Author:
Semenikhina Olena,Yurchenko Artem,Udovychenko Olga,Petruk Vira,Borozenets Nataliia,Nekyslykh Kateryna
Abstract
It is relevant for teachers of science to get visualization skills for explaining
abstract concepts, showing the logic of processes, and explaining the natural phenomena
at the micro and macro levels. For research conducting, authors used theoretical and
empirical methods such as analysis of specialized for physics visualization software;
survey for determining the needs of physics teachers; analysis of the curricula content
for the training of future physics teachers; performing of the pedagogical experiment to
determine the effectiveness of the developed model, statistical evaluation is provided
by using Student's criterion. The developed model of visualization skills formation of
future physics teachers is based on cognitive-visual approaches and provides the
modernization of the content of teachers’ training by including a special course. The
analysis of software that supports the teaching of physics makes it possible to divide
it into three classes: virtual and digital physics laboratories, mathematical and
simulation software, office applications with Smart-Art-objects, and animation software.
Analysis of the visualization studying material needs of physics teachers, based on a
survey, showed the priority of skills in the office suite programs and skills of
creating simulation models (static and dynamic). The introduction of a model of
visualization skills formation of future physics teachers ensures the achievement of the
goal. Further research is directed to the study of the problem of forming future science
teachers' skills to use augmented reality in the educational process.
Cited by
3 articles.
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