Industry, Innovation and Infrastructure, Twelfth Grade, Robotics Science Projects (15 results)
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When you think about robots, do you think of something made from metal? What if robots could have stretchy, flexible skin just like humans? How would they detect when someone tapped them on the shoulder or something rubbed against their arm? In this project, you will learn how to make artificial robotic skin using flexible rubber with an embedded conductive fabric. You can also connect the artificial skin to a microcontroller and use it to control outputs like LEDs or motors.
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Imagine how cool it would be to have your own motorized robot hand. Well, stop imagining and turn that
daydream into reality! Start out by designing and building a robot hand. The Science Buddies project
Grasping With Straws: Make a Robot Hand Using Drinking Straws
shows you a simple way to make a robot
hand with drinking straws, or you can design a robot hand from any other materials you think are suitable. Your hand design will need sewing threads, or some other mechanism, for motors to…
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Note: to do this project you will need the
DIY Mini Drone Kit, available from our partner Home Science Tools®.
An Arduino must be purchased separately. The
Electronics Kit for Arduino, available from our partner Home Science Tools®,
contains the additional parts you will need, including an ultrasonic sensor.
The program in the DIY Mini Drone: Arduino™ Altitude Control project uses a proportional controller to control the drone's altitude. A potentiometer is connected to one…
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Check out the soft robotic gripper and artificial robotic skin projects. These projects show you how to use flexible silicone rubber to make robots or robotic parts. The second project shows you how to connect external LEDs using an Arduino. The LEDs light up when an embedded piece of conductive fabric stretches. What about embedding LEDs in the silicone rubber? You can do this by embedding the LEDs between layers of silicone (Figure 1). The trick is to solder flexible stranded wires to the…
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Self-driving cars use a variety of sensors to evaluate and navigate their environment. Each type of sensor has advantages and disadvantages. In this project you will evaluate two common types of distance sensor (ultrasonic and infrared) and compare their performance in different scenarios.
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