Products related to Robotics:
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Robotics Smart Machines
Robotics is a vast, thrilling, and sometimes overwhelming interdisciplinary field involving physics, engineering, and computer science.This kit gives kids a simple, fun, and customisable introduction to robotics that lets them build eight motorised machines controlled by programs and an ultrasound sensor.Kids code the programs using an easy, visual programming app on a tablet or smartphone, which connects to the robot models via a wireless Bluetooth connection. The ultrasonic sensor works on the same principle as sonar.It sends out sound waves, which bounce off objects. The sensor interprets the echoes returning to it, and from this detects objects in the path of the sensor.Using the app interface, you can program the robots you build to behave based on the feedback coming from the ultrasound sensor.Build a bipedal robot that walks forward on two legs and pivots to avoid obstacles in its path.An awesome beetle robot moves backwards or forwards in response to an obstacle, and opens and closes its pincers.Construct a funny crocodile model that wags its tail if no object is in sight, but then opens its giant jaws when an object approaches.Using an additional smartphone and tablet, you can even hack together a cute little spy bot that roams around and streams video back to the tablet screen.A cool tiltrotor aircraft model simulates vertical takeoff and landing by rotating its propeller blades 90 degrees.You can also assemble other fun robots including a robo dog and robotosaurus.After you have learned how the technology works, you can build and program your own robots using the kit's 230 building pieces. A full-colour, 64-page step-by-step illustrated manual helps kids assemble all of the models and teaches them about robotics in the real world.The visual programming language allows you to command the robots' motors to move at different times, different power levels, in different directions, and in response to the data from the sensor.You can also add simple sounds to your programs. Requires a tablet or smartphone running iOS or Android.Please check the app stores for compatibility and device requirements.
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Medical Robotics
This book provides a thorough background to the emerging field of medical robotics.It covers the mathematics needed to understand the use of robotic devices in medicine, including but not limited to robot kinematics, hand-eye and robot-world calibration, reconstruction, registration, motion planning, motion prediction, motion correlation, motion replication and motion learning.Additionally, basic methods behind state-of-the art robots like the DaVinci system, the CyberKnife, motorized C-arms and operating microscopes as well as stereotactic frames are presented.The book is a text book for undergraduates in computer science and engineering. The main idea of the book is to motivate the methods in robotics in medical applications rather than industrial applications.The book then follows the standard path for a robotics textbook.It is thus suitable for a first course in robotics for undergraduates.It is the first textbook on medical robotics.
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Cognitive Robotics
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Probabilistic Robotics
An introduction to the techniques and algorithms of the newest field in robotics. Probabilistic robotics is a new and growing area in robotics, concerned with perception and control in the face of uncertainty.Building on the field of mathematical statistics, probabilistic robotics endows robots with a new level of robustness in real-world situations.This book introduces the reader to a wealth of techniques and algorithms in the field.All algorithms are based on a single overarching mathematical foundation.Each chapter provides example implementations in pseudo code, detailed mathematical derivations, discussions from a practitioner's perspective, and extensive lists of exercises and class projects.The book's Web site, www.probabilistic-robotics.org, has additional material.The book is relevant for anyone involved in robotic software development and scientific research.It will also be of interest to applied statisticians and engineers dealing with real-world sensor data.
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What is robotics?
Robotics is a branch of technology that deals with the design, construction, operation, and application of robots. Robots are programmable machines that can perform tasks autonomously or semi-autonomously. Robotics combines elements of mechanical engineering, electrical engineering, and computer science to create machines that can assist humans in various tasks, from manufacturing to space exploration. The field of robotics is constantly evolving, with advancements in artificial intelligence and machine learning leading to more sophisticated and versatile robots.
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What is behavior planning in robotics?
Behavior planning in robotics is the process of determining the sequence of actions that a robot should take to achieve a specific goal. It involves creating a plan that outlines the steps the robot needs to follow to navigate its environment, avoid obstacles, and interact with objects. This planning typically takes into account the robot's sensors, its capabilities, and the task it needs to accomplish. By carefully designing behavior plans, robots can efficiently and effectively perform tasks in various environments.
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How can one get into robotics?
One can get into robotics by starting with a strong foundation in science, technology, engineering, and mathematics (STEM) subjects. Pursuing a degree in robotics, mechanical engineering, electrical engineering, or computer science can provide the necessary knowledge and skills. Additionally, gaining hands-on experience through internships, projects, or participating in robotics competitions can help build practical skills and network with professionals in the field. Staying updated on the latest advancements in robotics technology and continuously learning and experimenting with different robotics platforms can also help one get into robotics.
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Are the laws of robotics application-specific?
The laws of robotics, as originally proposed by Isaac Asimov, are general principles intended to guide the behavior of robots in a wide range of situations. They are not inherently application-specific, but rather provide a framework for ethical and safe robot behavior in various contexts. However, the implementation and interpretation of these laws may vary depending on the specific application or industry in which the robots are being used. Ultimately, it is up to designers, engineers, and policymakers to adapt and apply the laws of robotics to suit the needs of different applications.
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Industrial Robotics
Giving you insight into real-world practice, INDUSTRIAL ROBOTICS provides an introduction to the industry and basic understanding of the subjects needed for starting a career in industrial robotics.It begins with a background on the history and development of industrial automation, then moves into robot mechanical unit configurations, controller architecture, and general software structure. Basic programming instruction definition and interpretation enable you to break a programming problem into its component parts, solve the component parts, and integrate them into a finished program. Three subjects not typically addressed in robotic texts are discussed: industrial sensors, vision systems, and maintenance. Comprehensive coverage also includes the basic types of tooling and their applications, economic aspects of robots in the workplace, and the issues of human/robot interfaces.
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Coding and Robotics
Meet Sammy. This cute little peanut butter and jelly sandwich is actuallya robot that teaches coding principles and skills to children in grades K-2. You don’t need a tablet, smartphone, or computer to program this robot;programs are created by simply laying down a sequence of physical code cards. As the robot drives over the code cards, an OID optical scanner on the bottomof the robot reads the code cards one by one and loads the program.Next,place the robot on a grid made of map cards, and the robot runs the program. You can program the robot to move in different directions, activate its outputgear, light up its LED, play sounds, and respond to different function cards. The integrated output gear makes it possible to build simple robotic creationswith arms or other moving parts that respond according to the program’sinstructions.This robot kit also teaches physical engineering and problemsolving skills through a series of building and coding lessons.The 30 lessonsare aligned with standards for computer science education developed by theComputer Science Teachers Association (CSTA) and the International Society forTechnology (ISTE) Education, as well as courses from Code. org. The lessonsprogress in complexity through the illustrated manual, allowing the kit to beappropriate for a child as young as four years with help from an adult and asold as eight years.The lessons cover these six key areas in coding:sequencing, loops, events, conditionals, functions, and variables.In additionto Sammy, there are five other stories, each with a series of model-buildingand coding challenges and lessons related to it: a mouse moves through a mazeto find cheese; a penguin wanders around a zoo; a soccer player moves a ballinto the goal; a fire truck puts out a fire; and a factory robot performstasks in a factory scene.A full-colour illustrated manual guides usersthrough the coding lessons and the assembly of the different models.
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Hammond Robotics mug.
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The Robotics Primer
A broadly accessible introduction to robotics that spans the most basic concepts and the most novel applications; for students, teachers, and hobbyists. The Robotics Primer offers a broadly accessible introduction to robotics for students at pre-university and university levels, robot hobbyists, and anyone interested in this burgeoning field.The text takes the reader from the most basic concepts (including perception and movement) to the most novel and sophisticated applications and topics (humanoids, shape-shifting robots, space robotics), with an emphasis on what it takes to create autonomous intelligent robot behavior.The core concepts of robotics are carried through from fundamental definitions to more complex explanations, all presented in an engaging, conversational style that will appeal to readers of different backgrounds.The Robotics Primer covers such topics as the definition of robotics, the history of robotics ("Where do Robots Come From?"), robot components, locomotion, manipulation, sensors, control, control architectures, representation, behavior ("Making Your Robot Behave"), navigation, group robotics, learning, and the future of robotics (and its ethical implications).To encourage further engagement, experimentation, and course and lesson design, The Robotics Primer is accompanied by a free robot programming exercise workbook that implements many of the ideas on the book on iRobot platforms. The Robotics Primer is unique as a principled, pedagogical treatment of the topic that is accessible to a broad audience; the only prerequisites are curiosity and attention.It can be used effectively in an educational setting or more informally for self-instruction.The Robotics Primer is a springboard for readers of all backgrounds-including students taking robotics as an elective outside the major, graduate students preparing to specialize in robotics, and K-12 teachers who bring robotics into their classrooms.
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Which book about robotics can you recommend?
I recommend "Robotics: Everything You Need to Know About Robotics from Beginner to Expert" by Peter Mckinnon. This book provides a comprehensive overview of robotics, covering topics such as the history of robotics, different types of robots, and the future of robotics. It is suitable for both beginners and experts, making it a great resource for anyone interested in learning more about robotics.
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What experiences are there in studying robotics?
Studying robotics involves a combination of theoretical knowledge and hands-on practical experience. Students often have the opportunity to work on projects that involve designing, building, and programming robots. They may also participate in competitions or internships to gain real-world experience in the field. Additionally, studying robotics can involve collaborating with peers and experts in related fields, such as computer science, engineering, and artificial intelligence, to solve complex problems and push the boundaries of technology.
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How do you program and build robots in robotics?
In robotics, programming and building robots involves several steps. First, you need to design the robot's structure and components using software like CAD. Then, you have to select the appropriate sensors, actuators, and microcontrollers based on the robot's intended function. Next, you write the code to control the robot's movements and interactions with its environment. Finally, you assemble the physical components according to your design and test the robot to ensure it functions as intended. Throughout the process, problem-solving skills and attention to detail are crucial for successful robot programming and building.
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Is robotics and autonomous driving a form of education?
Robotics and autonomous driving can be considered a form of education in the sense that they involve learning and understanding complex technologies and systems. Engaging with robotics and autonomous driving can provide individuals with practical, hands-on experience in engineering, programming, and problem-solving. Additionally, these fields often require continuous learning and adaptation to new advancements, making them a form of ongoing education for those involved in the industry. Overall, while not traditional forms of education, robotics and autonomous driving can certainly be seen as educational opportunities for those interested in technology and innovation.
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