FVP:SP25PP053 Interactive and Robotic Tools - Course Information
SP25PP053 Interactive and Robotic Tools in the Education of Students with Intellectual Disabilities
Faculty of Public Policies in OpavaWinter 2026
- Extent and Intensity
- 0/13/0. 3 credit(s). Type of Completion: z (credit).
- Teacher(s)
- Mgr. Petra Poláčková (lecturer)
Mgr. Petra Poláčková (seminar tutor)
doc. Mgr. Eva Zezulková, Ph.D. (assistant) - Guaranteed by
- Mgr. Eva Janků
Institute of Special Education – Faculty of Public Policies in Opava
Contact Person: Mgr. Denisa Janků - Timetable of Seminar Groups
- SP25PP053/A: Fri 2. 10. 14:45–17:10 C206, Fri 16. 10. 10:35–13:00 C207, Fri 13. 11. 11:25–13:00 C207, Fri 27. 11. 10:35–12:10 C206, Fri 11. 12. 9:45–12:10 C207, P. Poláčková
- Prerequisites (in Czech)
- FAKULTA(1951) && TYP_STUDIA(B) && FORMA(P) && ROCNIK(2)
- Course Enrolment Limitations
- The course is only offered to the students of the study fields the course is directly associated with.
- fields of study / plans the course is directly associated with
- Special Education (programme FVP, SPEP)
- Course objectives
- The aim of the course is to introduce students to the possibilities of effectively integrating interactive and robotic tools into educational activities for pupils with intellectual disabilities. Students will learn to appropriately select and apply these tools in teaching based on various criteria. They will become familiar with creative ways of using these tools to develop literacy, mathematical concepts, problem-solving skills, and algorithmic thinking. The course will also develop students’ ability to design and implement simple educational activities using interactive and robotic tools.
- Learning outcomes
Professional Knowledge:- knowledge of the categorization of interactive and robotic tools used with pupils with intellectual disabilities
- knowledge of various criteria for assessing the suitability of tools used in the education of pupils with intellectual disabilities
- knowledge of various possibilities for organizing teaching and forms of work in connection with the integration of interactive and robotic tools into the education of pupils with intellectual disabilities
- knowledge of the functions of interactive and robotic tools in individual areas of learning for pupils with intellectual disabilities
Professional Skills:- ability to operate the most commonly used interactive and robotic tools in the education of pupils with intellectual disabilities
- ability to appropriately select tools according to the individual needs of pupils with intellectual disabilities
- ability to appropriately design and set tasks using the tools, focusing on individual areas of learning for pupils with intellectual disabilities
Professional Competences:- the student is able to purposefully apply their knowledge and skills concerning the special needs of pupils with intellectual disabilities when selecting, applying, and supporting the use of interactive and robotic tools
- the student is able to independently determine appropriate support for an individual pupil with an intellectual disability through the use of interactive and robotic tools
- the student is able to provide care and support related to ensuring the availability and appropriate use of interactive and robotic tools for an individual pupil
- Syllabus
- 1. Categories of interactive and robotic tools in the context of special education and criteria for assessing their suitability.
2. Organization of work and forms of activities involving interactive and robotic tools in special schools.
3. The benefits of interactive and robotic tools in the learning areas of pupils with intellectual disabilities (cognitive, communication, motor, social, and practical areas).
4–6. Practical demonstrations – Code-a-Pillar and Pillar, Bee-Bot, Ozobot, Sphero BOLT, selected applications: Book Creator, SoundingBoard, GoTalk, etc. - Literature
- required literature
- KOPECKÝ, Kamil, René SZOTKOWSKI, Lukáš KUBALA, Veronika KREJČÍ a Martin HAVELKA. Moderní technologie ve výuce: (o moderních technologiích ve výuce s pedagogy pro pedagogy). Olomouc: Pedagogická fakulta Univerzity Palackého v Olomouci, 2021.
- Růžičková, Veronika; Špinarová, Gabriela (2022): Digitální technologie ve vzdělávání žáků se speciálními vzdělávacími potřebami.
- DIGIFOLIO. Digitální gramotnost [online]. Praha: Metodický portál RVP.cz, 2022 [cit. 2025-08-21]. Dostupné z: https://digifolio.rvp.cz/view/view.php?id=13123&rate=5
- MPSV. Strategie digitální gramotnosti ČR 2015–2020 [online]. Praha: Ministerstvo práce a sociálních věcí, 2015 [cit. 2025-08-21]. Dostupné z: https://www.mpsv.cz/web/cz/strategie-digitalni-gramotnosti-cr
- REDECKER, Christine. Evropský rámec digitálních kompetencí pedagogů (DigCompEdu) [online]. 2018 [cit. 2025-08-21]. Dostupné z: https://ucitel21.rvp.cz/front.home/evropsky-ramec-digitalnich-kompetenci-pedagogu-digcompedu
- Assessment methods
- Creation of a methodological material for a specific learning area (subject) using appropriately selected interactive or robotic tools.
- Language of instruction
- Czech
- Teacher's information
Face-to-face instruction and consultation hours. During their independent study, students use the study support materials and complete selected correspondence assignments. In doing so, they demonstrate their knowledge of the required literature and the content covered in the face-to-face lectures.
Students may consult individually studied course topics on an ongoing basis via email, through individual or group consultations. An e-learning course is available in the IS SU system, and a team has been created in MS Teams. These platforms also serve as additional means of communication between the instructor and students, as well as among students themselves.
- Further comments (probably available only in Czech)
- The course can also be completed outside the examination period.
- Enrolment Statistics (recent)
- Permalink: https://is.slu.cz/course/fvp/winter2026/SP25PP053