119 resultados para engineering students


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Information literacy has become an important skill for undergraduate students due to societal changes that have seen information become a valuable commodity, the need for graduates to become lifelong learners, and the recognition that information literacy is an underpinning generic skill for effective learning in higher education. This paper describes a sequence of activities and technologies designed to help students learn and practice information literacy skills. These activities have been purposefully designed and integrated into a first-year engineering and technology study unit as a core syllabus element. A formal evaluation of aspects of these activities was planned and undertaken in semester one 2003.

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A study of more than 9000 unit enrolments in an Australian engineering program found that: the off-campus withdrawal rate was close to twice that for on-campus students; whether a student withdrew or not was highly correlated to mode of study; the rate of withdrawal was significantly different between the two student groups; the grade distribution for completing students was significantly different between the two groups; the mean final grade was significantly higher for off-campus students; the failure rate for off-campus students was significantly lower; and the overall wastage rate (withdrawn rate plus fail rate) was significantly higher for off-campus students.

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An on-line site was created to support students studying a time shortened, off-campus unit in engineering management that was being offered over summer semester for the first time. An evaluation exercise was undertaken to assess the effectiveness of this arrangement, to identify what types of on-line resources students rated as important, and to identify those on-line resources that students actually used in their summer semester studies. Most students reported that they were successful in achieving their summer semester study goals, and that summer semester study was as good as or better than studying in a standard semester. The types of on-line resources ranked most highly by students were those that assisted in strategic study and exam preparation. The on-line resource ranked as least important and used least in practice was a discussion forum for all students. Other results and statistical analysis are presented.

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Off-campus students are important to the Deakin School of Engineering and Technology – in 2003, 47.5 % of all enrolments in the main engineering and technology Bachelor courses were off-campus students. In 2005, the School will be compelled, for professional accreditation, to introduce annual two-week mandatory residential sessions into its engineering and technology courses. In 2004, prior to its implementation, the impacts of the introduction of a mandatory on-campus residential element into engineering and technology courses were unknown. This research project sought to understand these impacts, so that strategies could be developed to minimise the likely impact of these changes. In engineering, off-campus study is an essential element of access to education for those in remote locations and/or seeking to upgrade their qualifications whilst employed. There was very little support from any students (on- or offcampus) for the introduction of residential sessions. The School should expect that the introduction of mandatory residential sessions will reduce the number of off-campus students enrolling to study engineering and technology.

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There have been a number of recent state and national reports noting the reduction in the numbers and calibre of students seeking to enter engineering education. Contributing reasons identified for this include the poor image of the profession generally, and that engineering is poorly understood in schools. The recent review of science and technology in primary schools identifies that primary school science and technology education needs to be improved, and that technology education is given significantly less time than science education in primary schools. It is clear that there are no short-term solutions to increase the number and calibre of engineering undergraduates. Improvements will only come when the community at large is better informed about the nature of engineering, and values more highly the contributions of the profession. This paper reports on a state-wide, Victorian engineering awareness competition organised by the Geelong Group of the IEAust in 1996. The results of the awareness competition are presented and its effectiveness is evaluated. Further consideration is given to factors contributing to career choice and the time at which students begin making this decision.

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This paper reports on a study of the differences in the dominant cognitive processes preferred by groups of engineering and education students and examines the implications of these differences for the assessment of student engagement with university courses. Concern is expressed that the items commonly used to capture student engagement data do not adequately cover the full range of the dominant cognitive processes preferred by tertiary students. The paper sets out a brief overview of student engagement along with the theory of dominant and auxiliary cognitive processes, as developed by Jung and later by Myers. Evidence is presented of the differing frequencies of the eight cognitive processes, as assessed by the Myers-Briggs Type Indicator, that are preferred by cohorts of students undertaking courses in engineering and education. The implications of these differences are discussed in the context of subject disciplines in university environments.

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Survey and focus group interviews with female students in regional Victoria resulted in identification of four perceived barriers that influence them to exclude engineering as a career choice. These barriers were identified as a lack of interest in the perceived image, a lack of knowledge, a traditionally maledominated industry, and limited recognisable role models. This paper reports on what Year 10 females are saying about the barriers and, consequently, how engineering can be promoted to overcome these barriers.

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BACKGROUND : For many years, Deakin University has delivered an accredited undergraduate engineering course by means of distance education. One of the chief challenges is to provide the necessary practical instruction and experience in engineering to these students. In first-year physics and first-year materials science, off-campus students normally attend on-campus lab classes either on a Saturday or as part of a residential school. However, because some students live either interstate or overseas, it is sometimes impossible for small groups of students to attend an on-campus lab class. PURPOSE : This paper investigates whether web-conferencing software can be an effective means for delivering practical classes to small groups of distance students in first-year physics and also first-year materials. METHOD : Over three semesters in 2012, we employed the Elluminate-Live! software platform to broadcast six lab practicals in first-year physics, and one practical in first-year materials engineering. The students submitted practical reports as did all the other students in each unit. The students in each unit fell into three groups: on-campus students, off-campus students who performed their practicals on-campus, and off-campus students who performed their practicals “virtually” via an Elluminate-Live! session. RESULTS : The trials showed that it is possible to broadcast both physics and materials practical classes by means of web-conferencing software. Report marks of the students performing practicals by this method were comparable to those in the other groups. CONCLUSIONS : Our experience with four initial trials in delivering practical classes over the Internet was encouraging, and showed that the concept will work if done in an effective way.