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Online training of students of applied physics in the field of circuitry
Author(s) -
Dmitry Luchaninov,
Руслан Иванович Баженов,
V. Sabirova,
M.I. Mamyrova,
A Zholdosheva
Publication year - 2021
Publication title -
journal of physics. conference series
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.21
H-Index - 85
eISSN - 1742-6596
pISSN - 1742-6588
DOI - 10.1088/1742-6596/1889/2/022030
Subject(s) - robotics , field (mathematics) , test (biology) , training (meteorology) , computer science , artificial intelligence , mathematics education , engineering management , multimedia , computer engineering , engineering , psychology , robot , mathematics , paleontology , physics , meteorology , pure mathematics , biology
The aim of the study is to test the effectiveness of online teaching of students of applied physics (directions “Electric power and electrical engineering”, “Physics”) to the basics of circuitry and robotics. For the practical development of the principles of circuitry, the TinkerCAD Circuits modeling system is used, lectures and consulting events are implemented using Skype online communication and YouTube broadcasts. The training is based on the principles of gradual complication of tasks and training in invention. The study was conducted at Sholom-Aleichem Priamursky State University and Osh State University in the 2020-2021 academic year. Two groups were selected for the study, the control group (60 students) studied the basics of circuitry using the prepared tasks, the experimental group (72 students) used the TinkerCAD modeling system for training. The results of the study showed the effectiveness of the methodology used for the assimilation of knowledge and skills: an increase in the control group was 13 percent, while in the experimental group an increase of 42 percent was noted. During the research, an increase in the interest of students in the performance of work, attempts to self-improve working devices was noted. Further improvement of the methodology may be associated with the technical design of remote laboratories for circuitry and robotics.

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