Super Senior - Age 12+ Years

(Session Total Hours- 40 Hours)

Drone Basics

What is it?

Drone Basics introduces learners to the fundamentals of drone technology, including how drones fly, components (motors, propellers, sensors), and safe piloting techniques. Students learn to control drones manually or via block-based coding platforms, exploring concepts like aerodynamics and navigation. These activities help develop spatial awareness and understanding of real-world applications, such as aerial photography and delivery systems. This course also emphasizes drone safety and responsible use.

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Learning Outcomes

  • Teaches drone components and how they function.
  • Introduces basic flight skills and piloting safety.
  • Enhances problem-solving through drone programming tasks.
  • Develops spatial awareness and navigation skills.
  • Sparks interest in technology with real-world drone applications.
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Advanced 3D Printing

What is it?

Advanced 3D Printing explores in-depth concepts such as multi-part assembly, CAD design, and materials science. Students learn to use professional software and experiment with complex designs, such as mechanical parts and moving components. They also explore printing with different materials, including flexible filaments and resins. This course focuses on engineering principles and innovation, encouraging students to design and prototype real-world solutions.

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Learning Outcomes

  • Teaches CAD design and multi-part assembly techniques.
  • Develops skills in working with various 3D printing materials.
  • Enhances problem-solving through complex engineering projects.
  • Encourages innovation by prototyping real-world solutions.
  • Prepares students for advanced studies in engineering and manufacturing.
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mBot2 Advanced

What is it?

mBot2 Advanced builds on the basics by introducing students to build more complex robotics construction and programming concepts, such as AI algorithms and real-time data processing. Learners explore advanced sensors, autonomous movement, and IoT applications. Using Python and more detailed block-based coding, students program the robot to perform specific tasks or solve real-world challenges.

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Learning Outcomes

  • Introduces advanced robotics construction techniques.
  • Develops proficiency in Python programming and AI algorithms.
  • Encourages problem-solving through real-world challenges.
  • Explores IoT applications and real-time data use.
  • Strengthens teamwork and collaboration skills in group projects.
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Electronics (Arduino Advanced)

What is it?

Arduino Advanced introduces students to complex electronics and programming, focusing on real-world automation and IoT projects. Learners design and build smart devices using sensors, actuators, and microcontrollers. They write advanced code in C/C++ to control hardware and manage data. This level encourages students to design their own projects, bridging hardware and software concepts. It promotes innovation and prepares students for advanced engineering and tech fields.

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Learning Outcomes

  • Teaches advanced circuit design with sensors and actuators.
  • Develops proficiency in programming with C/C++.
  • Encourages building custom IoT and automation projects.
  • Promotes creative problem-solving and hardware troubleshooting.
  • Lays a foundation for advanced engineering studies.
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Lego EV3 Advanced

What is it?

Lego EV3 Advanced takes robotics learning to the next level by challenging students with complex builds and advanced programming. Learners explore autonomous robot navigation, sensor feedback loops, and algorithm design. The platform supports both visual and text-based coding for deeper understanding. This level encourages students to solve real-world robotics challenges in engineering and automation.

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Learning Outcomes

  • Teaches advanced robotics programming and construction techniques.
  • Develops skills in autonomous movement and sensor integration.
  • Encourages creativity by building complex robotic systems.
  • Promotes collaboration through competitive and teamwork projects.
  • Prepares students for higher-level robotics competitions and studies.
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Python Programming Advanced

What is it?

Python Programming Advanced introduces students to more sophisticated topics like object-oriented programming, data analysis, and automation. Learners create complex programs, including web applications and data-driven projects, using Python libraries. They explore debugging, optimization, and efficient code practices. This level helps students understand how to use Python in real-world scenarios and prepares them for software development careers.

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Learning Outcomes

  • Teaches advanced concepts like OOP, data handling, and web development.
  • Develops proficiency in using Python libraries and frameworks.
  • Enhances problem-solving through real-world coding challenges.
  • Encourages creative thinking in automation and application development.
  • Prepares students for advanced computer science and software development.
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