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1.
A new special education strategy was launched in Finland by the Ministry of Education in 2007. The new Basic Act was enacted in 2010 and the new national core curriculum concerning three‐tiered support for pupils in 2011. Since the 1990s, teachers across Finland have participated in developing Finnish basic education towards greater inclusion. The goal of this study was to enhance understanding of the implementation of the Finnish educational reforms. In this study, teachers' perceptions of good inclusive teaching arrangements were analysed and compared with the theories of inclusive education. There is still a lack of information available on the implementation of inclusive education practices, and especially about teachers' experiences of teaching in inclusive classrooms. In 2010, basic education teachers (N = 327) in Lapland, Finland, were asked to describe their experiences and perceptions of inclusive teaching arrangements. The results indicated that teaching practices have become more diverse, flexible and differentiated, enabling teaching of diverse groups. More and more teachers preferred teaching in teams and planning their work together, showing that changes in schools change the teacher's profession too. In this study, a framework for inclusive schools was constructed through implementing the indexes of inclusion created by Booth and Ainscow.  相似文献   

2.
Knowing the subject matter of a secondary‐school science subject   总被引:1,自引:1,他引:0  
This paper examines the fundamental yet largely neglected distinction between school subjects and academic disciplines in the discourse on teachers’ specialized subject‐matter knowledge. It analyses and critiques the curricular positions embedded in that discourse in the light of five possible relationships between school subjects and academic disciplines. Invoking Dewey’s logical‐psychological distinction and research findings, the paper argues that the subject matter of a secondary‐school science subject instead of the subject matter of its parent academic discipline lies at the heart of secondary‐school science teachers’ specialized subject‐matter knowledge. Knowing such subject matter entails knowing five intersecting dimensions: the logical, the psychological, the pedagogical, the epistemological, and the sociocultural. Implications are drawn concerning theorizing about what secondary‐school science teachers need to know about the subject matter they are expected to teach, subject‐matter preparation for teaching, and the development of secondary‐school science curriculum materials.  相似文献   

3.
This study explored the effects of a modified argument-driven inquiry approach on Grade 4 students’ engagement in learning science and argumentation in Taiwan. The students were recruited as an experimental group (EG, n?=?36) to join a 12-week study, while another 36 Grade 4 students from the same schools were randomly selected to be the comparison group (CG). All participants completed a questionnaire at the beginning and end of this study. In addition, four target students with the highest and the other four students with the lowest pretest engagement in learning science or argumentation to be observed weekly and interviewed following the posttest. Initial results revealed that the EG students’ total engagement in learning science and argumentation and the claim and warrant components were significantly higher than the CG students. In addition, the EG students’ anxiety in learning science significantly decreased during the study; and their posttest total engagement in learning science scores were positively associated with their argumentation scores. Interview and observation results were consistent with the quantitative findings. Instructional implications and research recommendations are discussed.  相似文献   

4.
Student behavioral and emotional difficulties, often comorbid with each other and with learning difficulties and academic underachievement, have become an increasing concern to educational settings. This article first provides a conceptual framework for child assessment and highlights the role of behavior rating scales and personality inventories. This article reviews the role of behavior rating scales and personality inventories as a tool for screening students whose behavioral and emotional difficulties may affect their learning, their interpersonal relationships at school, and students who may pose significant management problems for teachers. The utility of specific uni- and multidimensional scales is reviewed relative to major behavioral and emotional difficulties shown by school students. Issues with using these tools are discussed. The Student Behavior Survey (SBS), a teacher-report scale, is described to illustrate the relative contributions of these scales.  相似文献   

5.
The first part of this study was carried out in a primary school in a rural part of Wales in the United Kingdom. All classrooms were equipped with interactive whiteboards (IWBs) linked to a teacher’s computer and six PCs for pupil use. Teaching through ICT was the prevalent culture in the school. Thirty year six pupils [aged 10–11 years] were selected at random from the final year cohort and were interviewed to determine their views about school science and their views about the teaching methods employed. The pupils moved to a medium sized secondary school where the teachers were beginning to develop their ICT skills and the availability of the computers was limited. The group was re-interviewed after 3 months, once they had settled in to their new school, and were again asked their views about school science and the way it was taught. While in the primary school, pupils expected to use ICT in every lesson, they enjoyed the way information was presented and they were interested in finding things out for themselves when given the opportunity. The lack of ICT in the secondary school caused some frustration, but this was mostly with the teaching of ICT, and the group remained predominantly enthusiastic about science. Those who were less keen on science indicated that it was a teacher factor rather than anything to do with the resources being used. In general the pupils particularly enjoyed the practical aspects of science lessons, something that they had not experienced in the primary school, which compensated for the relative lack of ICT in science teaching.  相似文献   

6.
Go to school     
Go to school去上学,交通工具真不少。Bus,bike,taxi,各自按需要选好。前面加by表动作,独有走路on foot。注释:要表达乘小车、打的、骑自行车、搭公交车、坐火车、乘轮船、坐飞机等,只要在这些交通工具前加“by”就行了,如by car,by taxi,by bike,bybus,by train,by ship,by pl  相似文献   

7.
8.
Background: Past studies have shown significant associations between students’ conceptions of learning science and their science learning self-efficacy. However, in most of the studies, students’ science learning self-efficacy has often been measured by a singular scale.

Purpose: Extending the findings of these studies, the present study adopted a multi-dimensional instrument to assess Taiwanese high school students’ science learning self-efficacy and investigate the relationships with their conceptions of learning science.

Sample: A total of 488 Taiwanese high school students (265 male and 223 female) were invited to participate in this survey.

Design and method: All the participants responded to the Conceptions of Learning Science (COLS) questionnaire regarding ‘Memorizing’, ‘Testing’, ‘Calculating and practicing’, ‘Increase of knowledge’, ‘Applying’ and ‘Understanding and seeing in a new way’ and the Science Learning Self-Efficacy (SLSE) instrument, including ‘Conceptual understanding’, ‘Higher-Order cognitive skills’, ‘Practical work’, ‘Everyday application’ and ‘Science communication’.

Results: The path analysis results derived from the structural equation modeling method indicated that, of all five SLSE dimensions, the ‘Understanding and seeing in a new way’ COLS displayed as a positive predictor, while the ‘Testing’ COLS was a significant negative predictor. The ‘Applying’ COLS item can only positively contribute to the SLSE dimensions of ‘Higher-Order thinking skills’, ‘Everyday application’ and ‘Science Communication’.

Conclusions: In general, students in strong agreement with learning science as understanding and seeing in a new way or the application of learned scientific knowledge are prone to possess higher confidence in learning science. However, students who consider learning science in terms of preparing for tests and examinations tend to hold lower science learning self-efficacy.  相似文献   

9.
Some people think that science is a set of facts that can be presented in plain and unadorned language. This fosters a belief that science has few stories. Actually, stories are very important in school science. In an examination of science textbooks, I have identified four different types of science stories which I call (a) heroic, (b) discovery, (c) declarative, and (d) politically correct. Each of these types of story promotes a particular set of philosophical assumptions about science. These assumptions are presented implicitly within the framework of the story as truths of science. This article specifically examines the philosophical assumptions that underpin heroic science stories and the implications of these stories in the discursive practices of the school science classroom. As teachers, we need to be critically aware of these assumptions, since they may be at odds with our beliefs about knowledge and our preferred teaching practices. © 1998 John Wiley & Sons, Inc. J Res Sci Teach 35: 175–187, 1998.  相似文献   

10.
I respond to Pike and Dunne by exploring the utilization of citizen science in science education. Their results indicate that students fail to pursue science beyond the secondary level, in part, because of prior educational experiences with science education. Students lack motivation to pursue degrees and careers in science because they feel science is not relevant to their lives or they are simply not good at science. With this understanding, the science education community now needs to move beyond a discussion of the problem and move forward with continued discourse on possible solutions. Science educators need to focus on developing connections between students’ everyday lives and science so that they will have tangible reasons for continuing with the lifelong learning of science. In this response, I will show that citizen science as an educational context holds much promise, respectively. Participation in citizen science projects moves scientific content from the abstract to the tangible involving students in hands-on, active learning. In addition, if civic projects are centered within their own communities, then the science becomes relevant to their lives because it is focused on topics in their own backyards.  相似文献   

11.
《师资教育杂志》2012,38(2):169-182
This paper reports on a study that investigated whether district continued professional development (CPD) sufficiently prepared teachers for their classroom practice. Analysis of CPD models used with primary‐school natural science teachers in a district in the Eastern Cape Province in South Africa was conducted. Findings indicated that the district CPD models used with the teachers did not address the various challenges and complexities within the district and therefore created several challenges that negatively impacted on the success of the new curriculum reforms. It is argued that successful CPD models should address both the internal and external factors that influence individuals' understanding of new reforms and their social practice. Thus, it is proposed that each district should develop a context‐based CPD model that captures and addresses issues that are likely to impact teacher learning and classroom practice in their particular context.  相似文献   

12.
This study investigated eighth-grade science students’ (13–14-year-olds) perceptions of their vocabulary knowledge, learning, and content achievement. Data sources included pre- and posttest of students’ perceptions of vocabulary knowledge, students’ perceptions of vocabulary and reading strategies surveys, and a content achievement test. Students’ perceptions of vocabulary knowledge were compared before and after instruction to see whether students believed they gained knowledge and the ability to explain categories of technical science terms. Students’ perceptions of vocabulary knowledge increased as a result of instruction. The participants had favorable views of the vocabulary and reading strategies implemented and believed the literacy approaches were important for their developing science knowledge. In addition, students’ content achievement was compared to a national data set. Students in this study outperformed a national data set on all content knowledge items assessed. Students’ perceptions of their knowledge and vocabulary and reading strategies were congruent with their content achievement. This study is one of the first to highlight the pivotal role students’ perception of vocabulary knowledge and vocabulary and reading strategies plays in science content learning.  相似文献   

13.
Emily Martin’s (Signs J Women Cult Soc 16(31):485–501, 1991) article, “The Egg and the Sperm: How Science Has Constructed a Romance Based on Stereotypical Male–Female Roles,” was published in Signs over 20 years ago. In this groundbreaking article, she discusses how gender roles are often projected onto reproductive biology, leading to the portrayal of eggs as passive and sperm as active. We were interested in seeing if many of her findings are still relevant today. We analyzed science textbooks from the middle school to the medical school level to determine if fertilization in human reproduction is described in gender-biased language regarding the sentence structure, amount of information provided for female and male processes/parts, and neutrality in describing female and male processes/parts. Although there has been much improvement, there is still a long way to go. Sexist language in scientific textbooks is troubling because it negatively affects both female and male students and undermines teachers’ ability to teach in an accurate and gender-neutral way.  相似文献   

14.
The decline in secondary school pupils’ attitudes towards science is well documented. However, recent research has shown that pupils’ attitudes to science appear to become fixed during their primary school years. This study investigated end of Key Stage 1 (Yr 2 (ages six to seven years)) and end of Key Stage 2 (Yr 6 (ages 10–11 years)) pupils’ attitudes to science, using Klopfer’s themes (1971 Klopfer, L.E. 1971. “Evaluation of learning in science”. In Handbook on summative and formative evaluation of student learning, Edited by: Bloom, B.S., Hastings, J.T. and Madaus, G.F. 559641. New York: McGraw‐Hill.  [Google Scholar]), through a paired activity and interview for Yr 2 pupils and a pre‐ and post‐Test of Science‐Related Attitudes questionnaire (adapted) for Yr 6 pupils. The questionnaire was analysed using the mean and chi square values and Cronbach’s alpha was calculated to test reliability. The results revealed that while Yr 2 pupils exhibit a thirst for knowledge and enthusiasm for science, Yr 6 pupils’ attitudes over the period of one academic year did not change: their attitude towards science was fixed. This insight raises some implications and responsibilities for primary school teachers.  相似文献   

15.
Curiosity is fundamental to scientific inquiry and pursuance. Parents are important in encouraging children’s involvement in science. This longitudinal study examined pathways from parental stimulation of children’s curiosity per se to their science acquisition (SA). A latent variable of SA was indicated by the inter-related variables of high school science course accomplishments, career interest, and skill. A conceptual model investigated parental stimulation of children’s curiosity as related to SA via science intrinsic motivation and science achievement. The Fullerton Longitudinal Study provided data spanning school entry through high school (N?=?118). Parental stimulation of curiosity at age 8 years comprised exposing children to new experiences, promoting curiosity, encouraging asking questions, and taking children to a museum. Intrinsic motivation was measured at ages 9, 10, and 13 years, and achievement at ages 9, 10, and 11 years. Structural equation modelling was used for analyses. Controlling for socio-economic status, parental stimulation of curiosity bore positive and significant relations to science intrinsic motivation and achievement, which in turn related to SA. Gender neither related to stimulation of curiosity nor contributed to the model. Findings highlight the importance of parental stimulation of children’s curiosity in facilitating trajectories into science, and relevance to science education is discussed.  相似文献   

16.
Transforming into an innovative school is one of the strategies schools apply when facing changes in a turbulent environment. In the first year of such a transformation these schools face an essential dilemma: how to facilitate changes without jeopardizing their environmental legitimacy. Examining an Israeli elementary school as an instrumental case study through two theoretical frameworks—institutional theory and resource dependence theory—we found two ways in which the school faces this dilemma. First it seals its technical core while demonstrating the innovation by symbolical practises, and second, it employs buffering and bridging tactics in its reciprocal relations with its various partners according to the nature of their expectations. We conclude that the question is not why innovation does not change a school, but why a school needs innovation in order to change and improve. Further research directions and implications for innovative schools are discussed.  相似文献   

17.
18.
In response to Meyer and Crawford’s article on how nature of science and authentic science inquiry strategies can be used to support the learning of science for underrepresented students, I explore the possibly of reconciliation between the cultures of school, science, school science as well as home. Such reconciliation is only possible when science teachers are cognizant of the factors affecting the cultural values and belief systems of underrepresented students. Using my experience as an Asian learner of WMS, I suggest that open and honest dialogues in science classrooms will allow for greater clarity of the ideals that WMS profess and cultural beliefs of underrepresented students. This in-depth understanding will eliminate guesswork and unrealistic expectations and in the process promote tolerance and acceptance of diversity in ways of knowing.  相似文献   

19.
This paper investigates the process of teacher change in a group of 8 primary school teachers during their exposure to a science, technology and society (STS) approach to teaching Science in Swaziland. The research aimed to establish the effect of support given to teachers in using the approach through a series of workshops, followed by a 5-week supported implementation of the unit ‘matter and energy’. An analysis of the way in which the STS approach impacted on the classroom practice of the teachers yielded 2 outcomes that were hierarchical. First, teacher understanding of the approach was observed to go through levels of unawareness, recognition of differences in approach, utilisation, personalisation and production. Second, the teachers' level of use of the STS approach was observed to have been affected by their levels of understanding, characterised by the following typologies: dropouts, strugglers, domesticators, succeeders and innovators. Some relationship between levels of understanding and typology of use was found, however, the level of understanding was not the exclusive determinant of typology of use. Only teachers reaching the utilisation level were able to use the innovation in a sustainable way, while those at the level of unawareness were able to become domesticators, adapting the innovation to their usual teaching approach.  相似文献   

20.
The No Child Left Behind Act (NCLB) is, quite possibly, the most comprehensive and systemic education reform act passed by Congress in the last 40 years. Given only 17 states ever fully complied with NCLB's predecessor, the 1994 Elementary and Secondary Education Act, it is only proper that legislators, policymakers, and researchers are now asking how we, as a nation, are doing implementing the law this time around? The Education Commission of the States (ECS) attempts, in the following article, to answer the question. The article covers information ECS has harvested and some of the insights ECS has gained since first examining state policy enactments related to NCLB. It provides information on the structure of the database, the methodology used to gather and verify the information, major findings of the tracking and reporting activity, specific gains made by category, key issues that merit immediate attention, and finally specific actions for consideration should federal officials and state policymakers be inclined to make changes to the law.  相似文献   

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