ROBOTICS? Socially assistive robotics are robots developed in order to assist patients in recovery‚ daily care procedure‚ rehabilitation‚ training needs‚ patients with social disabilities etc. It provides help in any way possible as long as it was programmed to do so. Socially assistive robotics establish interaction between the users and itself (socially assistive robots) through social interaction rather than physically. They (Social assistive robots) posses the following characteristics‚ which
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The desire for robots in the workforce has been rapidly increasing. Rotman expresses that about three hundred and twenty thousand robots have been sold since 2014‚ and the number is only increasing. Robots are generally new to the workforce‚ but as technology advances‚ robots may be able to do harder tasks which will cause more workers to be left unemployed. Our work environment and ethic is causing the uprising of robots. “Our current industrial policy creates jobs
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History of Robotics The actual word robot was made popular by an author in his 1921 play. This author claims that his brother was the inventor of the word‚ which comes from the Czech word “robota” meaning servitude. Robots were first used in factories such as industrial companies‚ where these would fix machines in order to handle manufacturing tasks that facilitated the production and assisted humans in their everyday tasks. Robots such as industrial robots that used artificial intelligence have
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EMBEDDED LEARNING ROBOT WITH FUZZY Q-LEARNING FOR OBSTACLE AVOIDANCE BEHAVIOR Khairul Anam1‚Prihastono2‚4‚Handy Wicaksono3‚4‚ Rusdhianto Effendi4‚ Indra Adji S5‚ Son Kuswadi5‚ Achmad Jazidie4‚ Mitsuji Sampei6 1 Department of Electrical Engineering‚ University of Jember‚ Jember‚ Indonesia (Tel : +62-0331-484977 ; E-mail: kh.anam.sk@gmail.com) 2 Department of Electrical Engineering‚ University of Bhayangkara‚ Surabaya‚ Indonesia (Tel : + 62-031-8285602; E-mail: prihtn@yahoo.com) 3 Department
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Any time during the day or night‚ you can see 60 robot arms at 10 production lines polishing the modules‚ a job that required 650 workers in the past. According to reports‚ 90 per cent of the factory’s workforce comprises robots‚ with just a few human workers to monitor the machinery. Elsewhere in the world‚ Ports of Auckland plans to replace 50 jobs with Autostrads‚ which are 15m tall‚ automated straddle carriers. These container-stacking robots can stack up to four containers high and would result
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THE ROBOT AND ITS CAPACITY OF DOING WORK An Investigatory Project presented to the Science Department of Universidad de Sta. Isabel‚ Basic Education Department in fulfillment of the requirements in Science 10. Proponents: CUARTEROS‚ Ma. Bernadette B. ESCURO‚ Claudine H. FLORES‚ Louisse Francesca S. LAYAGAN‚ Alexa Mari O. LUANSING‚ Mary M. 10- OBEDIENCE Mr. Arvin Posangco Physics Teacher February 2013 Phyro 1 Statement of the Problem * The feasibility study of the robot and
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with a general overview of robotics (with a focus more on mobile robots) and
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revolutionary robot‚ Baxter who has been created to work adjacent with humans. Kelly states‚ “We’ve accepted utter reliability in robot manufacturing; soon we’ll accept it in robotic intelligence and service.” He is bringing up the fact that robots had helped us greatly in terms in manufacturing and soon it will be able to do much more. Moreover‚ Kelly writes‚ “We aren’t giving “good jobs” to robots. Most of the time we are giving them jobs we could never do.” He implies that robots are performing
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------------------------------------------------- Application security Application security encompasses measures taken throughout the application’s life-cycle to prevent exceptions in the security policy of an application or the underlying system (vulnerabilities) through flaws in the design‚ development‚deployment‚ upgrade‚ or maintenance of the application. Applications only control the use of resources granted to them‚ and not which resources are granted to them. They‚ in turn‚ determine the
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enables a robot to detect obstacles in its path by utilizing the propagation of high-frequency sound waves. The sensor emits a 40 kHz sound wave‚ which bounces off a reflective surface and returns to the sensor. Then‚ using the amount of time it takes for the wave to return to the sensor‚ the distance to the object can be computed. Unlike the bumper switch and limit switch that alert you when they have been hit‚ the ultrasonic range finder sensor can alert you to an obstacle in the path of the robot prior
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