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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!
Sphero Mini packs hours of entertainment into a programmable, robotic ball. With LED lights and live sensors, this robot gives students tons of possibilities to be creative. In this session, we’ll discuss the basics of using the Sphero Mini to drive, play games, and even code. We will also discuss activity examples that can be done right in the Sphero app. Let’s get our Sphero Mini robot rolling!
Squishy Circuits is a hands-on product that teaches students about basic circuitry using pre-made dough, batteries, and output accessories. Your students will be engaged as they build unique objects and watch their creations come to life! They'll also develop problem-solving skills, learn about engineering concepts, and enhance their creativity and critical thinking. Join us to learn how to get started using Squishy Circuits in your classroom!
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!
Kano is a DIY system that lets you build your own computer and bring it to life! Students will learn to build and code with plug and play parts. Packed with coding challenges, stickers, and apps, this product gives students endless ways to be creative. Join us to learn how to get Kano started in your classroom!
Tablets have become so mainstream in our society that it's sometimes difficult for teachers to find the line between learning and play. That's where Osmo comes in! This learning tool seamlessly combines learning and play on a platform that is both physical and digital. Join this session to learn more about this fantastic product, and how it can fit into your classroom.
Join us to learn how to transform your classroom with MERGE's AR and VR tools. These affordable, durable, and easy-to-use tools bring lessons to life in the palm of your hand. Curriculum-aligned activities can be found in the app and cover a wide variety of subjects from life science to mathematics. Your classroom will never be the same again!
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!
Now that summer vacation has come and gone, it’s time to make sure your classroom technology is ready to go for the new school year! This task alone can be overwhelming for teachers — but it doesn't have to be. Join us to learn how to prepare your 3D printers, robots, and other STEM tools and technologies for the year ahead.
We’ve reviewed the basics, and looked at some fun ways to incorporate KIBO into lessons. Now it’s time to expand on KIBO’s abilities, and get rolling with its connections to the foundational physics concepts of motion, force, and friction!
Sphero BOLT is what happens when fun meets programming education. Packed with advanced sensors and an LED matrix, this robot gives students endless possibilities to be creative. While coding and 21st century skills are necessary, Sphero BOLT also goes “beyond code” by incorporating robotics with collaborative STEAM activities that nurture students’ imaginations. Join us to learn how to get the Sphero BOLT rolling in your classroom!
Did you know that you can make your littleBits creation mobile? In this session, we'll show you how to incorporate wheels into your littleBits inventions. You'll be rolling in no time with this guided tutorial geared for 3rd through 8th grade.
Can you predict, build, or invent it? Prompts and activity cards can help you drive student-led exercises with the modular robotic blocks known as Cubelets. In this session, we'll show you how to create exciting challenges for your classroom.
Want to learn how to sort your socks quicker? Didn't expect that type of content on Teq Online PD? We didn't either, but we're excited about it! TRYengineering.org aims to empower teachers to foster the next generation of technology engineers by providing resources and lesson plan materials (and yes, there's one on sorting socks). In this session we'll show you how to implement some of their fantastic lesson plans in your classroom.
The next generation of Scratch is here! Officially launched on January 2, 2019, this new version of Scratch expands the ways students create, learn, and share code. Join us to learn what's new with Scratch 3.0!
What better way to learn the building blocks of robotics than with actual robotic building blocks? Join us to learn about the different types of Cubelet sensor blocks and how to use them to create your own modular robot. Since there’s no wrong way to build with a Cubelet, the focus is on curiosity, collaboration, and practicing computational thinking.
Young children learn by doing, experimenting, and playing – all essential parts of the learning process. The KIBO robot kit harnesses the way kids learn best and explores the concepts of block-based coding, sequences, and more. Join our session to explore the KIBO curriculum and walk through the basic use and functionality of this unique little robot.
ROBOTIS DREAM Series is the second level of the ROBOTIS educational robotics products. ROBOTIS DREAM allows students to explore robotics in a fun and engaging way while also learning the basics of programing and engineering. Join our Curriculum Specialist to learn the basic skills needed to build the robots, as well the applications needed to program your robot.
Sphero SPRK+ is what happens when fun meets programming education. While coding and 21st century skills are necessary, Sphero also goes “beyond code” by incorporating robotics with collaborative STEAM activities that nurture students’ imaginations. Join us to learn how to get the Sphero robot ball rolling in your classroom!
ROBOTIS PLAY Series is buildable and customizable robots that introduce children to the world of engineering and robotics. ROBOTIS PLAY allows students to explore the concept of robotics in a fun and engaging way. Join our Curriculum Specialist as we take a look at the basic skills needed to build and play with these fun little robots.
Are you ready for the final session in our four-part series Learning Python with the pi-top? If you've followed the course series, you know that we’ll be suggesting a functional workflow for teaching Python concepts and functions in your classroom – all on the pi-top. Join us as we dive into some unplugged activities, suggested pi-topCODER worksheets, and an IDLE example on functions!
With the Sparkfun Inventor's Kit for Redbot, students can design their own robot or motorized car. This inventor's kit is a great way to spark your students' interest in motored robotics and sensor integration. We'll show you how to make the most of your Redbot kit and its accompanied board, and how to complete the circuits that will enable your robot or car to move. Prior programming or electronics experience is not necessary (really!).
Explore the basics of MakerBot Replicator Z18 - famous for its massive build volume - and become a pro in no time. Join our session to learn the parts, and then how to set up your printer, load and change material, and even swap your smart extruder. By the time you finish this course you'll be on your way to printing 3D models in extra large with the Z18.
Looking for ways to motivate your hands-on learners in Computer Science? The Digital Sandbox is a nifty device that engages both the hardware and software worlds. Powered by a microcontroller, Sparkfun's Digital Sandbox interacts with physical inputs, light, and temperature sensors. Programmed with the popular Arduino programming environment, your students can use the Digital Sandbox to control LEDs, detect sound, power motors, and more! Don't worry - no actual sand required.
Don't let the name fool you - the Makerbot Replicator Mini+ is a powerful classroom solution! If you're ready to get going with your new Makerbot Replicator Mini+, but aren't sure where to start, don't fret. Join our session to learn the basics of your 3D printer hardware. From loading your filament, to changing your smart extruder, we'll show you everything you need to know to get started printing your 3D models.
Your micro:bit might be micro, but there's more to it than meets the eye! Join us as we introduce you to this adorable device used to learn programming and coding. By the end of this session you'll be able to create and download code, and to complete a CS4ALL micro:bit activity.
Need some help getting started with your new MakerBot 3D printer? Join our session to explore the basics of MakerBot's Replicator+ 3D Printer hardware. Learn the parts, and then learn how to setup your printer, load and change material, and even swap your smart extruder. This model has a 30% faster print time than its predecessor, and prints complex models in record time.
Makey Makey Classic is an invention kit for the 21st century! With this technology, students can use any conductive material to interact with their computers. A grape can be used to advance slides, bananas can be used to make a piano, and you can even create a human circuit! Join us to learn how you can use Makey Makey in your classroom to spur creativity and give your students a tool to explore art, engineering, and more!
Want to create amazing projects like motion triggered lights, robotic arms, or computer control panels, and don’t know where to start? Join us for a session where we provide you the very basics! In this session, you will learn about what Arduino boards are, what they can do for you, and what programs you need to get started! This is definitely a session full of knowledge you won’t want to miss! Hope to see you there!
Looking to learn Python with a pi-top? We can help you get started! In this session, we will visit pi-topCODER and the beta version of pi-topCLASSROOMS, provide you with some suggested worksheet tracks, and complete a worksheet with you. Upon completion of this session, you should feel comfortable suggesting worksheets, and building your own circuit!
Looking for ways to engage your hands on learners in computer science? SparkFun’s Picoboard Starter Kit may be your answer! The input from the Picoboard kit sensors allows you to create simple interactive programs using MIT’s block based programming language, Scratch! The kit is an effective way to combine physical computing and software coding. Included in the kit is a light sensor, sound sensor, a button and a slider, as well as four additional inputs that can sense electrical resistance via included cables. The Picoboard kit can be used to engage a variety of learning styles and levels, join us to see how!
Do you build circuits with your students to teach them about electronics? Are you looking for a better way to do it? Join us as we introduce you to the world of breadboards, a forgiving tool to build solderless circuits. This course will give you the knowledge to reinvent the way you teach students about electron flow, voltage, current, resistance, circuit functions and more!
3D modeling and design is a fantastic way to start the journey to 3D printing. Join our curriculum specialists as we look at Tinkercad. Tinkercad is a simple online 3D design application that makes learning CAD software fun. We will explore the built-in lessons to get students up and running as well as the tools teachers have to check on progress and help students along.
Hello again from the world of NAO robotics! In this session, participants will walk through how to locate, download, and install useful apps to be played directly from the NAO robot. We will also explore several examples of applications available in the App Store, including interactive apps and important programs for robot safety. Finally, we will explain the purpose of the Basic Channel and provide criteria on its effective use.
Join us to learn about Labdisc, an engaging data collection tool to help bring your science experiments to a whole new level. Labdisc can be used for a variety of experimental procedures, and can assist in many parts of the scientific process. Come see it in action with our PD Specialists as we take a look at its functionality in a classroom relevant situation.
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