HOUDEGBE NORTH AMERICAN UNIVERSTY‚ BENIN SCHOOL OF COMPUTER SCIENCE‚ MATHEMATHICS AND INFORMATION TECHNOLOGY DEPARMENT: COMPUTER SCIENCE A1 GROUP 3 NAMES OF GROUP MEMBERS MATRIC NUMBER OSO ABAYOMI OMOBOLANLE 0907 IT 00989 PRESENTATION TOPIC: MU RECURSIVE FUCNTION LECTURER NAME: MR OSHIBOGUN RECURSIVE FUNCTION Recursive functions are built up from basic functions by some operations. The successor function Lets get very primitive. Suppose we have 0 defined and want
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I. Objectives: 1.) Familiarization with and use of a 5/3 lever-operated valve‚ closed center. 2.) Cylinder operation by a 5/3 lever-operated valve‚ closed center. II. Experimental Procedure: 1.) Adjust the pressure regulator on the air supply (As) to 2 atm. 2.) Familiarization with 5/3 lever-operated valve‚ closed center. 3.) Closed center is obtained when the valve is not activated. 4.) Pushing the lever to one side will activate one state of air flow through the valve. Pushing the
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VEX ROBOTICS ESSAY I believe that robotics should be used in the medic field because they can be safer and be more helpful. They can save time and a person life. They are more accurate. I have a evidence to prove that robots are safety to use. 1. In 1997‚ surgery was performed in Cleveland using Zeus‚ a robotic surgical system. The operation successfully reconnected a woman’s fallopian tubes. 2. In May of 1997‚ the first robotically-assisted operation for a heart bypass case in Germany was
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Robots vs. Higher Education Every morning you wake up to the lovely sound of a screechy alarm clock that causes you to react in one of two ways; you roll over and shut it off just to roll back over and go to sleep or you drag yourself out of bed and get your day started. Off to school you go‚ feeling sleep deprived‚ wanting nothing but to be back in your warm bed. You repeat this sort of cycle every single day‚ but there is a point in time where you stop and realize‚ as each day passes you are feeling
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SRI SUBRAMANYA COLLEGE OF ENGINEERING & TECHNOLOGY. PALANI-624 615 FLY SPY ROBOT (SPYRO) (DEFENCE PROJECT) A Biomimetic flying silicon microchip AUTHORS: ABHISHEK BABU & MAHIN SALIM (SECOND YEAR MECHANICAL) e-mail id: abhishekbabu8@gmail.com mahinalim450@gmail.com contact no: +919600411197 +917871020688 Abstract 1. This paper presents
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GREETING AND INTRODUCING YOURSELF AND OTHERS Greetings (more formal) * Good morning. * Good morning‚ Sir. * Good morning‚ Madam. * Good afternoon. * Good noon/day. * Good evening. * Goodnight.Greetings (less formal) * Hello‚ how are you? / how are you doing? Very well‚ thank you. What about you? * Hello‚ how are you today? Hello‚ I’m fine‚ thank you. And you? * How is everything? * How’s everything going? * How have you been keeping? *
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Systems Project Report Group 5: “Ad Hoc”. Frontal view of the vicious “Ad Hoc” robot Team members: Heijkenskjöld‚ Hannes Kalén‚ Martin Malmesjö‚ Stefan Hoc‚ Ad Abstract This is a report of the project for the course 2D1426 Robotics and Autonomous Systems. It describes the ideas and the design of the Ad Hoc robot. It covers the main design goals‚ implementation and results. The goal of the robot was to play table hockey‚ and above all to be able to score a goal. This was actually
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So‚ if you had a robot‚ what would you want it to do for you? I’m sure you were just thinking about that very same question. If you are now asking yourself “How does this have anything to do with parenting?” let me ease your mind by blowing some smoke up your … um‚ we parents are real busy people. The kind of people who need robots to do stuff for us. She doesn’t do windows ... starpulse.com She doesn’t do windows … Actually‚ this reverie came out of three things. 1. My post on
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Robot Dynamics and Control Second Edition Mark W. Spong‚ Seth Hutchinson‚ and M. Vidyasagar January 28‚ 2004 2 Contents 1 INTRODUCTION 1.1 Robotics . . . . . . . . . . . . . . . . . . . 1.2 History of Robotics . . . . . . . . . . . . . 1.3 Components and Structure of Robots . . . 1.3.1 Symbolic Representation of Robots . 1.3.2 Degrees of Freedom and Workspace 1.3.3 Classification of Robots . . . . . . . 1.3.4 Common Kinematic Arrangements . 1.3.5 Robotic Systems . . . . . . . . . .
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LINE FOLLOWING ROBOT Lines following robots are the classic introduction to robotics. They use some sort of sensor‚ to detect a line and then ride on top of the line along the course. These robots teach basic construction and electronics techniques. This simple robot is designed to be able to follow a black or white line on the ground without getting off the line too much. The robot has four sensors installed underneath the front part of the body‚ and two DC motors drive wheels moving forward. This
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