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RoboBlockly for Learning Math and Coding

Piano
Linkbot Image Mindstorm Image Cursor Image
0x36302418126y36302418126
Grid:
Tics Lines:
Width px
Hash Lines:
Width px
Labels:
Font px
Trace Lines:
Robot 1:
Width px
Robot 2:
Width px
Robot 3:
Width px
Robot 4:
Width px
Labels: x-axis y-axis Show Grid
Grid: 12x12 inches 24x24 inches 36x36 inches
72x72 inches 96x96 inches 192x192 inches
Quad: 4 Quadrants 1 Quadrant 1&4 Quadrants
Units: US Customary Metric
Background: Background Image

Robot 1

Linkbot
Mindstorm
Initial Position:
( in, in)
Initial Angle:
deg
Current Position: (4 in, 0 in)
Current Angle: 90 deg
Wheel Radius:
Track Width:
in

Robot 2

Linkbot
Mindstorm
Initial Position:
( in, in)
Initial Angle:
deg
Current Position: (6 in, 0 in)
Current Angle: 90 deg
Wheel Radius:
Track Width:
in

Robot 3

Linkbot
Mindstorm
Initial Position:
( in, in)
Initial Angle:
deg
Current Position: (12 in, 0 in)
Current Angle: 90 deg
Wheel Radius:
Track Width:
in

Robot 4

Linkbot
Mindstorm
Initial Position:
( in, in)
Initial Angle:
deg
Current Position: (18 in, 0 in)
Current Angle: 90 deg
Wheel Radius:
Track Width:
in
Drive Through a Simple Obstacle Course
/* Code generated by RoboBlockly v2.0 */
#include <linkbot.h>
CLinkbotI robot;
double radius = 1.75;
double trackwidth = 3.69;

robot.driveDistance(20, radius);
robot.turnRight(90, radius, trackwidth);
robot.driveDistance(13, radius);
robot.turnRight(90, radius, trackwidth);
robot.driveDistance(13, radius);
robot.turnLeft(90, radius, trackwidth);
robot.driveDistance(14, radius);
robot.turnLeft(90, radius, trackwidth);
robot.driveDistance(20, radius);
robot.turnRight(90, radius, trackwidth);
robot.driveDistance(3, radius);
Load Blocks
Hardware
LArduino
Workspace Show Ch Save File
Problem Statement:
Modify the pre-placed drive block and add more blocks to drive the robot through the obstacle course to the star. Make sure you do not cross the tape! Use the turn right and turn left blocks and drive blocks.

		
Rubbish bin
Time