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After underwater research, underwater robots typically exhibit signs of wear and tear due to exposure to harsh environmental conditions such as pressure, temperature variations, and corrosive saltwater. They may accumulate biofouling, which is the growth of marine organisms on their surfaces, potentially affecting their performance. Additionally, seals and joints might show signs of fatigue or leakage, necessitating maintenance and repairs. Regular inspections and cleaning are essential to ensure their functionality for future missions.

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What are neptunes robots?

Neptune's robots refer to autonomous underwater vehicles (AUVs) and remotely operated vehicles (ROVs) designed for exploration and research in extreme ocean environments, particularly around the Neptunian region of the deep sea. These robots are equipped with advanced sensors and cameras to collect data on marine life, geological formations, and underwater ecosystems. They play a crucial role in oceanographic research, contributing to our understanding of climate change, ocean health, and marine biodiversity. Their capabilities allow scientists to explore areas that are otherwise inaccessible due to depth and pressure.


What mysteries were researchers able to solve by using underwater robots?

Researchers have utilized underwater robots to solve various mysteries, including the exploration of shipwrecks and submerged archaeological sites, revealing insights into historical events and ancient civilizations. These robots have also helped uncover the secrets of deep-sea ecosystems, such as the behavior of elusive marine species and the effects of climate change on ocean habitats. Additionally, underwater robots have played a crucial role in locating and studying underwater geological features, like hydrothermal vents and methane seeps, enhancing our understanding of Earth's processes.


Why is AI being put into robots?

The vast majority of robots use no AI. In general AI in robots is still limited to mostly robotics research.


How does sea robotics vessels work?

Underwater robots work similarly to robots that run on land, however the wiring and hardware are generally kept in a different location and heavily reinforced with waterproof seals.


What is an experimental boat that imitates the way a penguin swims?

A Biomimetic Autonomous Underwater Vehicle (BAUV) designed to mimic the swimming motion of a penguin is called a penguin robot. These robots are inspired by the streamlined body shape and unique wing-like flippers of penguins to improve underwater agility and maneuverability. They are used for various research purposes such as studying marine ecosystems and improving underwater vehicle performance.


How are robots used in undersea and space exploration?

Robots can be subjected to much higher pressures than the human body can, and space and under the sea are the 2 most pressurised environments we know about. So robots do these jobs for us, so we dont risk exploding (very messy!) in these exreme environments.


What mysteries were able to solve by using underwater robot technology?

Underwater robot technology has been instrumental in solving various mysteries, including the exploration of shipwrecks and the recovery of lost artifacts, such as the Titanic and ancient submerged cities. These robots have provided critical insights into marine ecosystems by mapping the ocean floor and studying deep-sea creatures. Additionally, they have aided in the investigation of underwater geological formations, helping to understand tectonic activity and underwater volcanic eruptions. Overall, the use of underwater robots has significantly advanced our knowledge of the ocean's depths and its historical significance.


How does the military use robots?

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Robots are programmable machines capable of carrying out a series of actions autonomously or semi-autonomously. They are widely used in various applications, including manufacturing for assembly lines, healthcare for surgical assistance, agriculture for planting and harvesting, and exploration in environments such as space or underwater. Additionally, robots play significant roles in logistics, customer service, and even entertainment, enhancing efficiency and productivity across numerous industries.


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The United States currently makes several "flying robots". Research "UAV".


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Humans can access many environments where robots operate, but there are limitations. Robots are often designed for extreme conditions, such as deep-sea exploration or hazardous environments, which may be unsafe or impossible for humans. Additionally, robots can navigate spaces that are too small or intricate for human access. Therefore, while humans can go to many places robots can, there are scenarios where robots have a distinct advantage.


What is the disadvantage in remotely operated underwater robot?

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