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11.
Helen Askell‐Williams Rosalind Murray‐Harvey Michael J. Lawson 《The Teacher Educator》2013,48(4):237-263
Abstract Students develop robust mental models of teaching and learning during their school years, and as such, often teach as they were taught—possibly perpetuating practices that limit intellectual inquiry in classrooms. This paper reports on an analysis, using a conceptual framework and NUD?1ST software, of a cohort of 3rd‐year teacher education students' reflections on changes in their mental models following their experiences in a problem‐based learning (PBL) topic. Results provide evidence that students do report changing mental models in areas such as (a) the value of case studies for engaging with subject content, motivating learning, and connecting theory with practice; (b) self‐reflection and peer collaboration for cognitive and professional growth; and (c) processes of inquiry for developing self‐regulated learning practices. 相似文献
12.
Stephen Harvey 《International Journal of Science Education》2013,35(6):595-609
In many developing countries attempts to develop the quality of science education stress the importance of inservice education and training (InSET). This article focuses on how such InSET should be phased through time for maximum effect. Several theoretical models that describe and explain stages in the processes of professional learning or educational development are reviewed. Their relevance in informing the planning of science InSET is reviewed in the light of the experience of the Primary Science Programme (PSP) in South Africa. Two main criticisms of existing models are made: 1. They neglect language development as a crucial factor limiting the development of teaching styles especially where pupils are learning in a second language. 2. There are flaws in the way that the recommendations of models have been combined in existing synthesis models. Finally a synthesis model for the phasing of science InSET is proposed. 相似文献
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15.
Carmel McNaught Dianne Raubenheimer Margaret Keogh Rob O'Donoghue Jim Taylor 《Research in Science Education》1992,22(1):291-298
This paper describes an ongoing process of participatory curriculum development. It outlines some of the tensions which need
to be explored in science curriculum development: debates about the nature of science, of society, of school science content
and of learning theories. The process whereby action can arise from this debate is also explored. An example will be outlined
of a network of science curriculum action which has developed from the work of a range of science education projects in Natal,
South Africa.
Specializations: science curriculum development from primary to tertiary level.
Specializations: inservice primary science teacher development.
Specializations: inservice teacher development, biology education.
Specializations: environmental education, teacher development.
Specializations: environmental education, teacher development. 相似文献
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Harvey Kantor 《Educational theory》1978,28(3):175-185
18.
Conclusion Considering the technology gender gap that exists today, there can be no doubt that our current educational system is not
engaging female students in technology or awakening them to possibilities of the technology industry as a career. Females
are not afraid of computers or lack the ability to master computer skills, but they find the computer environment objectionable
(http : / / www.aauw.org/2000/ techsavvybd.html). Several factors within the educational system heighten these objections
and impede female progression through technology classes. It is these factors that our educational system must address.
Single-sex computer classes offer female students the educational advantages of learning in a comfortable, non-threatening
classroom environment where they are encouraged to enthusiastically participate in classroom discussions and activities (Kumagi,
1995). In these classes, curriculum may be adjusted to reflect the need females to see computers as productivity tools (Caplice,
1994). As a result of positive experiences gained while attending single-sex computer classes, females are more likely to
pursue higher level computer classes.
Although it is possible to argue that single-sex computer classes do not mirror the real world females must contend with once
outside the classroom, they are, however, effective interim interventions to enable females to lessen the current technology
gap (Kumagi, 1995). 相似文献
19.
Preparing Students for Professional Roles by Simulating Work Settings in Counselor Education Courses
The authors describe a method for preparing novice counselors for professional environments by using classroom meetings of semester‐long courses to simulate college student affairs divisions, community agencies, school counseling offices, and other work settings. 相似文献
20.