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1.
ABSTRACT

University educators have observed the concurrent problems of student attrition, higher than normal or desired failure rates and students struggling to complete assessable and non-assessable work, for instance, set readings. Recent public commentary has pointed to the widening participation agenda with its lowering of university entrance scores and consequent increase in university places as factors contributing to the problem: many students are entering university without the preparation or dispositions that helped their predecessors succeed. University teachers are at the coalface of this problem. These teachers do not set entrance scores or course caps but are tasked with supporting an increasingly diverse student population.

This article offers a case study: a university teacher’s encounter with a university’s Key Accountability Measures around failure and attrition, and offers a teaching response to this policy. In response to these changing conditions, The Reading Lab was designed as a large-group learning and teaching activity in the form of a series of interactive lectures devoted to the practices of reading. The Lab sessions sought to address a problem that many scholarship-of-reading researchers have communicated: our university students are often not resilient readers and as a result often do not complete set readings. This article evaluates what the Reading Lab achieved (and failed to achieve). For instance, if it is possible (in the current climate) that the failure and attrition rates might never radically improve, how can teaching and learning activities be more positively directed towards the student experience, for even minor gains in the inclusion and the retention of students?  相似文献   

2.
This paper investigates undergraduate students' application of theory in their analysis of problems presented in authentic leadership cases. Taking a phenomenographic research approach, the paper identifies two levels at which students understand ‘theory’: Level 1-Theory as knowledge acquired from books; Level 2-Theory as support for problem solutions. Only the students at Level 2 understanding achieved the highest learning outcome described by the Bologna Reforms. This result may be accounted for by the difference in the students' pre-conceived understanding of the events and relationships in the analysed cases. The phenomenographic assumption explains why the authentic cases are problematic. The high relevancy of the learning object – as an authentic case – may reduce the effect of variation, in this case the educational environment that is the mechanism for learning according to variation theory.  相似文献   

3.
ABSTRACT

In this case study, we first describe how teaching and research are linked in a master’s course on tissue engineering. A central component of the course is an authentic research project that the students carry out in smaller groups and in collaboration with faculty. We then explore how the students experience learning in this kind of discovery-oriented environment. Data were collected through a survey, reflective writing, and interviews. Using a general inductive approach for qualitative analysis, we identified three themes related to the students’ learning experiences: learning to navigate the field, learning to do real research, and learning to work with others. Overall, the students strongly valued learning in a discovery-oriented environment and three aspects of the course contributed to much of its success: taking a holistic approach to linking teaching and research, engaging students in the whole inquiry process, and situating authentic problems in an authentic physical and social context.  相似文献   

4.
ABSTRACT

Problem solving is perhaps the key characteristic that makes us human. Given the kinds of problems that we face in a competitive economy and society, the new generation of learners is ever more required to have problem-solving abilities. By drawing from the literature on technological pedagogical content knowledge, design thinking, general and specific methods of problem solving, and role of technologies for solving problems, this article highlights the importance of problem solving for future teachers and discusses strategies that can help them become good problem solvers and understand the requirements of teaching their students problem solving in technology-rich contexts. This article consists of two main parts. Part 1 focuses on strategies required to help preservice teachers to be better problem solvers, and Part 2 summarizes approaches to introduce preservice teachers to the methods of teaching problem solving. The strategies reviewed provide a tangible guidance for teacher education programs regarding how to promote future teachers’ problem-solving skills.  相似文献   

5.
6.
参照应用型卓越工程师的培养标准和知识能力的具体要求,采用PBL(Problem Based Learning)和CBL(Case Based learning)结合实际生产环境,以具体工程环境问题为驱动,构建Linux操作系统卓越课程教学模型。调动学生学习的主动性和积极性,让学生置身于企业实际生产环境,从实际生产中发现问题和解决问题,培养学生探索知识的兴趣,使得学习体验和学习成果并重。  相似文献   

7.
Background: This article describes the design and the evaluation of a student lab program on the topic of nanoscience and technology (NST), mainly focusing on Nanoscience and its applications. The program was designed for students in grades 8–10 and was part of a larger outreach program of the Collaborative Research Center ‘Function by Switching’ at Kiel University. The Model of Educational Reconstruction (MER) served as a framework for the research-based design of the student lab.

Purpose: We aimed to develop an authentic science activity in the area of NST in order to support scientific inquiry learning and to provide a deeper understanding of scientific topics.

Sample: A total of 154 secondary school students from grades 8–10 of seven different secondary schools participated in this study.

Design and methods: A pre-post questionnaire with six subscales on students’ perceptions of the Nature of Science (NOS), Scientific Inquiry (NOSI) and the involved scientists (NOST) in the area of nanoscience and nanotechnology was applied.

Results: Results show that the applied explicit and reflective approach embedded in the nanoscience content significantly improved the participating students’ perceptions of NOS, NOSI and NOST facets. After the lab visit, students’ answers corresponded to a more adequate perception of today’s science and scientists. Some gender differences in learning gains were also detected.

Conclusion: The study served its main purpose which was to investigate a well-balanced strategy to develop authentic out-of-school-learning environments with a focus on NOS/NOSI/NOST. Testing students’ perceptions of the nature of nanoscience provided insights into students’ worlds and served as feedback for the lab program. The outcomes of this study might help to better understand and further develop authentic (nano)science programs in out-of-school settings and science outreach programs.  相似文献   

8.
Research on understanding the full extent that an authentic science research experience engages students in how scientists think and act is sparse. ‘Learning-science-by-doing-science’ (LSDS) is an emerging self-guided process-learning model in postsecondary science education. It offers authentic science research opportunities that drive students to think and act like scientists. This study investigates the LSDS approach as a potential model for science learning at postsecondary level and aims to answer a main research inquiry – what are the students’ and teaching staff’s perceptions of students’ learning gains and the quality of their learning experiences in an authentic research environment within the LSDS model? To answer this question, data were collected from the students, alumni, instructors, teaching assistants and the program director via questionnaires, focus groups and interviews. Students’ and staff’s lived experiences and their perceptions on their authentic research experiences within the LSDS model were used to articulate the key attributes and stages of the LSDS model. The outcomes of this study can be used to help other science programs implement similar authentic research process learning approaches in their own contexts.  相似文献   

9.
The BIO2010 report provided a compelling argument for the need to create learning experiences for undergraduate biology students that are more authentic to modern science. The report acknowledged the need for research that could help practitioners successfully create and reform biology curricula with this goal in mind. Our objective in this article was to explore how a set of six design heuristics could be used to evaluate the potential of curricula to support productive learning experiences for science students. We drew on data collected during a long-term study of an undergraduate traineeship that introduced students to mathematical modeling in the context of modern biological problems. We present illustrative examples from this curriculum that highlight the ways in which three heuristics—instructor role-modeling, holding students to scientific norms, and providing students with opportunities to practice these norms—consistently supported learning across the curriculum. We present a more detailed comparison of two different curricular modules and explain how differences in student authority, problem structure, and access to resources contributed to differences in productive engagement by students in these modules. We hope that our analysis will help practitioners think in more concrete terms about how to achieve the goals set forth by BIO2010.  相似文献   

10.
Abstract

An increasing number of researchers are investigating the effect of students’ prior knowledge and beliefs on their development of scientific concepts. Much of this research is taking place within the framework of constructivism, and is attracting the attention of science educators in non‐western countries. This integrative research review has been undertaken to help researchers and practitioners to identify issues for further investigation and reflection. The results suggest that ‘cosmetic’ attempts to nationalize western science curricula in non‐western countries are likely to prove ineffective because the problem, from the students’ perspective, is one of poor ‘fit’ between their world‐views, language meanings and prior beliefs and those inherent in the subject. A constructivist paradigm seems to offer good prospects for both understanding the problem and formulating learning strategies in science education which are better suited to non‐western cultures. Nevertheless, constructivist pedagogies imported from the West should be examined for their cultural appropriateness.  相似文献   

11.
ABSTRACT

Context-based learning (CBL) is advocated as beneficial to learners, but more needs to be understood about how different contexts used in courses influence student outcomes. Gilbert defined several models of context that appear to be used in chemistry. In one model that achieves many criteria of student meaning-making, the context is provided by ‘personal mental activity’, meaning that students engage in a role to solve a problem. The model’s predicted outcomes are that students develop and use the specialised language of chemistry, translate what they learn in the immediate context to other contexts, and empathise with the community of practice that is created. The first two of these outcomes were investigated in two large-enrolment university chemistry courses, both organised as this CBL model, in which students were introduced to kinetic molecular theory (KMT). Sample 1 students (N1?=?105) learned KMT through whole-class kinaesthetic activity as a human model of a gas while focusing on a problem identifying substances in balloons filled with different gases. Sample 2 students (N2?=?110) manipulated molecular dynamics simulations while focusing on the problem of reducing atmospheric CO2. Exam answers and pre-/post-test responses, involving a new KMT context, were analysed. Students in Sample 1 demonstrated a stronger understanding of particle trajectories, while Sample 2 students developed more sophisticated mechanistic reasoning and greater fluidity of translation between contexts through increased use of chemists’ specialised language. The relationships of these outcomes to the contexts were examined in consideration of the different curriculum emphases inherent in the contexts.  相似文献   

12.
In this paper, we expose the unique challenges confronting graduate field-ecology students and the coping strategies they adopt to overcome such challenges. To do so, we used a qualitative (in vivo) research method that combines interviews, observations and open questionnaires with a group of five Israeli graduate students. The two major challenges that the students faced were the uncontrolled nature of field research (or complexity), and the nature of field setting, which isolated the students from authoritative guidance. In response to these challenges, the students developed a set of research skills which were expressed in this study by a series of three (metacognitive) strategies which we designated as ‘protocol-dominated’, ‘intermediate’ or ‘field-dominated’. In order to develop such research skills, our subjects rely upon declarative and procedural knowledge. In contrast to declarative knowledge, learned in coursework, procedural knowledge is learned and activated via the situated experience of implementing research in authentic field environments. We also found that fieldwork complexity imposes itself the minute the students step into the field; potentially, this can negatively impact students' motivation. However, as the students accumulate field experience and acquire the knowledge and skills needed to overcome the field's complexity, their motivation improves. Recognizing the unique learning components connected to field research will help novice students better cope with fieldwork challenges, as well as help their advisers in guiding them. This work also has implications for designing inquiry curricula in field sciences for university and high-school students.  相似文献   

13.
Because of these learners’ potential as future leaders, it is imperative that educators develop gifted students’ ability to identify and solve complex social justice problems. Nourishing students’ affective traits, including empathy for others, understanding of themselves, and the ability to connect to others in local and global society, will help students to recognize and seek out authentic problems. This article examines the nuances around the creative problem-solving process and how educators can infuse the curriculum with opportunities to develop and strengthen the skills students need to become engaged, real-world problem seekers, as we call it, and problem solvers. Through the combination of social justice issues and creative problem seeking, students can be motivated to engage with the community and promote positive change in the world.  相似文献   

14.
中小学机器人课程作为一门典型的工程教育类课程备受关注,如何在机器人教育中培养学生的工程设计思维和问题解决能力值得研究者思考。通过纠错任务解决机器人产品中的问题,能够促进学生理解机器人内部组成结构及功能,培养问题解决能力,获取更深层的学习体验。结合已有研究,文章尝试将纠错复原型教学模式应用于中小学机器人教育,通过感知与操作、拆分与分析、识别与诊断、测试与总结等步骤引导学生发现问题、思考问题并解决问题,旨在为机器人教育提供实践参考。  相似文献   

15.
Non-traditional students entering Higher Education (HE) via university-based foundation courses often encounter significant personal risk upon their return to study, and this can be exacerbated by a lack of understanding of the academic demands of HE at the point of entry.

As part of a wider qualitative, grounded theory study of the effect of diversity on the student experience on a university-based foundation course, which identified themes related to social interaction theory – competition, camaraderie and self-preservation – this research paper considers the theme of self-preservation and discusses Beck’s ‘individualisation’ theory and the different ‘risks’ evident among foundation course students upon their return to study. The risks highlighted in the narratives related to poverty of time, changing identity and relationships and failure. The effect that these risks had on the learning experience is then considered.

University-based foundation courses provide a successful route of entry for a diverse group of students returning to education, yet these courses are currently at risk due to the changing climate of HE. Based upon the findings in this study, recommendations are suggested to help encourage student interaction, reduce student fear of failure and increase their confidence, in order to assist non-traditional students with their transition to university-based foundation courses and their successful progression to degree course programmes.  相似文献   

16.

University mergers are a common practice in higher education systems around the world. Merger-related aspects such as the transformation of organizational and administrative structures, the impact on the internal funding allocation mechanisms, or changes in academic strategies and profiles, are well researched. However, the role of students in university mergers and their understanding of these processes are hardly investigated. The aim of this study was to identify how students are affected by merger processes. Through the conceptual framework, integrating university organizational identity theory and studies of the human side of mergers and acquisitions, this article encompasses six institutional cases in Russian higher education. These cases were selected to illustrate different scenarios of university mergers and accordingly to analyze the variety of student experience in changing universities. The project’s data included the results of document analysis, analysis of the merged universities’ representation in the public space, interviews and focus-groups with university administrators and with students who studied during the process of university merger. It highlights such perceived effects of mergers as anxiety and perceived unfairness due to post-merger changes, activization of we-they opposition between the students of merged universities, loss or transformation of organizational identity, and clash of university cultures.

  相似文献   

17.
This paper arises out of the transition from a PhD thesis on Heidegger's phenomenology to my attempts to come to terms with ‘becoming a teacher’. The paper will provide a phenomenological interpretation of being a teacher in relation to the question of an ‘authentic’ interpretation of teaching/learning and the possibility of an authentic interpretative praxis. I will argue that being a teacher is a phenomenon of human existence which can be interpreted as a possible way of being with authentic and inauthentic potentialities. This way of being is intrinsically linked to that of learning; of becoming human or becoming the authentic possibilities of being‐human. As such, the problem of being a teacher is primarily an ethical question (or a question of ?τηοσ—dwelling); of who we are as humans and of how being a teacher engages with the in‐formation of the becoming of students as authentic human beings. This then leads to the problem of how a phenomenological interpretation of education can be applied or lived; of authenticity in teaching/learning and the possibilities of authentic learning environments (educational dwelling).  相似文献   

18.
学科大观念是我国当前基础教育课程改革的基本理念之一。学科大观念居于学科的中心位置,是问题解决者对学科核心概念心理化的结果。从“教学设计”的角度来看,建构地理学科大观念的目的在于启发教师更好地帮助学生将地理概念与已有经验及真实世界建立联结。从这个角度出发,提出中学地理学科大观念建构路径的五环节操作性框架:分析地理情境、提炼地理核心概念、与经验建立联系、叙写地理学科大观念和发展地理学科大观念的内容进阶。这一操作性框架可以用于指导中学地理教师建构适合自己教学实践的地理学科大观念。  相似文献   

19.
If students are to successfully grapple with authentic, complex biological problems as scientists and citizens, they need practice solving such problems during their undergraduate years. Physics education researchers have investigated student problem solving for the past three decades. Although physics and biology problems differ in structure and content, the instructional purposes align closely: explaining patterns and processes in the natural world and making predictions about physical and biological systems. In this paper, we discuss how research-supported approaches developed by physics education researchers can be adopted by biologists to enhance student problem-solving skills. First, we compare the problems that biology students are typically asked to solve with authentic, complex problems. We then describe the development of research-validated physics curricula emphasizing process skills in problem solving. We show that solving authentic, complex biology problems requires many of the same skills that practicing physicists and biologists use in representing problems, seeking relationships, making predictions, and verifying or checking solutions. We assert that acquiring these skills can help biology students become competent problem solvers. Finally, we propose how biology scholars can apply lessons from physics education in their classrooms and inspire new studies in biology education research.  相似文献   

20.
Angela Chapman and Allan Feldman (2016) conducted a study that aimed to exam how a group of diverse urban high school students were affected by the participation in a contextually based authentic science experience. The analysis of all data led the authors to conclude that the experience of authentic science positively influenced the science identity of students and promoted a shift in perceptions from stereotypical to more diverse views of scientists. For the purpose of this forum paper, we concentrated on the unexpected results of Hispanic students in the IAS instrument. In the authors’ interpretation, Hispanic students were classified as non science identities because they do not feel recognized as a particular kind of student in that school, being possibly more marginalized than other students. We tried to expand the discussion bringing the contribution of a sociocultural approach of science construction and of science identity to enrich some of the issues involved. Our concise analysis does not allow conclusions about the Hispanic students’ results, but we believe it helped to understand sociocultural problems involved in their science identity and to reveal the inequality in science production as one of these problems.  相似文献   

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