Science (NOS) is an important component of scientific literacy. Science teachers’ Views of the Nature of Science (VNOS) directly affect their teaching behaviors. Therefore, it is of great significance to explore science teachers’ VNOS and find ways of improvement. This study was designed to comparatively investigate preservice science teachers’ VNOS between China and Canada. Design/Approach/Methods: The study employed a survey design to explore how Chinese and Canadian preservice science teachers understood the seven different aspects of NOS. Findings: Data showed that preservice science teachers in China and Canada both hold a modern view about science education. The level of Chinese and Canadian participants’ understanding of NOS was above the relatively naive level. Chinese teachers had better macro-understanding toward science education but their micro-mastery was insufficient. While the Canadian participants had a better understanding of the NOS than their Chinese counterparts. Originality/Value: Based on the research results and the experience of science education and teacher education in Canada, we suggested that there is a need to reconstruct the preservice science teacher education curriculum in China and promote the transformation in the science teacher educational system.


2019 ◽  
Vol 18 (5) ◽  
pp. 732-747
Author(s):  
Jianqiang Ye ◽  
Dimei Chen ◽  
Lingxin Kong

In order to explore the development of research of science teacher(RST), 904 articles from the Web of Science (WoS) core set based on bibliometric methods through R software were analyzed in this research. Specifically, it examined the co-occurrence relations of countries/regions, major journals, most cited references, and hot keywords from the macroscopic, mesoscopic and microscopic level of RST. The results showed that the core strength of RST is mainly from traditional industrialized countries such as the United States, Australia, and Britain. And some top journals in science education (such as Journal of Research in Science Teaching, Science Education) has to pay more attention on RST, it may also appeal to lots of top journals in general teacher education (such as Journal of Teacher Education, Teaching and Teaher Education). The research on science teachers was guided by several educational theories about teacher research, such as the teacher epistemological belief, reflective practice, and PCK. Moreover, theories in science education such as scientific literacy, scientific conceptual change also becomes the theoretical basis for science teachers’ teaching practice and scientific inquiry instructing. The knowledge, key competences, dispositions, and professional development of science teacher are the main keywords and hot topics in the field of RST. Keywords: science teacher research, bibliometric analyses, Web of Science.


10.29007/72c2 ◽  
2020 ◽  
Author(s):  
Maria Castello ◽  
Virginia Pellegrino ◽  
Daniel Argente ◽  
José Gomez-Marquez ◽  
Urs Gaudenz ◽  
...  

Global attempts to renew scientific education aim to stop the decline of young people's interest in science and technology, and to promote the development of citizens' scientific literacy for sustainable development. Among other changes, these aims require the adaptation of K12 Biological Science Teacher’s training to meet the new objectives.Scientific literacy involves knowing science and how knowledge is developed and validated, recognizing the interactions between science, technology and society, that is, the nature of science (NoS; a set of meta-scientific contents that encompass historical, epistemological and sociological aspects of science with great value for scientific education). It also involves grasping of cognitive skills underlying critical thinking (CT; a set of cognitive abilities, including self-regulation and metacognitive processes) and creative problem solving. Therefore, scientific literacy contributes to making informed decisions, facilitating the participation of citizens in situations and dilemmas of scientific tenor.In addition, CT is closely related to the performance of educators in their professional work. Particularly, in the teaching of science, CT skills favour and enhance the learning of concepts and theories linked not only to science but also to the NoS.Considering the current conditions of middle-higher K12 Biological Science Teachers’ formation and classrooms´ limitations in our country and the region, we propose a pilot project aiming to promote the transformation of initial teachers´ training, seeking to improve the development of CT skills and to deepen NoS comprehension. It will involve the immersion of K12 Biological Science Teacher students in Biological Science Living Physical and "mirror" Virtual Reality Laboratories. These laboratories will be equipped with "do it yourself" (DIY), "do it with others" (DIWO) and "bring your own device" (BYOD) technologies for the implementation of research-type activities framed in the philosophy of the "fabrication laboratories". The virtual platform will also comprise a library with didactic resources under permissive licenses to ensure a broader impact.Within these environments, K12 Biological Science Teacher students will engage in the creation of didactic units involving problem solving and knowledge building in parallel to deeper understanding of scientific processes. We also hope to promote the creativity and innovation of the participants, and the appropriation of DIY/DIWO/BYOD and virtual reality technologies as educational resources in the classroom and everyday life.Thanks to the virtual environment, this approach would also allow to reach both National and International K12 Biological Science Teacher students and graduate Biological Science Teachers. Considering the universal access to the Internet and free access to educational platforms in several countries, we also hope to impact on the non-formal and informal Biological Science education and contribute to achieving quality education for all (Objective # 4 of the Agenda for Sustainable Development 2030, UNESCO) beyond geographical and cultural barriers.This pilot project will be implemented by an interinstitutional, multidisciplinary and international team. It will capitalize on confluent groups´ previous experience and complementary strengths in Science didactics (particularly biology), engineering, arts, virtual reality, fabrication, as well as open hardware and open software culture.The experimental approach corresponds to a quasi-experimental pre-test/post-test design with control groups, and formative and summative evaluation.As a result of the implementation of this educational innovation we expect to contribute to the improvement of Biological Science Teachers students´ CT skills and promote their active involvement in practical activities that should enhance their professional activity.


Author(s):  
Betzabé Torres-Olave ◽  
Paulina Bravo González

AbstractIn this paper, we discuss the role of dialogue in two layers; first, in relation to two self-organised communities of science teachers in which we participated and, second, our process of coming together during our PhDs to analyse these communities, a dialogue about the dialogue. Regarding the first layer, there is much to learn from science teachers and science teacher educators when they are organised in sites of learning that can be spaces of hope, beginnings, and becoming, as is illustrated in the case of these two self-organised communities. Regarding the second layer, we discuss the value of dialogue and the possibilities it offers to develop ideas for science education in a way that might be democratising, emancipatory, and offering counter-narratives in a neoliberal Chile. By engaging in this dialogue revisiting the practices of our communities, we gained a sense of agency within the field of science education. However, we realised that we need to move towards a critical view within our communities, and more contextual and transformative science education by translating these sites of hope to our educational praxis today. For us, this relates both to developing a collective view of how to make science education provide pedagogical conditions and experiences for critical and engaged citizenship and thinking how we can act and engage with different settings in solidarity. One way of moving towards this is by developing a political knowledge of our disciplines through a collective scientific conscientisation. Our communities are the departure points to achieve this.


1990 ◽  
Vol 258 (6) ◽  
pp. S3 ◽  
Author(s):  
R L Malvin

By all measures attempted, scientific literacy of the American public is sadly wanting. The vast majority of our secondary school children and adults have no knowledge of most of the basic terms or concepts of science. The reasons for this shortcoming are many but prominent among them are sadly deficient texts, teachers untrained in the subject matter they teach, and college and university scientists who divorce themselves from the problem, although probably deploring it. Our institutions are no aid. They reward scientific productivity (read: number of papers published per year and research dollars), not teaching. Some suggested cures are production of better texts, training of science teachers in the field in which they teach, and, most importantly, involvement of scientists in the process. We must be willing to spend some of our time with secondary school pupils and their teachers. All will gain from the experience.


Author(s):  
Azlin Zaiti Zainal

In discourses of 21st century learning, there is an increasing emphasis on interdisciplinary learning. In this chapter, the author first looks at previous research on interdisciplinary teaching and learning. Next, the concept of scientific literacy and how this is related to language will be discussed. The intersections between the teaching of science literacy and language teaching and learning will also be explored. This is followed by research on the use of technology in science education and how technology can enhance science literacy.


2012 ◽  
Vol 5 (2) ◽  
pp. 185-199 ◽  
Author(s):  
Bo Dahlin ◽  
Edvin Østergaard ◽  
Aksel Hugo

This paper is a phenomenological critique of some of the basic notions informing much of the researchin and practice of science education (SE) today. It is suggested that the philosophical grounds of S Eare in need of three “reversals of primacy”: the ontological primacy of the perceptual lifeworld must replace that of abstract scientific models; the epistemological primacy of attentive practice must replace that of conceptual cognition; and the pedagogical primacy of cultivating competencies must replace that of imparting ready-made knowledge. Four arguments for a phenomenological approach to SE are presented and some consequences for the training of science teachers are discussed; some of which are already being implemented at the science teacher education of the Norwegian University of Life Sciences.


2020 ◽  
Vol 19 (4) ◽  
pp. 659-674
Author(s):  
Ana Valdmann ◽  
Jack Holbrook ◽  
Miia Rannikmäe

This study seeks to put forward a justified definition for the concept of Teacher Ownership, and establishes levels of science teacher ownership, based on a hierarchy of categories, using phenomenographic analysis. Such ownership is based on a meaningful science teacher internalisation of a motivational context-based teacher approach, established via a prior CPD programme. In so doing, the study distinguishes between teachers’ self-efficacy levels attained at the end of the CPD and teacher ownership indicating the capability of propagating the desired teaching to students and other teachers. The phenomenographic analysis, based on semi-structured interviews, is carried out with 10 science teachers, 3 academic years after the administered CPD programme. From an analysis of perceptions, 3 distinct categories of sustainable science teacher ownership, based on 5 distinct teaching dimensions, reflect variations in orientation of teacher ownership. The main conclusions are that sustainable teacher ownership differs from terms such as a sense of ownership, towards ownership and self–efficacy and that, in this study, teacher ownership can be described as being exhibited by the science teachers in paradigmatic, experiential and emotional ownership categories. Keywords: phenomenographic analysis, self-efficacy, teacher ownership, teacher ownership categories.


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