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It's one and the same thing: the only differents is that the words are used in different Locations: America uses "Traffic lights", where European Countries including South Africa use the term "Robots"

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Traffic lights are stationary devices that control vehicular and pedestrian traffic flow at intersections using colored lights. Robots, on the other hand, are autonomous or semi-autonomous machines that can perform tasks or interact with their environment in a more complex and dynamic manner. While traffic lights have a specific function of regulating traffic, robots can have a wide range of capabilities and applications beyond traffic control.

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11mo ago
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Q: What is the difference between traffic lights and robots?
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Continue Learning about Physics

Are big robots or small robots faster?

In general, smaller robots tend to be faster than larger robots due to their lighter weight and agility. However, the speed of a robot can also depend on its design, power source, and purpose.


Do robots have arms?

Some robots are designed with arms, while others may not have arms or limbs at all. The presence of arms on a robot depends on its intended function and purpose. Robotic arms are commonly found in industrial robots, humanoid robots, and robotic manipulators.


Do robots have to move to be a robot?

No, robots do not have to move to be considered a robot. Movement is just one characteristic of robots, but they can still be classified as robots based on their ability to perform tasks autonomously or semi-autonomously, even if they are stationary.


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Cylindrical robots have a cylindrical work envelope, limited to 2D movements along the x and z axes. Spherical robots, on the other hand, have a spherical work envelope, allowing for more freedom of movement in all directions. Spherical robots are often used for tasks requiring high dexterity and versatility, while cylindrical robots are more suitable for applications with simpler movements along a fixed path.


How do robots move?

Robots can move using various mechanisms, including wheels, tracks, legs, and propellers. These mechanisms are powered by motors or other actuators that provide the necessary force and motion for the robot to navigate its environment. Additionally, some robots can also move by crawling, hopping, or flying, depending on their design and intended tasks.