At our institution, comprehensive educational programs are offered to elementary and middle school students aiming to nurture future scientists and technology experts. A total of 15 different workshops are provided, covering technical areas such as software, robotics, physical sciences, virtual reality, along with social innovation-focused workshops.
Workshop Diversity: In addition to technical fields like software, robotics, physical sciences, and virtual reality, there are workshops focusing on social innovation to support students in developing both technical and social skills.
Target Audience: Our program also includes students from disadvantaged areas, ensuring that all eager students can equally benefit from our institution.
Duration of Education: The education spans 5 years for elementary groups and 3 years for middle school groups, supporting students in their long-term development.
Project Work: Students who successfully complete the education periods have the opportunity to form project teams and work on projects addressing real-life problems.
Development Assessment: Weekly observation notes are conducted for each student to monitor their progress and abilities. These assessments are reviewed at the end of each term to create a detailed evaluation report.
Transition to Advanced Courses: The transition of students to advanced-level courses is determined based on the observation reports created, ensuring that students are directed to advanced training suitable for their abilities.
These programs provide students with a comprehensive educational opportunity to enhance their academic achievements, as well as develop their social skills, problem-solving abilities, and creativity.
High School and University Students Technical Education Programs
Our institution organizes technical-focused education programs for high school and university students. These programs aim to enhance students' technical skills, deepen their knowledge in areas such as software development, modeling, electronics, and aviation, and teach them scientific research methods. Upon completing their education, students who wish to work on project initiatives come together in teams and are included in a specialized training and mentorship program. Through this program, students receive professional guidance in planning, designing, developing, and presenting their projects. These educational programs not only help students develop technical skills but also provide practical experience through project-based learning, positioning them successfully in future technology fields.
Education Areas:
Software Education: Practical training is provided on fundamental computer programming languages such as Python, C++, and Java. Students enhance their software skills through hands-on exercises.
3D Modeling Education: Workshops on 3D modeling and design are conducted using CAD software. Students gain experience in designing projects addressing real-world problems.
Applied Electronics Education: Training covers circuit design, sensor technologies, microcontroller systems, and automation systems. Students develop electronic knowledge and skills through hands-on projects.
Aviation Education: Courses cover basic aviation principles, flight mechanics, and aerodynamics. Students gain competence in aviation by working on model aircraft and unmanned aerial vehicles.
Autonomous Systems Education: Workshops focus on autonomous vehicles, robotic systems, and artificial intelligence applications. Students gain practical experience in designing and controlling autonomous systems.
Scientific Research Methods: Training includes scientific methods, data analysis, and experiment design. Students engage in practical exercises to understand the scientific research process.
Trainer Training (University Students)
In the training sessions for younger age groups, classes are composed of groups of up to 18 students maximum.
The distribution of trainers is structured so that there is 1 trainer for every 6 students, comprising Expert Trainers, Assistant Trainers, and Volunteer Trainers.
Expert Trainers consist of experienced engineers knowledgeable in education.
University students are trained in this field to meet the demand for volunteer trainers.
Adult Education and Programs for Educators
Adult Education:
Our program is designed to overcome generational conflicts experienced by families by uniting under the common ground of science. It aims to promote scientific thinking within families.
Parents participating in the education are encouraged to develop projects at home with their children, and they are expected to showcase their projects at the end of each term. Throughout this process, families engage in scientific problem-solving together, fostering the ability to discuss and apply scientific thinking collectively.
Programs for Educators:
In our technical workshops, educators receive training on delivering technical subjects effectively. Pedagogical training is also provided by expert trainers, enabling educators to learn how to teach technical topics effectively.
Educators have the opportunity to enhance their own knowledge and skills through training in technical workshops. Additionally, pedagogical training helps them develop a more effective and efficient approach to teaching technical subjects to students.
These programs are designed to help adults embrace scientific thinking more fully in their daily lives and to enhance educators' abilities to teach technical subjects effectively.