61 resultados para undergraduate programs


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This paper discusses a teaching and learning project on incorporating Australian Indigenous content into psychology undergraduate programs. After the impetus generated by the Head of Schools meeting in Perth in 1998 and the publication of the special issue of the Australian Psychologist on Psychology and Indigenous peoples in 2000, little progress seems to have been made. The paper discusses the process of developing curriculum guidelines for psychology academics wishing to include Indigenous content. These include the need to critically examine the assumptions and history of Western psychology in relation to Indigenous peoples, the inclusion of non-conventional teaching and learning methods, staff and institutional support, and appropriate staff development. While we have been encouraged by the growing support for this process, there are also significant obstacles, including rigidity of thinking about psychology programs and the attitude that it is all too hard. It is important to get this right, since the token inclusion of Indigenous material into otherwise mainstream Western psychology courses will be ineffective in bringing about the required understanding for psychology students wishing to work with Indigenous people in their professional careers and bring about social justice.

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This paper investigates undergraduate programs in electrical and electronics engineering offered by twelve universities in Australia, Asia, Europe, and America. The investigation focuses on the structure and content of the programs, and the contact hour and assessment of the subjects involved in the programs. The investigation is carried out in four stages: selection of universities, collection of data, analysis of data, and formulation of outcomes. A list of subjects is created based on the content of the programs. The average percentage coverage of each subject in the twelve programs is calculated. The subjects are then grouped into nine program components. The average percentage coverage of each component per university is calculated. For each component, the total number of contact hours for lecture, tutorial, and practical is calculated. Also, the average percentage of four assessment methods for each component is found. Discussions on the outcome of the investigation are presented.

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There is recognition that the first-year of university study is a critical phase in the preparation, motivation and retention of science, mathematics,  engineering and technology (SMET) students. First-year provides the foundation/generic skills upon which students will base their undergraduate studies and professional practice; first-year is where many poorly prepared/at risk students will drop out and contribute to the poor student retention rate observed in the SMET disciplines; and first-year is when students may lose the motivation to pursue their chosen career direction if they find the studies at the commencement of their undergraduate program appear to bear no relationship to their intended career. In 2003, the Learning Resources Advisory Group of the Deakin University School of Engineering and Technology was requested to undertake a review of first-year units in the School’s programs. The information contained in anonymous unit evaluation questionnaires from the years 2000-2002 was used as the basis for analysing student perceptions of first-year units. In unit evaluations, students reported a wide range of issues that impacted negatively on their perception of the content and conduct of first-year units. It was noted that units service taught by other Schools form a significant element of the first-year of all of the Engineering and Technology undergraduate programs – typically 25 to 50 percent of the content. The significant influence of these units on the perceptions of the first-year of the School’s commencing students means that the School should exercise some control over the content and delivery of these units.

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An analysis of DEST statistical data on nursing education had suggested that there were issues with the classification of undergraduate data and new initiatives, such as combined degrees, which were poorly captured. This project had two distinct aims. First, to explore and map exhaustively the range of undergraduate programs offered by tertiary education providers across Australia leading to an initial qualification and entry into nursing practice. Second, to explore and map in detail specialist nursing education courses offered by tertiary and other education providers across Australia. This research was funded under the Evaluations and Investigations Programme (EIP).

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The present study was commissioned for the National Review of Nursing Education. This is the second of two national studies commissioned to map in detail nursing education programs and to profile and make future projections regarding graduates from undergraduate and postgraduate nursing education courses in Australia.

The first study was undertaken in 2001 by Deakin University School of Nursing under the auspices of the 2001 Evaluation Investigations Project titled "Nursing Education and Graduates: Profiles for 1999, and 2000 with projections for 2001". This project sought data on nursing education within Australia in order to improve the accuracy of nursing education databases and to strengthen the ability of DETYA to provide advice on workforce planning. Issues that arose from that project included differences in data sets for undergraduate nursing courses in Australia and the complex process of attempting to tease out and accurately quantify postgraduate specialty courses when a trend towards postgraduate generic courses was evident. Approximately 26% of postgraduate domestic student enrolment data were reported utilising a generic nursing course category.

The purpose of this study was, therefore, twofold. Firstly, this study validated and extended the existing database developed in the previous study mapping in detail the full range of undergraduate programs offered by tertiary education providers across Australia that lead to an initial qualification and entry into nursing practice.

New data about the following was sought:

* Undergraduate nursing degrees (both three-year and four-year courses);
* Double/combined nursing degrees;
* Courses offered by private universities;
* Four-year bachelor degrees that concurrently provide both initial nurse registration and preparation for specialty nursing practice;
* Courses that facilitate ‘fast-tracking’ of students for initial nurse registration with previous tertiary or nursing studies,
* Hours and configuration of clinical experience in undergraduate nursing courses.

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Academic libraries are taken to refer here to two particular types of library: university libraries and those libraries which serve the vocational education and training (VET) sector through colleges or institutes of technical and further education (TAFE). (School libraries are dealt with in a separate chapter.) Universities cover undergraduate programs, principally Bachelors degrees, and postgraduate programs such as the Graduate Certificate, Graduate Diploma, Masters degrees and doctoral programs. The main TAFE awards are Certificate, Diploma and Advanced Diploma. Universities are largely funded by national government - the federal Commonwealth Government in Australia's case - although, as elsewhere, an increasing amount of university funding needs to come from non-government sources, particularly research funding. In Australia institutes of TAFE are funded by state and territory governments, although from 2005 the Federal Government began providing funding for the development of technical colleges outside the TAFE sector that would provide vocational education for secondary school age students. This latter development may well be affected by the change in federal government in late 2007.

The mission for academic libraries globally is to support the teaching, learning and (where appropriate) research activities of their parent institutions. In Australia and New Zealand, universities and their libraries have also had a long tradition of reaching out to the community, contributing to the cultural and intellectual life of the nation. Australia has thirty-nine universities; of which thirty-seven are public institutions and two are private. New Zealand has eight universities. The libraries supporting these institutions are diverse, of high quality and innovative. Based on 2005 figures, there are sixty-eight institutions in Australia's VET sector, with over 1,100 campuses, 1.7 million students and some eleven per cent of Australia's working age population accessing TAPE (Oakley & Vaugha 2007: 43).

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At Victoria University, the release of a new Learning in the Workplace and Community (LiWC) policy has been introduced to ensure that graduates are job and career ready. The policy underlines the importance of workplace contextual learning in all course deliveries and is scheduled for progressive implementation by 2010. For each degree, the policy mandates that a minimum of 25% of program content and assessment must be related to work integrated learning.

Compliance with the 25% shift poses significant challenges for its implementation upon all undergraduate programs since the policy is expected to impact upon program structures, unit deliveries, assessment practices, and course administrations. In particular, there has been an extensive review of existing approaches to learning and teaching in the programs that deliver information and communications technology (ICT) degrees across business and science faculties. This paper describes the current Bachelor of Science in Computer Science and Bachelor of Business in Information Systems programs identifying similarities and differences between the two offerings with respect to their learning in workplace components. It explores possible synergies between the two programs that could be capitalized upon to implement the LiWC policy and details the challenges to both faculties in mounting a coordinated response.

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Large surveys of library user service quality perception are common. However, student evaluation of teaching (SET) data often show a disparity between ratings of library service quality and library resource quality. In this situation, perhaps SET data can also provide insights into what contributes to the perception of library resource quality, and hence identify leverage points for quality improvement interventions. This paper documents an analysis of available Deakin University SET data relating to student interaction with, and evaluation of, library resources. It highlights significant correlations associated with library-related SET items, and from them infers actions that the library could undertake to improve the value and perception of the quality of library resources. The following results were observed. High ratings for library resources were likely to be associated with high general ratings of teaching and unit quality. Postgraduate coursework students rated library resources significantly higher than students in the first three years of undergraduate programs. Students in one faculty (Health) rated library resources significantly higher than students in all other faculties. There was a strong correlation observed in Australasian Survey of Student Engagement data for both 2009 and 2010 between the two items “Used library resources on campus or online” and “Worked on an essay or assignment that required integrating ideas or information from various sources”. These findings suggest the following conclusions. Well-planned learning environments are likely to integrate meaningful student interaction with the library. Initiatives to improve the value and perception of the quality of library resources should be focussed on the specific characteristics and needs of particular student cohorts to have maximum impact. More sophisticated assessment tasks that require students to interact with the library have the potential to result in higher student ratings of the value of library resources.

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As noted in Universities Australia’s (2011a, 2011b) investigations into Indigenous Cultural Competency, most universities have struggled with successfully devising and achieving a translation of Indigenous protocols into their curricula. Walliss & Grant (2000: 65) have also concluded that, given the nature of the built environment disciplines, including planning, and their professional practice activities, there is a “need for specific cultural awareness education” to service these disciplines and not just attempts to insert Indigenous perspectives into their curricula. Bradley’s policy initiative at the University of South Australia (1997-2007), “has not achieved its goal of incorporation of Indigenous perspectives into all its undergraduate programs by 2010, it has achieved an incorporation rate of 61%” (Universities Australia 2011a: 9; http://www.unisa.edu.au/ducier/icup/default.asp).

Contextually, Bradley’s strategic educational aim at University of South Australia led a social reformist agenda, which has been continued in Universities Australia’s release of Indigenous Cultural Competency (2011a; 2011b) reports that has attracted mixed media criticism (Trounson 2012a: 5, 2012b: 5) and concerns that it represents “social engineering” rather than enhancing “criticism as a pedagogical tool ... as a means of advancing knowledge” (Melleuish 2012: 10). While the Planning Institute of Australia’s (PIA) Indigenous Planning Policy Working Party has observed that fundamental changes are needed to the way Australian planning education addresses Indigenous perspectives and interests, it has concluded that planners “! perceptual limitations of their own discipline and the particular discourse of our own craft” were hindering enhanced learning outcomes (Wensing 2007: 2). Gurran (PIA 2007) has noted that the core curriculum in planning includes an expectation of “knowledge of ! Indigenous Australian cultures, including relationships between their physical environment and associated social and economic systems” but that it has not been addressed. This paper critiques these discourses and offers an Indigenous perspective of the debate.

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Purpose:
The focus of the paper is to explore the best practices for the delivery of final year
engineering project. Students use their own initiatives to accomplish practical
design projects in their final year of engineering. Each academia proposes
different ways of project approaches that should satisfy engineering accreditation
requirements for capstone projects. This paper analyses and compares various
undergraduate final year engineering project approaches of different universities
in Australia. From this case study analysis, this research will explore the best
assessment practice for the delivery of final year project.

Design/Methodology:
Through desktop analysis methodology, this paper will analyse six universities in
Australia who are practicing different approaches in their undergraduate final
year engineering project. This analysis will look in to the various types of final
year projects undertaken, their learning outcomes, teaching methods and
assessment measures.

Findings:
From these 6 case studies, this paper will provide a report on its implementation
and assessment impact on final year projects based on the analysed results of
qualitative review of course units in undergraduate programs.

Conclusions:
This paper shows the desktop analysis data and compared the six case studies of
Australian universities. The above-summarized different final year engineering
project approaches were extremely successful in identifying and promoting creativity and innovation through final year projects. From the comparison, it is
clearly shown that Deakin University practices one of best assessment methods for
the delivery of final year engineering project.

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Upon graduation from University many students lose access to support structures such as peers, academic mentoring, etc. This may lead to tension, stress and failure to perform effectively in new workplaces, especially if the workplace itself is stressful. This is particularly the case for graduates who move into work within construction, as this industry provides a uniquely stressful environment where the development of resilience is imperative for success. The ability to cope and draw on resilience skills provides answers for built environment graduates. The development of resilience skills is not included as learning outcomes within courses, units of study or programs of learning within the built environment discipline. This dilemma, from a student's perspective, draws us to the rationale of the proposed research and its aim to show the development of a resilience toolkit for built environment students. There is considerable evidence that incorporating resilience skills into undergraduate curricula in built environment disciplines will have positive outcomes. Outcomes from an initial review of 3 participating University undergraduate programs, devised to determine resilience training for undergraduates is presented. A compilation and collection of noteworthy examples where resilience learning and teaching exists in undergraduate curricula will also be identified.

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The decline in enrolments in economics degrees and majors has been the focus of much concern in recent times. In 2001, two of the current researchers published a paper outlining a framework with which future investigation into this issue could be conducted. Essentially this paper argued that a market oriented approach, which takes into account the value students and employers place on economics studies may point the way to a solution to the problem. As a first step in developing such an approach it is necessary to determine what employers require of the economics graduates they hire. A survey was conducted in 2002. This paper presents the results of this survey and discusses some of the ramifications for the teaching of undergraduate economics.

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In recent years there has been considerable debate about the general decline in the number of students undertaking bachelor degrees and majors in economics. The discussion has stemmed mainly from a supply-side perspective of the economics education market. The goal of this paper is to add another dimension to the debate and report the results of a survey of employers of economics graduates. Drawing on the extensive customer services literature it is argued that a market oriented, or demand-side analysis is also an important component in redressing low student enrolments and retention. A first step in adopting a market oriented approach is to determine the skills required of the economics graduates entering the jobs market. With the support of The Economics Society of Au~tralia, twenty-nine public and private sector employers were surveyed in 2002. The aim of the survey was to establish the demand for economics graduates with bachelor and honours degrees, the skills and knowledge required of these graduates, and the performance of such graduates. The study found that economic knowledge and skill were important to employers. However, the skills rated most important by employers were the more general or 'generic' skills of clear writing, data analysis, interpersonal skills and a practical problem-solving orientation. While graduates generally performed satisfactorily in relation to the economic skills required by employers, this was not the case for generic skills. The result of the survey findings have some significant implications for the content and teaching of undergraduate economics programs. This paper outlines these implications and also discusses areas for future research It is argued that such research should aim to utilize both the demand and supplyside perspectives with the development of more precise definitions and measurement of the economic skills required by the various stakeholders in the economics education market.

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This research reports the impact of work on undergraduate students enrolled in construction programs. Students responded to a questionnaire on the nature of their paid work while enrolled in full-time study in six universities across Australia. The results indicate that students are working on average 19 hours per week during semester time. The results indicate that students in the early years tend to undertake casual work that is not related to their degree. However, this pattern changes in the later years of the program, where students switch to roles in construction that does relate to their coursework. The students start working on average 16 hours in the first year of their degree, and the number rises to 24 hours in their final year. Past research suggests that students may be working to an extent beyond what is considered beneficial to their studies. Past research has shown that working long hours has a negative effect on the study patterns of undergraduate students. The implications of the amount of time working and the type of work are discussed. The paper concludes by suggesting that universities need a greater awareness of the impact of paid employment on student engagement.