927 resultados para Student-centred learning


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This paper presents the development of a fish-like robot called Bro-Fish. Bro-Fish aims to be an educational toy dedicated to teaching mechanics, programming and the physics of floating objects to youngsters. The underlying intention is to awaken the interest of children for technology, especially biomimetic (biologically inspired) approaches, in order to promote sustainability and raise the level of ecological awareness. The main focus of this project was to create a robot with carangiform locomotion and controllable swimming, providing the opportunity to customize parts and experiment with the physics of floating objects. Therefore, the locomotion principles of fishes and mechanisms developed in related projects were analysed. Inspired by this background knowledge, a prototype was designed and implemented. The main achievement is the new tail mechanism that propels the robot. The tail resembles the undulation motion of fish bodies and is actuated in an innovative way, triggered by an elegant movement of a rotating helicoidal. First experimental tests revealed the potential of the proposed methodology to effectively generate forward propulsion.

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Se describen, diversos portales educativos sobre alfabetizaci??n informacional (ALFIN) elaborados desde la Universidad de Granada: e-COMS y ALFIN-EEES, de car??cter gen??rico y transversal, y ALFAMEDIA e IMATEC, de naturaleza espec??fica y aplicada. Enmarcadas en el Espacio Europeo de Educaci??n Superior, son iniciativas pioneras en el ??mbito de las ciencias de la biblioteconom??a y la documentaci??n en Espa??a. Los portales han sido elaborados teniendo en cuenta las premisas metodol??gicas propulsadas desde la convergencia europea en cuanto al aprendizaje por competencias centrado en el estudiantado. Al mismo tiempo se alinean con el compromiso de la Red Espa??ola de Bibliotecas Universitarias (REBIUN) para promocionar la creaci??n de integraci??n de materiales docentes ??tiles, para promocionar la ALFIN en el estudiantado y participar en el aprendizaje aut??nomo.

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Most research concludes that asynchronous activities increase the amount of student participation and improve the student-centred learning atmosphere. This raised concerns when students didn’t access discussion sites as part of their postgraduate teaching of English language studies. This study focused on the perception of a group of on-campus and off-campus postgraduate TESOL students (both native and non-native speakers of English) towards two different kinds of asynchronous activities: email and online discussion. The result showed that students preferred the email to the discussion though a large majority of both NS and NNS supported the use of online discussion as a learning tool. The reasons given included time as well as privacy, which, unexpectedly, was an issue raised mostly by native speakers of English.

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This paper commences with themes discussed in two papers, “An
assessment strategy to help forestall plagiarism problems” (Kennedy,
2004) concerning how assessment strategies can be structured to
minimise plagiarism and “Paradigm shift: From traditional to on-line
education” (Gallie & Joubert, 2004) concerning the shifting focus
between teacher-centred and student-centred learning. The themes
raised are examined from the perspective of post-graduate course
delivery to predominantly international students within the context of
recognition of the specific needs of the student body. The themes are
then extended by considering the outcomes of a case study that
adapted methods of assessment with a view to improving outcomes
and reducing plagiarism and cheating.

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An exploration of a distinctive inter-disciplinary, problem-based, team-based and student centred learning environment: the Inter-disciplinary Industrial Project. Goal-free evaluation shows the IDIP successfully prepares students for the workplace. Case study narratives and outcome oriented conceptual models elaborate a Grounded Theory of Team-based Problem Solving.

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Purpose – The purpose of this paper is to examine and reflect on current assessment practice in a large undergraduate accounting programme delivered both in Australia and offshore, from the perspective of academics in their first semester at a “new-to-them” university.

Design/methodology/approach –
The changing higher education environment and the reality of assessment in the current context are considered, as they raise a number of important issues around assessment practice. Some of the often cited literature linking teaching, learning and assessment, including student-centred learning and Confucian heritage culture, is also discussed. A reflective approach is used where Säljö's five categories of student learning are used as the basis for informed reflection of the assessment used in the “new” academics' first semester at the university. The use of empirical evidence to test these reflections would be the next step in this scholarly approach to teaching and learning.

Findings – The reflections reveal a disparity between reality and the ideal in relation to assessment practice. Issues regarding timely feedback to students and timing of assessments can result in summative assessment when it has the potential to be formative. This paper has provided an opportunity for “new” academics to engage with the higher education literature early in their careers.

Originality/value – This paper is a resource for academics beginning to engage with the higher education literature around assessment, teaching and learning and can also be used to inform and improve the teaching and learning practices of many academics in higher education.

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Final report of the the Active Learning in University Science (ALIUS) project.

This project aims to establish a new direction in first year chemistry teaching – away from didactic teaching methods in large lecture style teaching to more active, student centred learning experiences. Initially six universities have been involved in practice-based innovation: Charles Sturt University (NSW), The University of Sydney (NSW), Curtin University of Technology (WA), The University of Adelaide (SA), Deakin University (Vic), University of Tasmania (Tas).

Three domains have been identified as the architecture upon which sustainable L&T innovation will be built. These domains include Learning and Teaching innovation in project leaders’ and colleagues’ classrooms, development of project leaders as Science Learning Leaders, and creation of a Science Learning Hub to serve as a locus and catalyst for the development of a science teaching community of practice.

Progress against specified outcomes and deliverables

Learning and Teaching Innovation

The purpose of this domain is to improve student learning, engagement, retention and performance in large chemistry classes through increased use of student-centred teaching practice.
• The Project is named: ALIUS (Active Learning in University Science) - Leading Change in Australian Science Teaching
• All six ALIUS universities have now implemented Teaching Innovation into ALIUS team member classrooms
• Chemistry colleagues at three ALIUS universities have now implemented Teaching Innovation into their classrooms
• The ALIUS member in physics has implemented Teaching Innovations into his classrooms
• Chemistry colleagues at three ALIUS institutions have tried some Teaching Innovations in their classrooms
• Non-chemistry colleagues at four ALIUS institutions have tried, or expressed an interest in trying, Teaching Innovations in their classrooms
• The POGIL method has proved to be a useful model for Teaching Innovation in the classroom
• Many classroom resources have been developed and used at several ALIUS institutions; some of these have been submitted to the ALIUS database for public access. The remainder will continue to submitted
• Two seminars about Teaching Innovation have been developed, critiqued, revised, and presented at five ALIUS universities and three non-ALIUS universities
• Particular issues associated with implementing Teaching Innovations in Australian classrooms have been identified and possible solutions developed
• ALIUS members have worked with Learning and Teaching Centres at their universities to share methods.

Developing Science Learning Leaders

The purpose of this domain is to develop leadership capacity in the project leaders to equip them with skills to lead change first at their institutions, followed by developing leaders and leading change at other local institutions
• ALIUS members participated in Leadership Professional Development sessions with Craig McInnis and Colin Mason; both these sessions were found to be valuable and provide context and direction for the members and the ALIUS team
• The passion of an ‘early adopter’ was found to be a significant element in each node of the distributed framework
• Members developed an awareness of the necessity to build both the ‘sense of urgency’ and the ‘guiding coalition’ at each node
• ALIUS found the success of the distributed framework is strongly influenced by the relational aspects of the team.

Create a Science Learning Hub

The online Hub serves as a local and national clearinghouse for development of institutional Learning Leaders and dissemination of L&T innovation.
• The ALIUS website is now active and being populated with resources
• The sharing resource database structure is finalised and being populated with contributed materials.

Lessons Learnt

In order to bring about change in teaching practice it is necessary to:
• demonstrate a convincing benefit to student learning
• show that beyond an initial input of effort classroom innovations will not take more time than what is now done
• maintain a prominent exposure among colleagues - repeatedly give seminars, workshops, and everyday conversations; talk about teaching innovation; talk about easy tools to use; invite people to your classroom; engage colleagues in regular peer review of classroom practice
• have support from people already present in leadership roles to lead change in teaching practice
• have a project leader, someone for whom the project is paramount and will push it forward
• find a project manager, even with money budgeted
• meet face-to-face.

Dissemination
• Seminars presented 19 times including over 400 individuals and more than 24 Australian universities
• Workshops presented 25 times, over 80 participants at 11 Australian and two New Zealand Universities
• Two articles published in Chemistry in Australia, the Australian Chemistry Industry Journal of the Royal Australian Chemical Institute
• One refereed paper published in the Journal of Learning Design.

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The Victorian Planning Minister’s response to the ‘Coastal Climate Change Advisor Report’, initiated by the Baillieu government in 2010, identified the need to “initiate ! a skills audit with the view to developing a range of professional development courses to meet the shortfall of professionals with the capability to assess coastal climate change impacts” (Victoria 2012). The following paper addresses this deficiency by examining how Australia’s higher education and further education sectors currently attend to the issue of coastal planning.

A detailed review of a large number of national and international planning programs was undertaken to highlight the subject matter contained in each program with a specific focus on any coastal planning courses. Working from a theoretical perspective, the first part of the paper addresses why a dedicated subject on Coastal Planning is required in the present Australian planning school syllabus, and how such a program would be positioned within the intent of PIA’s Education Policy.

Utilising the benefits of Problem Based learning and Student Centred Learning in relating to delivering a Coastal planning course, the second part of the paper provides a theoretical overview of the types of competencies which students may be expected to attain when undertaking such a course. The third part of the paper proposes a series of 12 lectures to underpin a unit titled “Coastal Planning: The Australian Context” which includes a draft lecture relating to the monitoring of Coastal Erosion in Adelaide.

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The marginalisation of the teaching and learning of legal research in the Australian law school curriculum is, in the author's experience, a condition common to many law schools. This is reflected in the reluctance of some law teachers to include legal research skills in the substantive law teaching schedule — often the result of unwillingness on the part of law school administrators to provide the resources necessary to ensure that such integration does not place a disproportionately heavy burden of assessment on those who are tempted. However, this may only be one of many reasons for the marginalisation of legal research in the law school experience. Rather than analyse the reasons for this marginalisation, this article deals with what needs to be done to rectify the situation, and to ensure that the teaching of legal research can be integrated into the law school curriculum in a meaningful way. This requires the use of teaching and learning theory which focuses on student-centred learning. This article outlines a model of legal research. It incorporates five transparent stages which are: analysis, contextualisation, bibliographic skills, interpretation and assessment and application.

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Die Publikation zur AQ Austria Jahrestagung 2015 widmet sich dem Lernen und Lehren an Hochschulen und den vielfältigen Wandlungsprozessen durch die zunehmende biographische, soziale und kulturelle Diversität der Studierenden sowie elektronischen Medien. Student-centred Learning (SCL) gewinnt verstärkt an Bedeutung. Diese Wandlungsprozesse treffen nicht nur Studierende, Lehrende und die Hochschulen als Institutionen, auch die Qualitätssicherung in Studium und Lehre. Der Beitrag von Prof. Nacken zeigt auf, welche Chancen und Herausforderungen sich durch SCL in verschiedensten Bereichen ergeben. Er geht auf das Projekt „Studierende im Fokus der Exzellenz“, die Entwicklung der Charta für gute Lehre und aktuelle Trends und Probleme bei digitaler Lehre ein. Die studentische Perspektive zeigt Umsetzungsmöglichkeiten und Maßnahmen in Richtung Studierendenzentrierung auf. In den weiteren Beiträgen wird auf Didaktik und Qualitätssicherung, Determinanten studentischen Lernerfolgs, alternative Formen der Lehrevaluation und die Sichtbarmachung von non-formal und informell erworbenen Kompetenzen eingegangen und zwei beschäftigen sich mit Einsatzmöglichkeiten und Veränderungen durch neue Medien. Mit Beiträgen von: Nacken, Heribert; Hanft, Anke; Pichl, Elmar; Treml, Beate; Pellert, Ada; Künzel, Manfred; Haas, Lena; Martens, Thomas; Metzger, Christiane; Haag, Johann; Froschauer-Neuhauser, Elisabeth; Meyer Richli, Christine; Schulz, Ramona; Kämmerer, Frauke; Gornik, Elke A.; Freiberger, Diane; Birke, Barbara; Müller, Claude; Woschnack, Ute; Baumgartner, Alexander; Erlemann, Jennifer; Penßler-Beyer, Anja; Bergsmann, Evelyn; Weißemböck, Josef.

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In the framework of the Bologna process, and with regard to pre-service teacher education, it is necessary to model student-centred learning experiences in order to promote the required competences for future professional practice and critical participation in society. Despite the potential of discussion in promoting several competences, this methodology does not always integrate the teaching practices. This case study sought to: a) understand the experiences and views of future teachers from a School of Education on the use of discussion in their past education; and b) investigate the impact of an educational experience centred on discussion. Data were collected through narratives, questionnaires, interviews and participant observation. The learning situations experienced through this study contributed to the development of citizens more aware of their role in society and allowed the promotion of skills indispensable for an Elementary Education teacher.

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In the framework of the Bologna process, and with regard to pre-service teacher education, it is necessary to model student-centred learning experiences in order to promote the required competences for future professional practice and critical participation in society. Despite the potential of discussion in promoting several competences, this methodology does not always integrate the teaching practices. This case study sought to: a) understand the experiences and views of future teachers from a School of Education on the use of discussion in their past education; and b) investigate the impact of an educational experience centred on discussion. Data were collected through narratives, questionnaires, interviews and participant observation. The learning situations experienced through this study contributed to the development of citizens more aware of their role in society and allowed the promotion of skills indispensable for an Elementary Education teacher.

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BACKGROUND Collaborative and active learning have been clearly identified as ways students can engage in learning with each other and the academic staff. Traditional tier based lecture theatres and the didactic style they engender are not popular with students today as evidenced by the low attendance rates for lectures. Many universities are installing spaces designed with tables for group interaction with evolutions on spaces such as the TEAL (Technology Enabled Active Learning) (Massachusetts Institute of Technology, n.d.) and SCALE-UP (Student-Centred Activities for Large-Enrolment Undergraduate Programs) (North Carolina State University, n.d.) models. Technology advances in large screen computers and applications have also aided the move to these collaborative spaces. How well have universities structured learning using these spaces and how have students engaged with the content, technology, space and each other? This paper investigates the application of collaborative learning in such spaces for a cohort of 800+ first year engineers in the context of learning about and developing professional skills representative of engineering practice. PURPOSE To determine whether moving from tiers to tables enhances the student experience. Does utilising technology rich, activity based, collaborative learning spaces lead to positive experiences and active engagement of first year undergraduate engineering students? In developing learning methodology and approach in new learning spaces, what needs to change from a more traditional lecture and tutorial configuration? DESIGN/METHOD A post delivery review and analysis of outcomes was undertaken to determine how well students and tutors engaged with learning in new collaborative learning spaces. Data was gathered via focus group and survey of tutors, students survey and attendance observations. The authors considered the unit delivery approach along with observed and surveyed outcomes then conducted further review to produce the reported results. RESULTS Results indicate high participation in the collaborative sessions while the accompanying lectures were poorly attended. Students reported a high degree of satisfaction with the learning experience; however more investigation is required to determine the degree of improvement in retained learning outcomes. Survey feedback from tutors found that students engaged well in the activities during tutorials and there was an observed improvement in the quality of professional practice modelled by students during sessions. Student feedback confirmed the positive experiences in these collaborative learning spaces with 30% improvement in satisfaction ratings from previous years. CONCLUSIONS It is concluded that the right mix of space, technology and appropriate activities does engage students, improve participation and create a rich experience to facilitate potential for improved learning outcomes. The new Collaborative Teaching Spaces, together with integrated technology and tailored activities, has transformed the delivery of this unit and improved student satisfaction in tutorials significantly.

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Nearly 500 secondary students in 24 classes were surveyed and four students in each class interviewed concerning their approaches to learning and perceptions of their classroom environment. While interviewed students with deep approaches to learning generally demonstrated a more sophisticated understanding of the learning opportunities offered to them than did students with surface approaches, teaching strategies also influenced students' perceptions. When teachers focused strongly on actively engaging students and creating a supportive environment, students with both deep and surface approaches focused on student-centred aspects of the class. In contrast, when traditional expository teaching methods were used exclusively, students with deep and surface approaches both focused on transmission and reproduction.

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Over the past decade, Thai schools have been encouraged by the Thai Ministry of Education to introduce more student-centred pedagogies such as cooperative learning into their classrooms (Carter, 2006). However, prior research has indicated that the implementation of cooperative learning into Thai schools has been confounded by cultural traditions endemic within Thai schools (Deveney, 2005). The purpose of the study was to investigate how 32 Grade 3 and 32 Grade 4 students enrolled in a Thai school engaged with cooperative learning in mathematics classrooms after they had been taught cooperative learning strategies and skills. These strategies and skills were derived from a conceptual framework that was the outcome of an analysis and synthesis of social learning, behaviourist and socio-cognitive theories found in the research literature. The intervention began with a two week program during which the students were introduced to and engaged in practicing a set of cooperative learning strategies and skills (3 times a week). Then during the next four weeks (3 times a week), these cooperative learning strategies and skills were applied in the contexts of two units of mathematics lessons. A survey of student attitudes with respect to their engagement in cooperative learning was conducted at the conclusion of the six-week intervention. The results from the analysis of the survey data were triangulated with the results derived from the analysis of data from classroom observations and teacher interviews. The analysis of data identified four complementary processes that need to be considered by Thai teachers attempting to implement cooperative learning into their mathematics classrooms. The paper concludes with a set of criteria derived from the results of the study to guide Thai teachers intending to implement cooperative learning strategies and skills in their classrooms.