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Titlebook: Beginning Robotics with Raspberry Pi and Arduino; Using Python and Ope Jeff Cicolani Book 20181st edition Jeff Cicolani 2018 Raspberry Pi.A

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https://doi.org/10.1007/978-3-030-49666-1robot. You’ve worked with motors, sensors, and communication between the Raspberry Pi and the Arduino. In Chapter 3 and Chapter 5, you learned to work with ultrasonic rangefinders using both Python and Arduino. The remainder of the book introduces new sensors, processing algorithms, and computer vision.
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https://doi.org/10.1007/978-3-030-23762-2A . is technology that applies logic to perform a task in an automated manner. This is a fairly broad definition, but robotics is a fairly broad field. It can cover everything from a child’s toy to the automatic parallel parking capabilities in some automobiles. We build a small mobile robot in this book.
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Ewa Pietka,Pawel Badura,Wojciech WieclawekIn Chapter 4, we used the GPIO pins on the Raspberry Pi to interact with an LED and an ultrasonic sensor. Many times, this is enough to do what you want to do. However, I also discussed some of the shortcomings of the Raspberry Pi GPIO and the likely need to expand the capabilities of the Pi in order to overcome these shortcomings.
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Ewa Pietka,Pawel Badura,Wojciech WieclawekIn Chapter 4, we used the Raspberry Pi’s GPIO pins to control an LED and to receive information from an ultrasonic sensor. In Chapter 5, we looked at the Arduino and discussed why it is a better option for general GPIO functions. We connected the ultrasonic rangefinder and an LED to the Arduino and learned how to pass data between the two boards.
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Information Technology in BiomedicineIn the last chapter, we built the Adafruit Motor HAT, an electronic device that allows you to control up to four DC motors with your Raspberry Pi. We also looked at a generic motor controller that we ran through the Arduino board. Now that you know how to get your robot to move, let’s start building it.
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