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1.
SATurated models of pupildom: Assessment and inclusion/exclusion   总被引:3,自引:0,他引:3  
Adopting a sociocultural theoretical framework and based on ethnographic data from two primary schools, this article seeks to answer the question: what meanings about inclusion and exclusion are encoded in school and classroom practices? It documents the (inclusionary and) exclusionary pedagogic processes that influence learning and children's participation in the learning opportunities on offer to them. From their analysis of observational, interview and documentary data, externally‐imposed and monitored regimes of assessment are what really matters in the school lives of the year six children in the authors' fieldwork schools. Assessment, narrowed to testing, defines the school day, the curriculum, the teacher's responsibilities, the pupil's worth, the ideal parent, and what counts as ability; it pushes towards a particular type of learning at the expense of other types. The article begins with a brief theoretical and methodological account of the study and a note on each participating school. It then suggests and discusses models of ‘SATurated pupildom' that are supported by the data. Versions of learning and ability as well as teacher subject positions that variously fit with the demands of summative assessments for accountability purposes, but that do not square with valuing diversity, are also discussed. The conclusion briefly considers the findings in the context of a macro‐culture that circumscribes what schools and teachers must value most and in relation to tensions within New Labour's push for standardisation on the one hand and inclusion and social justice on the other.  相似文献   

2.
Recent discussions about learning and teaching have been strongly influenced by phenomenographic theories which focus on students' experience of learning. This theoretical orientation underestimates the importance of the tutor/student relationship. Habermas's theory of communicative action provides a model of student-tutor interaction which holds out the prospect of an 'emancipatory' adult education. By comparing two courses, both aimed at HE staff and both using forms of negotiated assessment, this paper examines the possibility of approaching the Habermassian 'ideal speech situation'. The course participants' experience of negotiated assessment is evaluated against the declared philosophy of the tutors. Although many of the ideals of the tutors found confirmation in the experience of the participants, the paper explores the factors which influenced the greater success achieved by one of the courses in approaching the Habermassian ideal than the other.  相似文献   

3.
According to Piaget, a fundamental epistemological distinction must be made between the psychological and the epistemic subject. The epistemic subject is studied by the genetic epistemologist who charts development through a “common universal rationality, which develops,” whereas the psychological subject is studied by the developmental/cognitive psychologist by focusing on accidental contingencies surrounding particular people and their individual differences. The epistemic subject as compared to the psychological subject is an idealized abstraction, viz., that set of underlying epistemic structures common to everyone at the same level of development. The objective of this study is to investigate the degree to which investigators in science education conceptualize the difference between the epistemic and the psychological subjects. It is argued that just as the ideal gas law (based on the theoretical formulation of Maxwell and Boltzmann) provides a “general model” to which the real gases approximate under different experimental conditions, so we can consider (by abduction) the epistemic subject to be an “ideal knower” to which the real (psychological) subjects approximate to varying degrees. The difference between the epistemic and the psychological subjects, however, cannot be used as an “epistemological shield” in defense of Piagetian theory. Any test of the Piagetian theory must involve psychological or real subjects. Empirical testability, however, need not be equated to being scientific. An analogy is drawn between Galileo's idealization, which led to the discovery of the law of free-fall, and Piaget's epistemic subject. Research conducted in science education shows that at least for some critics the wide variations in the age at which individuals acquire the different Piagetian stages is crucial for rejecting the theory. It is argued that the real issue is not the “proportion of heterogeneity” but the understanding that Piaget, by neglecting individual differences, attempts to build a general model applicable across types of situations/subjects. The distinction between the epistemic and the psychological subjects is important not for defending Piaget's theory (which has serious theoretical flaws) but to understand epistemic transitions, for example, the one between Piaget's epistemic subject and Pascual-Leone's metasubject. It is concluded that failure to understand the distinction between the epistemic and the psychological subjects would lead to misconstruing the significance of our research findings and, what is more serious, to a lack of a historical perspective.  相似文献   

4.
This research examines factors influencing elementary science teacher learning as they participate in professional development with and enactment of educative curricula in comparison with learning following limited professional development and enactment of traditional curricula. Using a randomized cluster design (125 teachers and 2,694 students in 4th—5th grades) that met the What Works Clearinghouse standards without reservations, teacher learning was conceptualized using four outcomes. Data were analyzed using standard single-level multiple regression models and possible mediation models for the teacher outcomes were considered using piecewise multiple regression and path analytic approaches. Treatment group teachers experienced greater increases in content knowledge, views of science inquiry, beliefs about reform-based teaching, and teaching self-efficacy than comparison group teachers. The findings indicate that what teachers learn from the combination of professional development and teaching with educative curriculum varies according to what their knowledge and beliefs are on entering the experience. Surprisingly, high entry-level self-efficacy was associated not only with lower learning gains for the teachers, but also for their students. Finally, teachers' space science learning and that of their students are implicated as mediators of the positive effect of the professional development and educative curriculum enactment on teacher beliefs about reform science teaching. This work refines and extends a theoretical framework of teachers' participatory relationship with curricula.  相似文献   

5.

In this article, we wade through the muckiness of ethics in science, teaching, and teacher education, in the form of a generative metalogue. Grounded in Sara’s experience with preservice teachers learning about ethics through a case study of a high school dissection, we contend with what it means to shift away from colonial and masculinist binaries that produce particular moralistic orientations as 'wrong' or 'right.' We contemplate what it means to attempt to teach-think-feel with ethics as 'mucky,' without diminishing attention to relations of power in science and ethics. Through our own thinking–feeling process and grappling with the ways that science and education can be simultaneously oppressive and liberating in an unfinished, complex, and interdependent world (of difference), we propose: Thinking with muckiness is ethical praxis; drawing from our own embodied resources for ethical feelingthinkingdoing is central to this praxis; and (place-conscious) powered relations in science and education must be made explicit.

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6.
This article elaborates a presentation made upon reception of the E. L. Thorndike Career Achievement Award in Educational Psychology from Division 15 of the American Psychological Association. It considers how value aspects of motivation apply to efforts to develop students' appreciation for school learning. Currently, we have only limited knowledge about situations that afford opportunities for learning school content with appreciation of its value, how to exploit those affordances, or even their benefits to learners. We need to develop our theorizing about the benefits that students may derive from learning in school and determine what curriculum makers and teachers might do to foster students' appreciation for these benefits. Teaching for appreciation requires ensuring that what is taught is worth learning, explaining the value of this content and modeling its applications, and scaffolding learning by engaging students in activities that allow them to experience its valued affordances.  相似文献   

7.
Constructivism is at the heart of a pedagogical philosophy going back to Vico, whose view of the interrelationship of the arts and sciences sought to reconstitute the classical paideia. The Vichian idea that human beings can only know the truth of what they themselves have made has theoretical and practical consequences for Vico's pedagogy and view of the university. Vico's ideas on education are extended in the modern period by such thinkers as Cassirer, Piaget and Bateson. At the basis of Cassirer's pedagogical philosophy is his theory of the symbol, the symbol being a universal and transcendent modality in culture. The result of this unifying theory is that symbolism, which is pervasive across the disciplines, provides a moral and ethical means for integrating communication about teaching. Cassirer's thought is compatible with Piaget's, which emphasizes the pluralism of experience and the role of dynamic learning in the construction of meaningful order. Piaget's constructivism assumes that an operational bridge exists to link together the hard sciences, the human sciences, and the historical disciplines. This systems view of epistemological matters is similar in many respects to the one advanced by Gregory Bateson, which is explored in the paper's final section.  相似文献   

8.
This article examines the role elementary school children’s spontaneous metaphors play in learning science. The data consists of tape recordings of about 25 h from five different schools. The material is analysed using a practical epistemology analysis and by using Dewey’s ideas on the continuity and transformation of experience. The results show the rich and varied meanings that children put into their spontaneous metaphors. Their metaphors deal with facts as well as norms and aesthetics in relation to the science content taught and they influence learning both through what is made salient, as well as through their relations to the children’s possibilities of proceeding with their undertakings. Often one and the same metaphor encompassed all these cognitive, aesthetic and normative aspects at the same time. It is discussed how this rich meaning can be cultured in a productive way, and how the children’s spontaneous metaphors, with all their relations, can be used to enhance conceptual learning and also learning about the nature of metaphor use in science. Through their connection with various experiences of the children, it is also shown how children’s spontaneous metaphors have the potential to enliven and humanise the subject.  相似文献   

9.
This study identifies proficiency levels in pre-service physics teachers' pedagogical content knowledge (PCK) and reveals how teacher education can promote transitions into higher proficiency. Teacher education plays a fundamental role in supporting pre-service teachers' PCK development. Proficiency levels are a powerful source when evaluating this PCK development because they characterize what learners are likely to be able to know on a specific level. Previous research has presented a model of proficiency levels in pre-service physics teachers' PCK; however, evidence for the model's validity is still lacking. According to the Refined Consensus Model of PCK, factors such as teachers' content knowledge (CK), their teaching experience, and their beliefs about teaching and learning science promote PCK development. Thus, understanding how and when pre-service physics teachers' CK, teaching experience, and beliefs contribute to their proficiency can bring insights into how teacher education can promote PCK development. To address this issue, N = 427 observations of pre-service physics teachers were analyzed. Utilizing the scale anchoring procedure, four different proficiency levels in pre-service physics teachers' PCK were identified. Analyzing these proficiency levels showed that lower levels can be characterized as remembering content-unspecific knowledge, whereas higher levels encompass content-specific strategies to structure and elaborate lessons. Additionally, logistic regression models revealed that pre-service physics teachers' CK is crucial for an increase in PCK proficiency. However, transitions into higher levels of PCK additionally require teaching experience and adequate beliefs about teaching and learning. Thus, our proficiency levels can be used to bring insights into how proficiency in PCK can be supported during teacher education. For example, teacher education should provide courses focusing on the science curriculum and the assessment of student learning to promote pre-service physics teachers' progression in PCK.  相似文献   

10.
This is an action research study using an N of one (a case study) from the theoretical stance of symbolic interaction. This study of one male science education professor's experience teaching elementary science methods to females is told from two perspectives: the perspective of the professor and of a female coresearcher. In this study, the coresearchers present their perspectives of studying the gender difference between the male professor and his female elementary science method students and the attempts he makes to implement gender inclusive pedagogy. Discussion focuses on what each has learned through this study of examining the professor's practice as he takes action to improve the teaching and learning in his science method classes predominately populated by women. A key implication from this study is the assertion that male science methods professors have a special obligation to break the cycle of inequity in science teaching and learning for females by taking action to foster a female-friendly classroom climate and to encourage females to become engaged in class conversations and activities. However, professors should be aware that both female and male elementary teachers socialized in a system privileging men may not value efforts, or may even actively resist efforts to promote gender-inclusive science education during science methods. © 1998 John Wiley & Sons, Inc. J Res Sci Teach 35: 919–949, 1998.  相似文献   

11.
This article discusses a case for a different, socio-cultural way of looking at learning progressions as treated in the next generation science standards (NGSS) as described by Ralph Cordova and Phyllis Balcerzak’s paper “Co-constructing cultural landscapes for disciplinary learning in and out of school: the next generation science standards and learning progressions in action”. The paper is interesting for a number of reasons, and in this response I will identify different aspects of the paper and link the points made to my own research, and that of colleagues, as complementary perspectives. First, the way that the science curriculum is conceived as an expanding experience that moves from the classroom into the community, across subjects, and across time, links to theoretical positions on disciplinary literacies and notions of learning as apprenticeship into the discursive tools, or ‘habits of mind’ as the authors put it, that underpin disciplinary practice. Second, the formulation of progression through widening communities of practice is a strong feature of the paper, and shows how children take on the role of scientists through this expanding exposure. I will link this approach to some of our own work with school—community science partnerships, drawing on the construct of boundary crossing to tease out relations between school science and professional practice. Third, the demonstration of the expansion of the children’s view of what scientists do is well documented in the paper, illustrated by Figure 13 for instance. However I will, in this response, try to draw out and respond to what the paper is saying about the nature of progression; what the progression consists of, over what temporal or spatial dimensions it progresses, and how it can productively frame curriculum processes.  相似文献   

12.

In this paper, the role of modelling in the teaching and learning of science is reviewed. In order to represent what is entailed in modelling, a 'model of modelling' framework is proposed. Five phases in moving towards a full capability in modelling are established by a review of the literature: learning models; learning to use models; learning how to revise models; learning to reconstruct models; learning to construct models de novo . In order to identify the knowledge and skills that science teachers think are needed to produce a model successfully, a semi-structured interview study was conducted with 39 Brazilian serving science teachers: 10 teaching at the 'fundamental' level (6-14 years); 10 teaching at the 'medium'-level (15-17 years); 10 undergraduate pre-service 'medium'-level teachers; 9 university teachers of chemistry. Their responses are used to establish what is entailed in implementing the 'model of modelling' framework. The implications for students, teachers, and for teacher education, of moving through the five phases of capability, are discussed.  相似文献   

13.
ABSTRACT

Interdisciplinary sustainability programs are emerging globally, but little is known about the learning in these educational contexts. This qualitative case study examined undergraduates' experience in a Sustainability Semester, using the agency/structure dialectic as a theoretical lens. Before the semester, students' models of change for sustainability focused on individual actions. After two years, students' models identified systemic and structural barriers that constrained and enabled their agency as individuals. The discussion examines the “ripple effect” model of change that emerged in early interviews and considers how educators might use the agency/structure dialectic to help undergraduates move beyond individualistic models of social change.  相似文献   

14.
Gauld  Colin 《Science & Education》2004,13(4-5):321-332
The treatment of pendulum motion in early 18th century Newtonian textbooks is quite different to what we find in today's physics textbooks and is based on presuppositions and mathematical techniques which are not widely used today. In spite of a desire to present Newton's new philosophy of nature as found in his Principia 18th century textbook analysis of pendulum motion appears to owe more to Galileo's insights than to those of Newton. The following case study outlines this analysis and identifies some of its distinctive features as a resource for teachers wishing to refer to this period in the history of science.  相似文献   

15.
The purpose of this study was to investigate the beliefs of six experienced high school science teachers about (1) what is successful science learning; (2) what are the purposes of laboratory in science teaching; and (3) how inquiry is implemented in the classroom. An interpretive multiple case study with an ethnographic orientation was used. The teachers' beliefs about successful science learning were substantively linked to their beliefs about laboratory and inquiry implementation. For example, two teachers who believed that successful science learning was deep conceptual understanding, used verification labs primarily to illustrate these concepts and used inquiry as a type of isolated problem‐solving experience. Another teacher who believed that successful science learning was enculturation into scientific practices used inquiry‐based labs extensively to teach the practices of science. Tension in competing beliefs sets and implications for reform are discussed. ? 2004 Wiley Periodicals, Inc. J Res Sci Teach 41: 936‐960, 2004.  相似文献   

16.
This study investigated Emirates pre-service and in-service teachers' views about the nature of science. A questionnaire was developed and administered to 31 female pre-service science teachers, and 224 inservice chemistry teachers. The questionnaire covered five aspects of the nature of science identified by Palmquist and Finley (1997). These are: scientific theories and models; role of a scientist; scientific knowledge; scientific method; and scientific laws. The results indicated that Emirates teachers' views are neither clearly traditional nor clearly constructivist - they held mixed views about the nature of science. The study attributed the existence of the traditional views to historical reasons and the educational system. The presence of constructivist views was attributed to religious factors, where some of students' religious beliefs agree with some constructivist views. The study argued that the traditional view about the nature of science is in conflict with the teachers' religious beliefs. Teaching science in the Arab culture using the traditional view about science creates what Tobin (1996) called 'symbolic violence'. The study concluded that introducing science from the constructivist point of view and using what Jegede (1996) called 'collateral learning' would help to diminish such violence.  相似文献   

17.
This study examined early childhood educators' perceptions about nature, science, and environmental education. Preservice early childhood teachers (n = 195) and early childhood professionals currently practicing in the field (n = 162) rated the importance of providing specific nature/science experiences for young children, the importance of specific nature/science learning outcomes, and their confidence implementing specific activities. Research Findings: Consistent with our hypotheses, both professionals and students rated the curricular domain of nature/science as the least important for young children in terms of experiences and learning outcomes in comparison to other curricular domains. Similarly, both professionals and students reported that they were least confident implementing nature/science activities compared to activities in other curricular domains. Qualitative analysis of open-ended questions yielded themes related to definitions of nature, specific activities in and about nature that can promote children's learning and development, and what educators need to know and be able to do in order to be effective “nature educators.” Practice or Policy: Preservice and in-service teacher professional development would benefit from (a) the inclusion of content on nature, science, and environmental education, including the interrelatedness of human and natural systems; (b) a focus on place-based education and/or emergent curriculum; and (c) the provision of experiences in nature that help teachers to develop confidence implementing activities in nature. [Supplementary material is available for this article. Go to the publisher's online edition of Early Education & Development for the following free supplemental resource: Appendix A: Teacher Survey Questions.]  相似文献   

18.

A theoretical framework based on cognitive/developmental research is described. It is argued that science learning is a gradual process during which initial conceptual structures based on children's interpretations of everyday experience are continuously enriched and restructured. Conceptual change also involves increased metaconceptual awareness, cognitive flexibility, and theoretical coherence. Some of the implications of this research for the development of science curricula and for instruction are discussed. It is also argued that while cognitive/developmental research can provide us with important information about the process of learning science, it does not provide much information about the external, environmental variables that can facilitate cognitive performance and conceptual change. What is needed in the future is the development of a theory of learning that bridges science education and cognitive/developmental research. Such a theory should specify the mechanisms that can take an individual from one level of cognitive performance to the next and relate them to situational and cultural factors.  相似文献   

19.
This paper attempts to show the importance of the interface between research findings and classroom practice. The writer demonstrates how the judicious use of research has informed the decisions made about reading in three schools of which she has been Head teacher. Two key influences have been an understanding of child development, and what that says about all learning, and the messages about learning to read conveyed by the psycholinguists. The link is made between these influences on learning and the context of overall ‘school effectiveness'. The central tenet in practical terms is the concept of the ‘literate environment'. In defining this term she recognizes the key role of parents and teachers as both ‘models’ for reading and supporters in the learning process. The component parts of the literate environment are described at length before finally the suggestion is made that perhaps it is time for there to be a less mechanistic type of reading research.  相似文献   

20.
《学习科学杂志》2013,22(4):495-547
This article tells the story of the design of Learning by Design(tm) (LBD), a project-based inquiry approach to science learning with roots in case-based reasoning and problem-based learning, pointing out the theoretical contributions of both, classroom issues that arose upon piloting a first attempt, ways we addressed those challenges, lessons learned about promoting learning taking a project-based inquiry approach, and lessons learned about taking a theory-based approach to designing learning environments. LBD uses what we know about cognition to fashion a learning environment appropriate to deeply learning science concepts and skills and their applicability, in parallel with learning cognitive, social, learning, and communication skills. Our goal, in designing LBD, was to lay the foundation in middle school for students to be successful thinkers, learners, and decisionmakers throughout their lives and especially to help them begin to learn the science they need to know to thrive in the modern world. LBD has students learn science in the context of achieving design-and-build challenges. Included in LBD's framework is a set of ritualized and sequenced activities that help teachers and students acclimate to the culture of a highly collaborative, learner-centered, inquiry-oriented, and design-based classroom. Those ritualized activities help teachers and students learn the practices of scientists, engineers, and group members in ways that they can use outside the classroom. LBD is carefully crafted to promote deep and lasting learning, but we have learned that careful crafting is not enough for success in putting a collaborative inquiry approach into practice. Also essential are fostering a collaborative classroom culture in which students want to be engaged in deep learning and where the teacher sees herself as both a learner and a facilitator of learning, trusts that with her help the students can learn, and enthusiastically assumes the roles she needs to take on.  相似文献   

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