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  1. en.wikipedia.org › wiki › RobotRobot - Wikipedia

    At present, there are two main types of robots, based on their use: general-purpose autonomous robots and dedicated robots. Robots can be classified by their specificity of purpose. A robot might be designed to perform one particular task extremely well, or a range of tasks less well.

  2. 4. Apr. 2024 · robot, any automatically operated machine that replaces human effort, though it may not resemble human beings in appearance or perform functions in a humanlike manner. By extension, robotics is the engineering discipline dealing with the design, construction, and operation of robots.

  3. de.wikipedia.org › wiki › RobotikRobotik – Wikipedia

    Das Themengebiet der Robotik befasst sich mit dem Versuch, das Konzept der Interaktion mit der physischen Welt auf Prinzipien der Informationstechnik sowie auf eine technisch machbare Kinetik zu reduzieren. Der Begriff des „Roboters“ beschreibt dabei eine Entität, welche diese beiden Konzepte in sich vereint, indem sie die ...

  4. en.wikipedia.org › wiki › RoboticsRobotics - Wikipedia

    e. Robotics is the interdisciplinary study and practice of the design, construction, operation, and use of robots. [1] Within mechanical engineering, robotics is the design and construction of the physical structures of robots, while in computer science, robotics focuses on robotic automation algorithms.

  5. 16. Apr. 2020 · Robots have finally grown smart enough and physically capable enough to make their way out of factories and labs to walk and roll and even leap among us. The machines have arrived.

  6. Erfahren Sie, wie verschiedene Arten von Robotern einen Einfluss haben und erstaunliche Ergebnisse ermöglichen – über alle Formfaktoren, Funktionen und Branchen hinweg. Zu den sechs gängigsten Robotertypen gehören autonome mobile Roboter (AMR), fahrerlose Transportsysteme (AGV), Gelenkroboter, Humanoide, Cobots und Hybride.

  7. Vor 6 Tagen · But shape-shifting robots, which are controlled by magnetic fields, can dynamically squish, bend, or elongate their entire bodies. The researchers built a simulator to test control algorithms for deformable soft robots on a series of challenging, shape-changing tasks. Here, a reconfigurable robot learns to elongate and curve its soft body to ...