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Critical thinking (CT) and English literacy are two essential 21st century competencies that are a priority for teaching and learning in an increasingly digital learning environment. Taking advantage of innovations in educational technology, this study empirically investigates the effectiveness of CT‐infused adaptive English literacy instruction using a Moodle system. A one‐group pretest–posttest design was employed to evaluate the effect of the treatment on students' acquisition of CT skills (CTS) and English literacy. A total of 83 students enrolled in two sections of a general studies course at a large university in Taiwan participated in the semester‐long experiment. Adaptive learning was achieved through the use of an online Moodle system for (1) online grouping (based on pretest English literacy scores), (2) delivery of specifically designed adaptive learning materials for each group and (3) provision of individualised feedback. CT‐infused language activities based on social constructivist principles were designed for each level of adaptive instruction, whereas direct instruction for fostering CTS was provided in class and practiced or reflected upon in groups. Empirical results demonstrate that CT‐enhanced adaptive English literacy instruction simultaneously improved students' CTS and English literacy and that students' online discussions developed towards higher levels of interaction. This paper illustrates an effective blended learning model for adaptive instruction and offers recommendations for designing CT‐infused language learning activities that can successfully foster both CT and English literacy outcomes.  相似文献   

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In this study, a blended synchronous learning environment (BSLE) was designed from pedagogical, social and technical perspectives. It was created for a group of master's students to attend lessons in the classroom and at the same time allow a few of them to join the identical sessions using video conferencing from different sites. The purpose of the study was to describe the guiding principles for pedagogical, social and technical designs and specific strategies applied, and identify the students' learning experiences and perceptions of the environment. Results showed that the BSLE could extend certain features of classroom instruction to the online students and they had equivalent learning experiences. They also liked the flexibility and convenience of attending lessons via video conferencing. This study further found that smooth and clear audio communication, redesign of certain learning activities and the quality of audio were crucial for the BSLE to be useful in practice.  相似文献   

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Informal learning experiences have risen to the forefront of science education as being beneficial to students' learning. However, it is not clear in what ways such experiences may be beneficial to students; nor how informal learning experiences may interface with classroom science instruction. This study aims to acquire a better understanding of these issues by investigating one aspect of science learning, scientific reasoning ability, with respect to the students' informal learning experiences and classroom science instruction. Specifically, the purpose of this study was to investigate possible differences in students' scientific reasoning abilities relative to their informal learning environments (impoverished, enriched), classroom teaching experiences (non-inquiry, inquiry) and the interaction of these variables. The results of two-way ANOVAs indicated that informal learning environments and classroom science teaching procedures showed significant main effects on students' scientific reasoning abilities. Students with enriched informal learning environments had significantly higher scientific reasoning abilities compared to those with impoverished informal learning environments. Likewise, students in inquirybased science classrooms showed higher scientific reasoning abilities compared to those in non-inquiry science classrooms. There were no significant interaction effects. These results indicate the need for increased emphases on both informal learning opportunities and inquiry-based instruction in science.  相似文献   

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Project-based learning engages students in problem solving through artefact design. However, previous studies of online project-based learning have focused primarily on the dynamics of online collaboration; students' knowledge construction throughout this process has not been examined thoroughly. This case study analyzed the relationship between students' levels of knowledge construction during asynchronous online discussions with respect to engagement in project-based learning. Graduate students' online postings in a course that comprised both project-based and non-project learning activities were coded and counted for knowledge construction, teaching, and social interaction moves using computer-mediated discourse analysis. Chi-square analyses found that the instructor's teaching discourse remained fairly consistent during project-based and non-project learning. Despite this, students' online discussions during project-based learning were characterized by more advanced levels of knowledge construction, where ideas were rationalized and integrated into plausible solutions. In contrast, students' online postings outside project-based learning rarely moved beyond the lower levels of information sharing and idea exploration. Based on these results, guidelines for designing and facilitating online project-based learning are presented and discussed.  相似文献   

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The purpose of this study was to investigate how two female students participated in science practices as they worked in a multimedia case‐based environment: interpreting simulated results, reading and writing multiple texts, role‐playing, and Internet conferencing. Using discourse analysis, the following data were analyzed: students' published web posters, Internet conferencing logs between American and Zimbabwean university students, and a focus group interview. Three constructs supported the development of these students' identities in practice: (a) multimedia cases creating emotional involvement; (b) authoring web posters, and role‐playing situated in cross‐cultural social networks; and (c) altruism associated with relevant global topics. The investigators argue that educators and developers of online learning environments consider social contexts, authoring, and opportunities for cross‐cultural interaction to support participation in science practices. © 2010 Wiley Periodicals, Inc. J Res Sci Teach 47: 1116–1136, 2010  相似文献   

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Within the field of higher education, there are situations where the learner is not well served in a classroom setting. Problematic issues such as scheduling, critical mass, time, pace and location have the potential to be counterbalanced by e-learning. Within this, the asynchronous nature of today's online learning environments and computer conferencing tools have popularly been claimed to offer tremendous benefits for learners who are willing to take responsibility for their own learning, to progress at their own pace, and interact with their online teacher to get immediate feedback on their learning and progress. Indeed, increasingly, educators today are very keen to exploit some of these new technologies for the benefit of their learners. It is argued in this article that there is a need to address the practice and research of asynchronous computer mediated conferencing. As conferencing tools become an increasingly common feature in students' experience, teachers need to have an understanding of how these tools facilitate the formation and maintenance of collaborative learning communities.  相似文献   

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During lectures, some students are continuously focused and attentive, whereas others tend to be bored, jittery, or inattentive. The same might happen when students are given student-activating assignments. Some students simply love one type of instruction, whereas others tend to resent it. Moreover, it is not the context itself, but the context as it is perceived by the student that affects learning. This study sets out to discover how students view instruction, based on their experiences with a particular setting, and aims to investigate the effects of “context-by-student” characteristics, such as students' course experiences, and the effects of “student-by-context” features, such as approaches to learning. The research has a quasi-experimental design and compares a lecture-based setting with student-activating teaching methods (i.e. self-discovery learning by means of authentic tasks with the help of a scaffolding approach); followed by one of four assessment methods: a multiple-choice test, a case-based examination, a peer assessment or a portfolio assessment. Data (N = 579) were collected by means of validated questionnaires, comprising the ASSIST and LSQ instruments and the course experience questionnaire. Results demonstrate that students' appraisal of the assessment method, their course experiences and the teaching methods that are dominant in the setting contribute positively to students' appraisal of instruction. Interestingly, this conclusion applies to both the lecture-based and the student-activating groups and to both conventional assessment methods and new modes of assessment. Moreover, deep approaches to learning, monitoring studying and/or organized studying, as well as preferences for courses that support understanding, positively affect students' appraisal of student-activating teaching methods. In short, both student-by-context and context-by-student features prove to be strong predictors of students' appraisal of instruction and, as a consequence, student learning.  相似文献   

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A comprehensive review of the literature was conducted to identify current practice on teaching science to students with intellectual disability (ID) and/or Autism Spectrum Disorder (ASD) in relation to two review questions—students' science outcomes and students' and teachers' experiences of the interventions. Six databases related to education, psychology, and science were systematically searched. A detailed protocol can be viewed on PROSPERO (registration number: CRD42017057323). Thirty studies were identified that reported on science interventions and 20 on student/teacher experiences of the interventions. The majority of the studies targeted science vocabulary and concepts. Other targets included inquiry skills and comprehension skills. The majority of the interventions used components of systematic instruction (n = 23). Five studies focused on self-directed learning and two on comprehension-based instruction. Students and teachers reported positive experiences of the interventions. The findings suggest that components of systematic instruction in particular might be effective in teaching science content to students with ID and/or ASD. Further research is needed to explore the effectiveness of identified interventions on teaching more complex science skills and with students with severe disabilities. Some limitations related to the search strategy are highlighted.  相似文献   

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The use of computer conferencing environments with student teachers and their supervisors was implemented during teaching practice and evaluated for four teacher education programs. Computer conferencing can be contrasted with the more common supervision methods, such as face-to-face conferences between the student teacher and the cooperating teacher, or between a group of student teachers and their supervisor at the teacher education institute. In our evaluation, we focused on participants' opinions of computer conferencing and their participation, activities and educational outcomes. During their field experiences, student teachers used computer conferencing primarily to exchange emotional support when they recognised similar experiences among their peers. It was less used for reflecting on their teaching and exchanging pedagogical content knowledge, including instructional methods and designs, classroom management strategies, general and instructional theories, and aspects of the teaching profession. This finding led to the conclusion that more attention should be paid to the structure of student teachers' learning environment, because more coaching and instruction of student teachers in their systematic and reflective use of computer conferencing leads to more varied and extensive communication  相似文献   

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The purpose of this study was to examine the relationships between teachers' reports on self-regulatory strategy use in mathematics instruction and individual motivational and affective factors. Two hundred and ninety-two Greek primary school teachers responded to two questionnaires assessing (a) the strategies they use themselves to plan, monitor and evaluate mathematics instruction and (b) the strategies they use to activate and enhance students' self-regulated learning in mathematics. Path analysis showed that teachers' self-regulation strategies both for their own teaching and for enhancing students' self-regulation in mathematics were predicted by their self-efficacy beliefs in teaching mathematics, the value they attribute to mathematics and their emotional commitment to their profession. Teachers' enjoyment of mathematics teaching did not directly predict their reported use of self-regulatory instructional strategies. The implications of the study are related to the development of teachers' training programmes in self-regulated instruction.  相似文献   

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"通信原理"课程存在理论知识难、实践性强、传统教学方式单一等问题。为了改善教学效果,在教学方法和手段上做了一系列改革和尝试,将"层次化实验教学法"、网络教学平台及虚拟实验平台引入到教学工作中,以此激发学生的学习兴趣,提高学生学习的主动性。经实践证明,教学改革取得了一定的成效。  相似文献   

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Fostering students' spatial thinking skills holds great promise for improving Science, Technology, Engineering, and Mathematics (STEM) education. Recent efforts have focused on the development of classroom interventions to build students' spatial skills, yet these interventions will be implemented by teachers, and their beliefs and perceptions about spatial thinking influence the effectiveness of such interventions. However, our understanding of elementary school teachers' beliefs and perceptions around spatial thinking and STEM is in its infancy. Thus, we created novel measures to survey elementary teachers' anxiety in solving spatial problems, beliefs in the importance of spatial thinking skills for students' academic success, and self-efficacy in cultivating students' spatial skills during science instruction. All measures exhibited high internal consistency and showed that elementary teachers experience low anxiety when solving spatial problems and feel strongly that their skills can improve with practice. Teachers were able to identify educational problems that rely on spatial problem-solving and believed that spatial skills are more important for older compared to younger students. Despite reporting high efficacy in their general teaching and science teaching, teachers reported significantly lower efficacy in their capacities to cultivate students' spatial skills during science instruction. Results were fairly consistent across teacher characteristics (e.g., years of experience and teaching role as generalist or specialist) with the exception that only years of teaching science was related to teachers' efficacy in cultivating students' spatial thinking skills during science instruction. Results are discussed within the broader context of teacher beliefs, self-efficacy, and implications for professional development research.  相似文献   

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This research study explored pre-service teachers' (PST) reflections of their student teaching experiences through AHA moments. Participants included 37 pre-service teachers enrolled in mathematics and science student teaching seminars. Qualitative methods were used to analyze PSTs' written and verbal responses to questions regarding AHA experiences. Four themes emerged related to PSTs' AHA moments: a greater awareness of PSTs' identity as teachers, the importance of knowing their students, the realization of inconsistencies in their own and their students' beliefs, and the importance of anticipating students' misconceptions. The potential for using an AHA moment assignment, as presented here, appears to support reflection among PSTs; however, it is not clear these PSTs used judgments and analysis, both integral elements of the reflective process.  相似文献   

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This paper examines BA Social Work students' experiences of developing their reflective skills to work with diverse communities using a technology‐enhanced blended learning design. In response to growing student numbers, new teaching and learning resources were developed to provide opportunities for students to engage in reflection‐in‐action at critical learning stages with the support of tutors and peers. It is suggested that access to online lectures, communications tools, a workbook (to record learning development) and online video case studies can encourage students to reflect‐on‐action, allowing them opportunities to reframe and reinterpret existing knowledge, values and beliefs to assess the impact these may have on their professional practice when working with diverse communities. To cater for an increase in student numbers, a rationale for the learning design is outlined, and the paper then explores the lessons learnt from the students' technology‐enhanced learning experiences.  相似文献   

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Students' questions play an important role in meaningful learning and scientific inquiry. They are a potential resource for both teaching and learning science. Despite the capacity of students' questions for enhancing learning, much of this potential still remains untapped. The purpose of this paper, therefore, is to examine and review the existing research on students' questions and to explore ways of advancing future work into this area. The paper begins by highlighting the importance and role of students' questions from the perspectives of both the learner and the teacher. It then reviews the empirical research on students' questions, with a focus on four areas: (1) the nature and types of these questions; (2) the effects of teaching students questioning skills; (3) the relationship between students' questions and selected variables; and (4) teachers' responses to, and students' perceptions of, students' questions. Following this, some issues and implications of students' questions for classroom instruction are discussed. The paper concludes by suggesting several areas for future research that have significant value for student learning.  相似文献   

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This article discusses the ePortfolio system for grades 9–12 at the Virtual Learning Academy Charter School (VLACS). ePortfolio implementation at VLACS developed from an Advisory course curriculum that supports students' journey toward becoming college, career, and citizenship ready. We provide a unique perspective for implementation in that VLACS is completely online. Drawing from experiences in brick-and-mortar schools, online instruction, and research on digital portfolio programs, we utilize online portfolios to build a virtual community and engage students in their learning. The article summarizes key components to ePortfolio implementation and highlights how ePortfolios enable VLACS students to both reflect on their experience as learners and demonstrate academic and professional competencies.  相似文献   

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This article describes how scaffolded instruction during whole-class mathematics lessons can provide the knowledge, skills, and supportive context for developing students' self-regulatory processes. In examining classroom interactions through discourse analysis, these qualitative methods reflect a theoretical change from viewing self-regulation as an individual process to that of a social process. This article illustrates how studying instructional scaffolding through the analyses of instructional discourse helps further the understanding of how self-regulated learning develops and is realized in mathematics classrooms. Qualitative methods, such as discourse analyses, and their underlying theoretical frameworks have great potential to help "unlock" theories of learning, motivation, and self-regulation through exploring the reciprocity of teaching and learning in classrooms.  相似文献   

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The purpose of this study was to examine the effects of open inquiry instruction with low achieving, marginalized high school students. Students with long histories of scholastic failure were asked to participate in question generation, experimental design, and argument construction as a part of their General Science course instruction. Videotapes were collected from daily science instruction, and entrance and exit instruction interviews were conducted using identical open‐ended problems. From this dataset, comparisons were made between students' entrance and exit interview responses representing change over time. Shifts in student responses coincided with renegotiated classroom norms for scientific discourse. Results are reported for five students in the form of assertions. Students' arguments were observed to shift toward those more consistent with the nature of the scientific arguments including: (1) students' tentativeness of knowledge claims, (2) students' use of evidence, and (3) students' views regarding the source of scientific authority. Implications are discussed for research and practice in light of the national standards' call for universal scientific literacy. © 2000 John Wiley & Sons, Inc. J Res Sci Teach 37: 807–838, 2000  相似文献   

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