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We finish this video series with using two functions within MakeCode. The first function drives the RVR from micro:bit button presses, and the second one assigns the heading numbers to create turns. Let's have some fun driving our Sphero RVR robot around with a micro:bit.
We add a gamer:bit unit to the micro:bit and connect it all together to the RVR. Using MakeCode blocks, we program the RVr to react to the button presses on the gamer:bit so we can drive it around. How about an obstacle course everyone!
This course takes your Sphero RVR programming a step further. We’ll add a micro:bit unit to the robot and use block code to drive the RVR around using the micro:bit buttons. Great for an obstacle course in your STEM program!
Sphero RVR is a programmable robot car that takes coding to the next level! RVR customizations let you to connect third-party hardware, and can change the look and feel of this mobile robot! In this session, we'll discuss the basics of using the Sphero RVR to drive across terrains, connect hardware, code using sensors, and even play games. We'll also discuss activities that can be done right in the Sphero app. Let’s get our Sphero RVR rolling!
Once you are familiar with Sphero’s newest robot, the RVR, you’ll be able to start programming it with Sphero EDU. EDU is both a website and a mobile application where students and teachers can use block programming to take advantage of the RVR’s sensors and movements. Great for any STEM program!
In this pi-top project, we'll put our skills to the test and code a traffic light! After you've mastered how to turn on a light, or series of lights, with your pi-top breadboard, we'll show you how to time them using a button and a loop in your Python code. The result? Your very own traffic light!
Start your pi-top adventure with our first project-based session! We'll dig into Scratch 2, and how you can leverage this great coding resource on your pi-top 3. Together, we'll learn basic code blocks and make our first Scratch game.
In a classroom full of pi-top laptops, the teacher needs to manage what students are doing and see their progress. Let’s take a look at pi-top Classroom!
With the pi-top 3 laptop, students can start learning and practicing physical computing. In this session, we’ll plug in our PROTO Plus breadboard and use code to create electrical circuits. Watch us light up our LEDs with Python code!
Straight out of the box, we’ll show you how to install your Raspberry Pi unit and connect to your school network. We’ll also create a pi-top teacher account together so you can easily manage all of your student pi-tops. Come join us for this great getting started session!
Enhance your language arts classroom with Ozobot! We'll show you how to use this line-following robot to explore different points of view in literature. You'll learn how to boost your students' character analysis — and their coding skills. This course is aimed at high school level literacy, but you can easily adapt it for younger readers and ELLs.
Join us to code with colors! Ozobot's Evo is a robot that can operate with color or block coding. This tiny but mighty robot packs a lot of power with serveral sensors and communitcation options. Come join us, you won't want to miss this one!
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Digital Online Certifications
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