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151.
The purpose of this paper is to use an historical approach to examine the changing nature, size and diversification of education and training in New Zealand. In particular, attention will be concentrated on the impact of the introduction of competition into the New Zealand tertiary education industry since 1989. It will examine the relationship between the various tertiary education institutions as well as the relationship between these institutions and the demands of both students and industry.  相似文献   
152.
This collection of historical accounts provides diverse perspectives on the structure and culture of the community of researchers who participate in activities of the Australasian Science Education Research Association (ASERA). It describes the formation of the Association, and identifies major changes and challenges for the ever growing and internationalisation of its membership.
Stephen M. RitchieEmail:
  相似文献   
153.
The results of the statistical analyses completed in this study indicated that effective student actors were more aesthetically oriented, less economically and politically oriented, and less sociable than were ineffective student actors.  相似文献   
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155.
This article presents a conceptual schema of the instructional process which is intended to make a number of relevant findings from research more readily understood and applied by designers of instruction and instructional materials. It is based on severll summary sources of research-based findings and principles from the perception, memory, and concept formation literature. The basic conception is that learning is the product of an ongoing interactive process between learner and environment, and that instruction is a temporary and purposeful intervention in that process, the aim of which is the optimization of the learner-environment interaction.The schema is organized around relevant characteristics of the learner, i.e., four basic learner requirements (stimulation, order, strategy, and meaning). These basic learner requirements are subdivided into twenty limitations, particularities and qualities of the human information processing systems. The resulting picture of the human learner provides the basis for describing what the other part of the interaction — the instructional environment — should be like in order to provide an optimum fit between learner and environment. The schema subsumes and interrelates many of the research-based principles found in the literature and hence may make them more memorable and usable.1 Because of the generality of research findings referred to in this schema, few specific references will be given. However, the principles on which the schema is based are all properly credited in the sources noted earlier, e.g. Fleming and Levie (1978).This article is based on a paper presented at the IWAPP Festival 1980, Amsterdam, The Netherlands, January 1980.Note  相似文献   
156.
This paper describes the outcomes of a two-year study on the beliefs and practices adopted by four FE teachers in their attempt to teach one-year GCSE retake classes and the subsequent effects on students' learning. In the second year of the study, an attempt was made to perturb these practices by introducing a substantial collection of classroom discussion resources. These focused on well-known conceptual obstacles and were intended to provoke cognitive conflict and reflection. Modest, yet significant learning gains were observed with two of the classes, but not with the others. Reasons for this appear to be related to teachers' beliefs about learning.  相似文献   
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158.
Providing undergraduates with mentored research experiences is a critical component of contemporary undergraduate science education. Although the benefits of undergraduate research experiences are apparent, the methods for mentoring young scientists as they first begin navigating the research lab environment are reinvented in labs all over the world. Students come to research labs with varied skills, motivations, needs, and dispositions, placing each student and mentor in a unique relationship. How can we help students become aware of their own intellectual progress? How can we encourage our students to take initial steps toward independent investigation? When do we need to let setbacks happen? We have developed a simple mechanism to address these common problems. Each week, students in our labs answer a series of five questions by e-mail that improve lab communication and help students develop into mature scientists without taxing an instructor's already busy schedule. Our observations, experiences, and student feedback indicate that this approach is a useful mechanism to help faculty who mentor young scientists in the research lab.  相似文献   
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160.
This paper is largely concerned with exploring the meaning of sustainable development from two perspectives, the economic and the ethical. The economic perspective raises questions such as: what kind of development is to be sustained? Is it economic growth? Quality of life? Ecosystem integrity? The ethical perspective considers questions such as: what should be the criteria for ‘progress'? What is our moral obligation to future generations? The paper argues that education for sustainability programmes ought to acknowledge and address these questions. If they do not, then, given the complexity and volatility of late 20th century global society, the current stress on education playing a major role in achieving sustainability (IUCN, UNEP & WWF, 1991) may be unduly naïve and under‐theorised. Finally, I contend that the goals of environmental education need to be reconceptualised, continually and reflexively, in response to the globalisation of industrial risks.  相似文献   
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