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2016 | 6(60) | 3-14

Article title

ГОТОВНІСТЬ МАЙБУТНЬОГО ВЧИТЕЛЯ ФІЗИКИ ДО ФОРМУВАННЯ В УЧНІВ ЗНАНЬ ПРО НАНОТЕХНОЛОГІЇ

Title variants

EN
Readiness of the future teacher of physics to forming students’ knowledge of the nanotechnology

Languages of publication

UK

Abstracts

EN
The article reveals the specific methodological training of physics teachers to the development of students’ knowledge about nanotechnology on the basis of the analysis of experience of foreign countries.In the article the category of readiness of the teacher of physics to form nanophysics technological students’ knowledgeis determined as the personal formation of the future teacher that includes the totality of professional competence aimed at the development of nanophysics technological students’ knowledge and their positive motivation on the future scope of activity in the field of nanotechnology. From an assessment position oftheachievedlevelofprofessionalismasanintegratedindicatorofformationofspecialprofessionalcompetencethefollowingcomponentsof thephysics teacher’sreadinesstoformnanotechnologicalstudents’ knowledge are highlighted: scientificandtechnical, subjectandeducational, information and technological. Scientificandtechnical component includes the knowledge of nanophysics, ways and methods of integrating content in the field of nanotechnology, environmental aspects of development of nanotechnology. Subjectandeducational component includes the ability to master professional and pedagogical skills which are necessary for the implementation of the process of teaching nanotechnology, development of value attitude in teachers to the experience of the creative professional activities, readiness to use the experience of the creative professional activities and development of students’ positive motivation on the future scope of activity in the field of nanotechnology. Informationandtechnological component includes the ability to master the basics of designing and implementing the learning process of students the basics of nanotechnology, using in their professional activities of Information Technologies, measuring methods based on the use of nanotechnology tools. The prospects for further research are seen in the search of the ways of including nanophysics technological knowledge in the courses of general and theoretical physics which are studied at the pedagogical universities in preparing future physics teachers to the activities in the field of learning the basics of nanosciences and nanotechnology.

References

Document Type

Publication order reference

Identifiers

YADDA identifier

bwmeta1.element.desklight-bbf22153-7054-43f4-adc6-68f080cf58e2
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