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ROBORISEIT Robotics 3.4 Curriculum

The course Robotics 3.4 extends the first three courses by adding the programming of EV3 Touch sensor. In the total with using the motors' encoders data it gives the opportunity to program even the simple maze solving algorithms! Precise rpm calculations and the programming of manipulators are presented in the lessons of this course. Also the movment of the robots on the car-chassis is discussed.

  • 8 modular lessons
  • 330+ motivating slides
  • 400+ pages of buiding instructions
  • 25+ minutes of video
  • 40+ practical tasks
  • 70+ summary questions for consolidating knowledge
  • Basic and extended version of each training model
  • X-ray patterns of the internal structure of each model
  • Total course duration 16 hours
  • Recommended lesson time is 120 minutes
  • Best for students 10-14 years
All lesson content provided via Roboriseit Content Viewer software, that supports macOS and Windows 7 - 10 devices. No additional software needed.

Curriculum requirements:

  • One LEGO MINDSTORMS Education EV3 Core Set 45544 or 5003400
  • One LEGO MINDSTORMS Education EV3 Expansion Set 45560
  • One ROBORISEIT Power Pack

25. Speed synchronization

The understanding of the correspondence between the programmed "power" of the motor and real robot speed is the main goal of this lesson. We propose to calculate and check the "powers" of the front Medium motor and the rear Large motor that are needed to stable movement. Student also must to to keep in mind that: front axle has a gear train, and front and rear axlex has the wheels of different diameter.

26. Robot with manipulator

Students will know more about the remote controlled robots at this lesson. They will create the tracked robot with manipulator and write the program for control it. The new Infrared sensor operating mode is discussed in the lesson.

27. Tracked robot

At the previous lessons students has investigated the movements of the wheeled robots. But the tracked robots has some advantages that makes them indispensable. That's why we propose to explore the movements of the tracked robots and to find the conditions which allows to program the accurate movements of the robots.

28. Car chassis robot

The car chassis robots has some features that must be investigated by the students. They will program the remote control for such robot with automatic steering wheels centering.

29. Exit from labyrinth

The one Touch sensor allows to build and program simple robot for maze solving. Students will combine the data from the motors' encoders and touch sensor for programming the algorithm.

30. Space station

On the sample of old Tic-tac-toe game we propose students to understand deeper the using of MyBlocks for quick programming. They will create the robot for delivery the marks to the cells on the playfield. The every trajectory will be programmed by using the specially written MyBlock that makes simple actions.

31. Robot loader and “Beacon” mode

The controlling only of two motors in the basic remote control is the limitation that may be bypassed. We propose students to programm the Time Division Controlling of the robot's chassis and the manipulator.

32. Robot for retro games

The most of children likes a games. We propose to create the robot for playing the old games like a Pong. The encoders' data are used for creating the full-functional joystick.

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Robotic year with Roborise-it!

Good news for all users we are introducing a new unique offer for schools / educational centers / clubs. We cover the needs of the curriculum for a year providing two packages: "Robotics year WeDo 2.0" and "Robotics year EV3"

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