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Robotics Essay | Essay on Robotics for Students and Children in English

February 14, 2024 by sastry

Robotics Essay:  What do you think of when you think about ‘robots’? If you think they are only the stuff of space movies and science fiction novels, then think again. Robots are the largest growing technological device in the world. They perform many functions ranging from space exploration to entertainment. Robotics technology is increasing at a fast rate, providing us with new technology that can assist with home chores, automobile assembly and many other tasks. Robotic technology has changed the world around us and is continuing to impact the way we do things. Robotic technology transformation from the past to present surrounds almost everyone in today’s society and it affects both our work and leisure activities.

You can read more  Essay Writing  about articles, events, people, sports, technology many more.

Long and Short Essays on Robotics for Kids and Students in English

Given below are two essays in English for students and children about the topic of ‘Robotics’ in both long and short form. The first essay is a long essay on Robotics of 400-500 words. This long essay about Robotics is suitable for students of class 7, 8, 9 and 10, and also for competitive exam aspirants. The second essay is a short essay on Robotics of 150-200 words. These are suitable for students and children in class 6 and below.

Long Essay on Robotics 500 Words in English

Below we have given a long essay on Robotics of 500 words is helpful for classes 7, 8, 9 and 10 and Competitive Exam Aspirants. This long essay on the topic is suitable for students of class 7 to class 10, and also for competitive exam aspirants.

Robotics is the branch of mechanical engineering, electrical engineering and computer science that deals with the design, construction, operation, and application of robots, as well as computer systems for, their coptrol and processing. These technologies deal with automated machines that can take’the place of a human in various kinds of work, activities, environments and processes.

The definition of the word robot has a different meaning to many people. According to the Robot Institute of America, 1979, a robot is a re-programmable, multi-functional manipulator designed to move material, parts, tools, or specialised devices through various programmed motions for the performance of a variety of tasks. The use of robots continues to change numerous aspect of our everyday life, such as health care, education and job satisfaction. Robots are going to be a major part of the world economy, they help ways to make our daily life easier and assist in producing more products.

Robotic technology is becoming one of the leading technologies in the world. They can perform many functions. They are used in many different ways in today’s society. The use of robotic technology has made an immediate impact on the world in several ways. As technological advances continue, research design and building new robots serve various practical purposes, whether domestic, commercial or military. Many robots even do the jobs that are hazardous to people such as defusing bombs, mining and exploring shipwrecks.

There are numerous uses of robots which not only give better results but also help in saving money as well as time. The robots can provide high quality components and finished products, and do so reliably and repeatedly even in hazardous or unpleasant environments. There are various industry segments which are making use of robotics to improve their production capabilities.

Much of the research in robotics focuses not on specific industrial tasks, but on investigations into new types of robots, alternative ways to think about or design robots, and new ways to manufacture them.

Recently, Apollo Hospital group installed the world’s most advanced CyberKnife robotic radio surgery system at the cancer speciality centre in Chennai, India. Although it meant substantial price for the hospital, Apollo decided to go ahead with the project due to the new-found enthusiasm for robotics in India.

From the Chandrayaan I project for sending robots to moon, to biomedical engineering and the auto industry, India has been using robotics on a wide scale. In an increasingly technology-driven country, robotics has fast assumed significance not only for industrial applications, but also in various day-to-day human activities.

Presently, robotics is the pinnacle of technical development. Though robotics in India is at a nascent stage, but industrial automation in India has opened up huge potential for robotics. Innovation coupled with consolidated research and development has catapulted India’s scientific position in robotic technology.

The country is soon to become a major hub for the production of robots. The global market for robots is projected to rise by an average of about 4%, while in India, the industry is expected to grow at a rate 2.5 times that of the global average.

In medical field, the importance of robotics has been growing. Robotics is increasingly being used in a variety of clinical and surgical settings for increasing surgical accuracy and decreasing operating time and often to create better healthcare outcomes than standard current approaches. These medical robots are used to train surgeons, assist in difficult and precise surgical procedures, and to assist patients in recovery. The automobile industry is equally dominated by robots.

There are multiple number of industrial robots functioning on fully automated production lines especially the high and efficient luxury and sports cars. The use of industrial robots has helped to increase productivity rate, efficiency and quality of distribution. Another major area where the use of robots is extensive is the packaging section. The packaging done using real robots is of very high quality as there is almost no chances of any human error. Another example where robotics is used is the electronic field. These are mainly in the mass-production with full accuracy and reliability. With these varied usages of robots Bill Gates has said

“Robots will be the Next World-Changing Technology”

Robotic has spread like an infection to an extent that so many movies and serials are also based on its theme. Some popular movies include Star Wars, Robocop, Ra one, Transformers etc. With such acclaimed popularity India too has come up with the Robotics Society of India (RSI). It is an academic society founded on 10th July, 2011, which aims at promoting Indian robotics and automation activities. The society hopes to serve as a bridge between researchers in institutes, government research centres and industry.

Robotics Essay

Short Essay on Robotics 200 Words in English

Below we have given a short essay on Robotics is for Classes 1, 2, 3, 4, 5, and 6. This short essay on the topic is suitable for students of class 6 and below.

India has also come up with specialised programmes in robotics field in IITs and other universities. Also, it has moved beyond the traditional areas and entered newer domains of education, rehabilitation, entertainment etc. Robotics has helped handicapped people by replacing their (damaged) limbs with artificial parts that can duplicate the natural movements.

Like a coin has two sides, robotics too has a flip side to it. The biggest barrier in the development of robots has been the high costs of its hardware such as sensors, motors etc. The customisation and updation is also an added problem.

With new advancements taking place each passing day, new product introduction is a problem for the existing users. Robots cut down labour, thereby reducing the opportunities of employment for many. In many developed countries, scientists are making robotic military force that can prove dangerous to others. As the power and capacity of computers continues to expand, revolution is being created in the field of robotics. Imagination is coupled with technology. It would not be wrong to say that in near future there will be a time when robots will become smarter than the human race.

Robotics Essay Word Meanings for Simple Understanding

  • Shipwreck – the destruction or loss of a ship, the remains of a ruined ship.
  • Defuse – the act of deactivating, terminating or making ineffective
  • Substantial- of ample or considerable amount, significant
  • Pinnacle – the highest or culminating point, as of success, power, etc
  • Nascent – developing, beginning, budding
  • Consolidated – united, combined
  • Catapulted – to move quickly, suddenly or forcibly
  • Reliability – dependability
  • Domain – field, area, sphere
  • Flip side – opposite side, reverse side
  • Customisation – modification, alteration
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Industrial robots

  • Robotics research

humanoid robot

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humanoid robot

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.

write an essay on robot

The concept of artificial humans predates recorded history ( see automaton ), but the modern term robot derives from the Czech word robota (“forced labour” or “serf”), used in Karel Čapek ’s play R.U.R. (1920). The play’s robots were manufactured humans, heartlessly exploited by factory owners until they revolted and ultimately destroyed humanity. Whether they were biological, like the monster in Mary Shelley ’s Frankenstein (1818), or mechanical was not specified, but the mechanical alternative inspired generations of inventors to build electrical humanoids.

Learn about Isaac Asimov's Three Laws of Robotics

The word robotics first appeared in Isaac Asimov ’s science-fiction story Runaround (1942). Along with Asimov’s later robot stories, it set a new standard of plausibility about the likely difficulty of developing intelligent robots and the technical and social problems that might result. Runaround also contained Asimov’s famous Three Laws of Robotics :

  • 1. A robot may not injure a human being, or, through inaction, allow a human being to come to harm.
  • 2. A robot must obey the orders given it by human beings except where such orders would conflict with the First Law.
  • 3. A robot must protect its own existence as long as such protection does not conflict with the First or Second Law.

In 1970, Japanese roboticist Masahiro Mori proposed that as human likeness increases in an object’s design, so does one’s affinity for the object, giving rise to the phenomenon called the " uncanny valley ." According to this theory, when the artificial likeness nears total accuracy, affinity drops dramatically and is replaced by a feeling of eeriness or uncanniness. Affinity then rises again when true human likeness—resembling a living person—is reached. This sudden decrease and increase caused by the feeling of uncanniness creates a “valley” in the level of affinity.

This article traces the development of robots and robotics . For further information on industrial applications, see the article automation .

(Read Toby Walsh’s Britannica essay on killer robots.)

write an essay on robot

Though not humanoid in form, machines with flexible behaviour and a few humanlike physical attributes have been developed for industry. The first stationary industrial robot was the programmable Unimate, an electronically controlled hydraulic heavy-lifting arm that could repeat arbitrary sequences of motions. It was invented in 1954 by the American engineer George Devol and was developed by Unimation Inc., a company founded in 1956 by American engineer Joseph Engelberger. In 1959 a prototype of the Unimate was introduced in a General Motors Corporation die-casting factory in Trenton , New Jersey . In 1961 Condec Corp. (after purchasing Unimation the preceding year) delivered the world’s first production-line robot to the GM factory; it had the unsavoury task (for humans) of removing and stacking hot metal parts from a die-casting machine. Unimate arms continue to be developed and sold by licensees around the world, with the automobile industry remaining the largest buyer.

(Read Sherry Turkle’s Britannica essay on robots.)

How does a robotic pipeline for bacterial genetics help scientists at University College Cork?

More advanced computer-controlled electric arms guided by sensors were developed in the late 1960s and 1970s at the Massachusetts Institute of Technology (MIT) and at Stanford University , where they were used with cameras in robotic hand-eye research. Stanford’s Victor Scheinman, working with Unimation for GM, designed the first such arm used in industry. Called PUMA (Programmable Universal Machine for Assembly), they have been used since 1978 to assemble automobile subcomponents such as dash panels and lights. PUMA was widely imitated, and its descendants , large and small, are still used for light assembly in electronics and other industries. Since the 1990s small electric arms have become important in molecular biology laboratories, precisely handling test-tube arrays and pipetting intricate sequences of reagents.

Mobile industrial robots also first appeared in 1954. In that year a driverless electric cart, made by Barrett Electronics Corporation, began pulling loads around a South Carolina grocery warehouse. Such machines, dubbed AGVs (Automatic Guided Vehicles), commonly navigate by following signal-emitting wires entrenched in concrete floors. In the 1980s AGVs acquired microprocessor controllers that allowed more complex behaviours than those afforded by simple electronic controls. In the 1990s a new navigation method became popular for use in warehouses: AGVs equipped with a scanning laser triangulate their position by measuring reflections from fixed retro-reflectors (at least three of which must be visible from any location).

Although industrial robots first appeared in the United States , the business did not thrive there. Unimation was acquired by Westinghouse Electric Corporation in 1983 and shut down a few years later. Cincinnati Milacron, Inc., the other major American hydraulic-arm manufacturer, sold its robotics division in 1990 to the Swedish firm of Asea Brown Boveri Ltd. Adept Technology, Inc., spun off from Stanford and Unimation to make electric arms, is the only remaining American firm. Foreign licensees of Unimation, notably in Japan and Sweden, continue to operate, and in the 1980s other companies in Japan and Europe began to vigorously enter the field. The prospect of an aging population and consequent worker shortage induced Japanese manufacturers to experiment with advanced automation even before it gave a clear return, opening a market for robot makers. By the late 1980s Japan—led by the robotics divisions of Fanuc Ltd., Matsushita Electric Industrial Company, Ltd. , Mitsubishi Group , and Honda Motor Company, Ltd. —was the world leader in the manufacture and use of industrial robots. High labour costs in Europe similarly encouraged the adoption of robot substitutes, with industrial robot installations in the European Union exceeding Japanese installations for the first time in 2001.

write an essay on robot

Lack of reliable functionality has limited the market for industrial and service robots (built to work in office and home environments). Toy robots, on the other hand, can entertain without performing tasks very reliably, and mechanical varieties have existed for thousands of years. ( See automaton .) In the 1980s microprocessor-controlled toys appeared that could speak or move in response to sounds or light. More advanced ones in the 1990s recognized voices and words. In 1999 the Sony Corporation introduced a doglike robot named AIBO , with two dozen motors to activate its legs, head, and tail, two microphones, and a colour camera all coordinated by a powerful microprocessor. More lifelike than anything before, AIBOs chased coloured balls and learned to recognize their owners and to explore and adapt. Although the first AIBOs cost $2,500, the initial run of 5,000 sold out immediately over the Internet .

111 Robots Essay Topic Ideas & Examples

🏆 best robots topic ideas & essay examples, 👍 good essay topics on robots, ⭐ simple & easy robots essay titles, ❓ questions about robots.

  • Will Robots Take Over Human Jobs? Most of these people argue that due to the increasing number of computer equipped robots, the banking industry, the technical industry and even the administrative departments of many countries have suffered great losses at the […]
  • Discussion: Will Robots Replace Us? The world is moving forward, space and the ocean’s depths, and the peculiarities of the brain’s structure and the human body are being studied.
  • Robots: The Use in Everyday Tasks The recent advancements in robotics and artificial intelligence have the potential to automate a wide range of human activities and to dramatically reshape the way people live and work in the coming decades.
  • Robots’ Impact and Human Employment Opportunities Many of the costs of complying with the isolation rules, the costs associated with the spread of the disease, can actually be offset by replacing the workforce with robots.
  • Characteristics of Robotics What concerns the elaboration of an obstacle course in a “real-world” simulation, it is essential to ensure the presence of several procedure testing steps that will determine the functionality of a robot. What concerns the […]
  • Use of Robots in Computer Science Currently, the most significant development in the field of computer science is the inclusion of robots as teaching tools. The use of robots in teaching computer science has significantly helped to endow students with valuable […]
  • The Wireless Robotic Car: Design Project In this prototype, the task is to design a robotic car that can be controlled by a computer using wireless communication technology.
  • Isaac Asimov’s “Robot Dreams” and Alex Proyas’ “I, Robot” Driving to work involves the use of evolving technology as every car made today includes varying degrees of computerized information systems that inform the vehicle of important information everything from the need for an oil […]
  • Autonomous Robots Since they are self sufficient, the autonomous robots have the capacity to work in the absence of human beings. In the future, humanoid robots might have the intelligence and emotions similar to those of human […]
  • Visions of the Future in the Film I, Robot Even though some of the aspects of the filmmaker’s vision of future are possible, and very likely to become reality, the essence of the film appears highly unrealistic.
  • The Dyson Robotic Vacuum: Target Group and Marketing Plan Thus, the target audience of Dyson in Ontario is practical and prudent people who, when buying equipment, pay attention primarily to the prestige of the brand, the quality, and the durability of the purchased goods.
  • Robots as a Factor in Unemployment Patterns One of the prevailing arguments in regards to this problem is that the advent of the robot technology is contributing towards a high rate of unemployment.
  • Aliens Concept in “I, Robot” by Alex Proyas: Film Analysis The purpose of this paper is to analyze the concept of aliens and its implications in the movie I, Robot. It is possible to state that modern advancements are the reflection of something different from […]
  • Robot Revolution in the Contemporary Society The lack of human resources in the middle of the 20th century and the development of industrial technologies led to the appearance of robots.
  • Using Robots in the Medical Industry Third, the robot surgery further has been observed to increase comfort on the part of the patient as the surgery proceeds, and this results from ergonomic position that the robot assumes as the operation proceeds.
  • Robot Making: Materials for Building and Economic Factor As the science is progressing in recent times, we can be sure that it is a matter of time when we will get some economical alternatives of the materials that are needed to make a […]
  • 3D Robotics Disrupts the Aviation Industry 3D Robotics describe their business model as perceiving open hardware, drones, and the future of robotics as the part of the community and the company.
  • STEM (Science), Robots, Codes, Maker’s Space Overview Students’ interest in STEM, Robotics, Coding, and Engineering education and professions has been shown to be stimulated by early exposure to STEM knowledge.
  • Robotics and Artificial Intelligence in Organizations Otherwise, cognitively complex tasks and those demanding emotional intelligence will be performed by humans, with the support of robotics and AI. Therefore, this study speaks of the importance of employee trust in AI and organization.
  • Spot Mini Robot by Boston Dynamics While the bigger robots by Boston Dynamics are designed to operate in extreme conditions, Spot Mini is a household robot, which makes it marketable to a wider community and, therefore, profitable.
  • Is the Robotics Development Helpful or Harmful? Robots remain the best option, as they will connect the children with the happenings in the school. They will dress the robot with their favorite clothes, communicate with the teacher using the robot, and swivel […]
  • Will Robots Ever Replace Humans? It is quite peculiar that Bolonkin uses negation in order to stir the audience’s delight; more impressively, the specified approach works the pathos is concealed not in the description of the possibilities, but the compliment […]
  • Robotic Pharmacy System Implementation Citing some of the key benefits of the robotic pharmacy system, one of the most important is that it reduces the need for technical labor significantly.
  • Ways that Robotics Can Transform Our Daily Lives Robots will help to increase the labor force in the country in the future. Robots will be used to increase the productivity of human labor within the government sector and help in speeding up the […]
  • The Place of Humanity in the Robotic Future The developers are trying to implement the brain, the human mind, in a digital environment. Paying attention to mechanical machines, commonly called “robots”, can be seen that they are created in the image and likeness […]
  • Robotics in Construction: Automated and Semi-Automated Devices The robot is fitted with ultrasonic sensors that aid in positioning of the water jet in inclined areas and also the sensors determine the distance of concrete removal.
  • The Hybrid Robot Vacuum Cleaners The EUFY series of hybrid vacuum cleaners is one of the most popular choices in the market, and the company offers products in various pricing ranges. In the context of hybrid robot vacuum cleaners, market […]
  • Exploring the Capabilities and Potential of Soft Robotics One of the critical advantages of soft robots is their ability to deform and adapt to their surroundings, making them ideal for tasks that require a high degree of flexibility and expertise.
  • Mobile Robots: Impact on Supply Chain Management According to the article, some of the advantages of using an RSC include the ability to dump reusable components and emissions during transit, and presence of collection, recovery, recycling, dismantling, and re-manufacturing facilities.
  • Drawing 3D Objects With Use of Robotic Arm The hot end of the printer melts the material and embeds it onto the surface onto the intended surface. The research also utilized the Arduino development board to interface the programs written and the physical […]
  • Robotic Process Automation Implementation Robotics in the tax system is a highly rational, reasonable, and beneficial idea that will help improve the service and make any process more accessible.
  • Robotics and Related Social & Political Problems The combination of engineering and computer science has aided people in developing the field of robotics. The social impact of robotics lies in the problems that robots are designed to solve.
  • The Invento Robotics Products Analysis The 5 C’s of brand management has grown in popularity since it thoroughly evaluates all the important aspects of a company and allows for approach adjustments depending on what is and is not effective.
  • Hyper Evolution: The Rise of the Robots From the video, the robots look like real human beings, and they have been capacitated to act in a human way in what is known as machine learning technology powered by artificial intelligence. Hyper evolution […]
  • Amazon’s AI-Powered Home Robots The objective of the present plan is to provide a comprehensive analysis and evaluation of the introduction of AI-powered home robots as Amazon’s next disruptive customer product.
  • Robots on the Battlefield: Benefits vs. Constraints The principal obstacle to the introduction of robots on the battlefield is related to the impossibility of operating in the current environment.
  • Robotic Snowblower’s Segmentation, Targeting, and Positioning Strategy For success, a business needs to conduct a structured analysis of the market and competitors, segment consumers into narrow groups, assess the market’s attractiveness, and correctly position the brand.
  • Healthcare Robots: Entering the Era of a Technological Breakthrough However, using robots as medical doctors’ assistants has been only a figment of the most daring dreams until recently.
  • “A Robot Can Be Warehouse Worker’s Pal” by Jennifer Smith Employees working alongside the robots are guided adequately. This method makes it possible for companies to achieve their objectives in a timely manner.
  • Boston Dynamics’ Spot Robot Dog Spot is a four-legged robot that evolved from SpotMini (the initial version) that offers multiple capabilities of operation, including climbing, jumping, walking.
  • Artificial Intelligence in “I, Robot” by Alex Proyas To begin with, AI is defined by Nilsson as a field of computer science that attempts to enhance the level of intelligence of computer systems.
  • Disinfecting Robots: Care Ethics, and Design Thus, the utilization of this technology may be expected to reduce the incidence rate of HAIs. However, it is essential to consider the cost of this technology and reimbursement as they may be key factors […]
  • Robot Interaction Language (ROILA) and Robot Creativity The difference of ROILA from other languages for computing is that it should be simple for both machines and humans to understand.
  • The Personal and Servicing Robotic Market For the product to receive a successful launch, the focus will be placed on the target market and not the product features.
  • Process Description of a Rescue Robot Roboticists in the physical design of rescue robots ensure that the robots can traverse places that are physically unreachable to human rescuers and additionally equip them with a variety of distributed technology that enable them […]
  • The Tactical Throwable Robot The main technical characteristics of the machine are given below in the table offered by Czupryniak Rafal and Trojnazki Maziej in their article “Throwable tactical robot description of construction and performed tests”.
  • Wireless Robotic Car: Servo Motors and DC Motors This section focuses on the review of literature on servo motors and DC motors, in general as well as in the context of the current research project.
  • Autonomous Mobile Robot: GPS and Compass The other realization is that in most instances the challenges presented in the motion of the appendages of a particular robot are not only limited to the number of joints but can significantly exceed the […]
  • Whats Mean Robotics Welding Epping and Zhang define robotic welding as the utilization of programmable systems and tools that mechanize and automate the way welding is done.
  • Are Robots About to Enter the Healthcare Workforce? Many new technologies must first overcome several obstacles in order to become a part of the service environment, and robots are no exception.
  • The Influence of Robots and AI on Work Relationships In the early 20th century, Taylor’s work focused on production management and labor efficiency, which led to the attention of managers to the problems of selection, the motivation of employees, and their training.
  • Robots in Today’s Society: Artificial Intelligence The most important is the automation of the repeating process, to liberate human power, and avoid mistakes and delays in the processes.
  • Intelligent Transportation Systems: A Robot Project The construction of the robot involved the use of sensors and microchips, accessories also used in ITS technology. The role of the sensors in the robot was to detect obstacles and red light on the […]
  • I, Robot and the Effects of Technology The judgment call is generally made on the quality of life of the humans, with little to no regard for the lifestyle and options available to the robots who have achieved a higher level of […]
  • The Use of Robotics in the Operating Room The da Vinci surgical system is the first and one of the famous Robotics surgical systems used in the operating room.
  • The Connection Between Science and Technology: The Robotic Fish by Professor HU Furthermore, we discuss the other effects of science in technology and some of the recent technological developments in the rest of the world.
  • Knowledge of Saudi Nurse Managers Towards Robots The main objective of this study is to investigate the attitudes and knowledge of Saudi nurse managers towards the adoption of robotics for remote monitoring and management of elderly patient with chronic illness in an […]
  • Robotics. “Humans Need Not Apply” Video Mechanical muscles are more strong and reliable than humans, and the replacement of people by mechanisms in physical work allows society to specialize in intellectual work, develop economics and raise the standards of living.
  • Questionable Future of Robotics In this case, the lecture, which was focusing on the flow of robotics’ development, influenced my perception about the future, robotics’ impact on our lives, and the ability of robots to destroy the humanity.
  • Technology: Will Robots Ever Replace Humans? According to the author, one’s intelligence is not being solely concerned with the processing of data in the algorithmic manner, as it happened to be the case with AI it reflects the varying ability of […]
  • Double Robotics Website’s Tracking Strategy The goals of the Doublerobotics.com website are to familiarize audiences with the telepresence industry and to convince both corporate and individual potential customers to purchase a robot.
  • Robot-Assisted Rehabilitation: Article Critique The information about the groups of participants was available to clinicians and study personnel since the only post-stroke individual in the sample needed special procedures to participate.
  • Robotics in Construction Management: Impacts and Barriers The assessment of the economic feasibility of the robotization of individual construction processes is based on cost analysis and the calculation of payback.
  • Rights of ‘Feeling’ Robots and Humans Many futurists believe strongly that new laws will be needed to tame the behaviors and actions of robots. That being the case, autonomous robots might take advantage of their rights to control human beings.
  • Australian Robotics Inc.’s Project Management As such, the measure of success will focus on ascertaining whether or not the project develops a new family of highly flexible, “intelligent” robots that can be used in handling heavy industry tasks.
  • Electronic or Robotic Companions: Business Model The device the usage of which will help to destroy the language bar. The speech of any speaker will be translated and presented to the owner of the device in his/her native language.
  • Robotics’ Sociopolitical and Economic Implications The foremost benefits of Robotics for individuals can be formulated as follows: The continual development/implementation of the Robotics-related technologies will increase the chances of self-actualization, on the part of the potentially affected individuals.
  • Stihl Company and Its Robotics Automation involves the use of robots in the production process. The company’s productivity has come as a result of the automation production practices and its presence across the globe.
  • Welcome Robotic for Abu Dhabi Women College In the year 2009, the college opened a second banch in the city of khalifa to cater for the students who encounter problems relocating to the capital city.
  • Fiat Company: Deployment of Robotics in Manufacturing The technology also enhanced the reduction of production costs by reducing the number of working days without effecting the production and the performance of the company at its peak.
  • Projects “Cyborg” and “New Electrical Apparatus” in Robotics In fact, although Project Cyborg included some medical expertise, the purpose is significantly similar to the project by Nicholson and Carlisle largely because a medical achievement is not one of their aims.
  • Meteorite or Puck Hunt: Autonomous Mobile Robot The Development of the Design Being the first time that we are taking part in this type of competition, we decide to work out a plan that would help us develop the autonomous mobile robot […]
  • Marketing the Wireless Robotic Car By sending the robotic car to a chemical hazard, it is possible to determine the extent of spillage of a liquid or a solid pollutant.
  • The Use of Robots in Warfare The military advancement in the use of robots in warfare will at long last essentially drastically reduce the role of human beings in war. The increased use of robots in the battlefield needs countries to […]
  • A Mobile Robotic Project in the Ohio State University Medical Center In order for the project to be successful there must be a one-to-one contact between those implementing the project and the staff at the hospital.
  • Autonomous Controller Robotics: The Future of Robots The middle level is the Coordination level which interfaces the actions of the top and lower level s in the architecture.
  • How Will Autonomous Robots Change Military Tactics?
  • Will Romantic Relationships Be Formed With Robots?
  • What Were the First Industrial Robots in America Used?
  • Will Robots and Humanoids Take Over the World?
  • Are Robots Beneficial for the Society?
  • Will Robots Automate Your Job Away?
  • Why Not Use Robots to Stabilize Stock Markets?
  • Will Robots Change Our Lives in the Future?
  • How Can Robots Effect Children’s Development?
  • Will Robots Create Economic Utopia?
  • Why Robots Are Start Over the World With Breakthrough Technology?
  • Will Robots Live With Humans in Harmony?
  • Can Humanoid Service Robots Perform Better Than Service Employees?
  • How Can Robots Be Used to Help Students?
  • Will Robots One Day Rule the World?
  • Why Should Robots Not Be Pursued?
  • How Do Robots Impact Careers in the Medical Field?
  • Why Will Robots Always Need Us?
  • Are Robots Taking Control of Human Tasks?
  • How Can Robots Have Human-Like Intelligence?
  • Can Service Robots Hamper Customer Anger and Aggression After a Service Failure?
  • Are Robots the Solution to Equality in the Job Interview Process?
  • How Can Robots Replace 60% of Jobs?
  • Are Sex Robots the Next Big Sexual Revolution?
  • How Can Robots Solve the Problem of Aging Population?
  • Are Surgical Robots the Future of Medicine?
  • How Can Robots Work More Efficient Than Humans?
  • Should Robots Intelligence Becoming Smarter Than Us and Make?
  • What Are Robots and How Are They Being Used Nowadays?
  • Are Robots and Animals More or Less Similar to One Another Than Robots and Humans?
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An Essay on the Advantages and Disadvantages of Robots

Robots are becoming increasingly common in our world, offering a wide range of benefits and posing unique challenges. This essay explores the advantages and disadvantages of robots, including their ability to perform complex tasks, improve efficiency, and reduce costs, as well as their potential impact on employment and human autonomy.

Essay About The Rise of Robotics – Pros and Cons

Introduction

Robotics is an emerging field that is transforming the way we live and work. Robots are becoming increasingly common in industries ranging from manufacturing and healthcare to education and entertainment, offering a wide range of benefits and posing unique challenges.

Advantages of Robots

One of the primary advantages of robots is their ability to perform complex tasks with precision and accuracy. Robots can work tirelessly without the need for breaks, reducing labor costs and improving efficiency. They can also operate in dangerous or hazardous environments, protecting human workers from harm.

Another advantage of robots is their ability to collect and analyze vast amounts of data, offering valuable insights and opportunities for optimization. They can also improve product quality and consistency, reducing the likelihood of errors or defects.

Disadvantages of Robots

Despite their many advantages, robots also pose unique challenges, including the potential impact on employment and human autonomy. As robots become increasingly sophisticated and capable, there is a risk that they may displace human workers in certain industries, leading to job loss and economic disruption.

In addition, the use of robots raises ethical concerns about the relationship between humans and machines. As robots become more autonomous and independent, they may challenge traditional notions of human control and decision-making, raising important questions about accountability and responsibility.

In conclusion, robots are a rapidly evolving technology that offer a wide range of benefits and challenges. While they have the potential to improve efficiency, reduce costs, and enhance our quality of life, they also raise important questions about employment, ethics, and human autonomy. As we continue to explore the possibilities of robotics, it is important to consider the potential risks and benefits, and to work towards a future in which humans and machines can coexist in harmony.

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Essay Service Examples Technology Robots

Essay on Robots in the Future

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Robotics Future in 2025

  • Swarm Robotics. In swarm robotics there are numbers of robots who communicate with each other and perform different task in very short time with high precision.
  • Micro robots. Micro robots can be deployed in places which in inaccessible for human or which is too dangerous or relatively small. So, micro robots can go in such places and work efficiently.
  • Modular Robots . Modular robots are actually toys that consists of blocks or cubes, that can arrange themselves in specific way to do some tasks. The small blocks usually have magnets so they can attach with other blocks firmly.
  • Intellectual Robots. In this time engineers and researchers are working on humanoid robots that can think and work like human. In humanoid robots, artificial intelligence and machine learning technology is incorporated so it can behave and react like human. Recently Pepper and Zora robots were introduced by different companies. The specialty of these robots is that they can understand the expressions of human and react according to them.
  • Alternate powered robots. Alternate powered robots use solar energy, wave energy when there is no electricity.
  • Exoskeleton. Exoskeleton are external skeleton that supports physical disable persons. Exoskeletons also finds its application in military for injured soldiers.

How Robots Will Transform Our Future?

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Advantages and Disadvantages of Robots: Band nine IELTS Essay

Robots are a big topic these days. From self-driving cars to operations, more and more tasks seem to be being taken over by robots. This band nine sample essay looks at this topic. Keep scrolling for information about why this essay is band nine including structure, grammar and a vocabulary list.

Some people think that robots are very important to future human development. Others think that they are dangerous and have negative effects on society. Discuss both sides and give your point of view.

Increasing automation has become a controversial topic in recent years. In this essay, I will compare the advantage that robots can perform tasks that are dangerous or difficult with the disadvantage that robots could take over jobs. I will conclude that, despite the drawbacks, this type of development is positive. 

One of the main advantages of robots is that they are able to perform tasks that would be dangerous or difficult for a person. For example, robots are already used for bomb disposal , which keeps people out of harm’s way .  Similarly, robots are capable of performing delicate and precise tasks in manufacturing and medical tasks settings with a high degree of accuracy. If we allow people to continue to do these jobs, it will lead to lives being lost and inferior products being made. 

However, one of the main issues with this is that robots taking over other jobs that are currently done by humans. In the past, we have seen auto manufacturing turn from a source of jobs to something that is mostly automated. If we see this happen in other industries, it could lead to widespread unemployment and economic insecurity . Although this would be good for factory owners, this type of unemployment has wider negative societal impacts . 

In conclusion, while robots have the potential to greatly improve our lives by performing risky and difficult tasks, they also have the potential to take people’s jobs. Ultimately, I believe that this type of technological progress can lead to the creation of new jobs. 

This is an example of a ‘both sides and an opinion’ type essay. For this type of essay, you need to present both sides of the argument before giving your point of view. I prefer to dedicate one body paragraph to each side before writing my opinion briefly in the conclusion. You can see that structure here. Each of the body paragraphs is also about one specific thing and goes into plenty of detail.

Beyond there being no grammar mistakes in this essay, you can see that there are a wide range of grammar types here. One that I have used several times is an if sentence. Check out our new guide to this highly flexible grammar type .

Below, you can find a list of the complex and interesting grammar in the essay. All of the words below are underlined in the essay and appear in the same order as they do above.

The process of replacing human jobs with machines.

Development

The process of making new things or improving things that already exist. 

Bomb disposal

The practice of safely and carefully handling, disarming and removing bombs or other explosive devices.

Out of harm’s way

Another way of saying ‘away from risk’.

Lower in quality compared to other things.

Unemployment

The amount of unemployment is the number of people without a job. 

Economic insecurity

This refers to the extent to which people worry about being able to pay for things. 

Societal impacts

How something affects society as a whole.

Technological progress

The advancement of things like tools and machines.

Making something operate automatically.

If something is risky it involves a chance of failure or harm.

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Essay On Robot – 10 Lines, Short and Long Essay

Essay On Robot – 10 Lines, Short and Long Essay

Key Points to Remember When Writing an Essay On Robot

10 lines on robot in english, a paragraph on robot, short essay on robot in english, long essay on robots for children, interesting facts about robots for kids, what will your child learn from the essay on robot.

In a constantly evolving world, technology has been at the forefront of every individual’s daily life. Advancement after advancement has moulded, transformed, and developed technology to make our lives easier and expose us to endless possibilities. It is the perfect amalgamation of nature and science. In this technological era, robots have become integral to our lives, shaping how we work, play, and imagine the future. 

This essay on robots in English delves deep into the world of these mechanical marvels, offering insights suitable for readers of all ages, especially the essay for kids, developed for minds curious about the science and magic behind these machines. Essay writing is a valuable skill for students, and this article helps young learners enhance their vocabulary, improve their essay writing skills, and learn to organise and communicate their thoughts better.

Understanding the nuances and intricacies of robots is essential when writing an essay on robots. These mechanical entities are not just products of science fiction; they’re a part of our modern reality. Here are some essential pointers to keep in mind:

  • Research is Crucial: Before starting your essay, ensure you’ve conducted thorough research. Whether it’s their history, functionality, or potential future impact, a well-informed perspective will always stand out.
  • Distinguish between Types: Not all robots are created equal. Some are simple tools, while others have complex AI integrations. Clarify whether you’re talking about basic programmable machines, humanoid robots, or AI-driven entities.
  • Real-world Examples: Using real-world examples can make your essay more relatable and engaging. To illustrate your points, mention popular robots like Roomba (the cleaning robot) ( 1 ) or Sophia (the humanoid robot) ( 2 ).
  • Address Ethical Concerns: The world of robotics is not without controversies. It’s crucial to address the ethical implications, like potential job losses or the moral ramifications of creating sentient machines ( 3 ).
  • Highlight Benefits and Challenges: Robots offer numerous advantages, from efficiency to accuracy. However, they also have challenges, like maintenance and potential malfunctions. Ensure your essay provides a balanced view ( 4 ).
  • Stay Updated: The field of robotics is ever-evolving. Always ensure your information is up-to-date to keep your essay relevant and accurate.
  • Engage the Reader: Remember, your essay should be informative and engaging. Use anecdotes, questions, or interesting facts to keep your readers hooked ( 5 ).

Robots are fascinating machines that have intrigued and assisted humans for many years. As we delve into the world of automation, robots play a pivotal role in reshaping our future. Here’s a simple essay for class 1 students to understand more about robots.

10 Lines On Robot - Infographics

  • A robot is a machine that can do tasks automatically or with guidance.
  • Robots, or humanoid robots, can look like humans or have other shapes.
  • They are used in factories to do repetitive tasks quickly.
  • Some robots can even speak, dance, and respond to commands.
  • Robots are often used in places that are dangerous for humans, like space or deep under the sea.
  • They are powered by batteries or electricity and are controlled by computer programs.
  • Scientists are continuously working to make robots smarter.
  • Robots are also used in hospitals to assist doctors in surgeries.
  • They can be large, like car-making robots, or very small, like nanobots used in medicine.
  • Robots will become an even more significant part of our lives as technology improves.

Robots have seamlessly integrated into various aspects of human society, altering our perception of what’s possible and pushing the boundaries of innovation. Whether assisting in medical surgeries or entertaining us with dance routines, their influence is undeniably widespread. Here’s a concise look into the realm of these mechanical wonders:

Robots represent both an artistic marvel and a technological breakthrough in the mosaic of human advancement. These programmable machines, designed to perform tasks with precision and efficiency, are a testament to human ingenuity and our relentless pursuit of progress. As robots continue to evolve, they are symbolic of cutting-edge technology and harbingers of a future where humans and machines coexist in harmony, collaborating to achieve shared objectives. The dance between humanity’s creative spirit and its mechanical offspring promises an exciting, albeit challenging, future ahead.

Short Essay On Robot In English

The world of robots is vast, intriguing, and reflective of human ambition. As our capabilities expand, so does our desire to create machines that can emulate, if not surpass, our abilities. This short essay on robots aims to glimpse this fascinating intersection of science, technology, and imagination.

Once a mere figment of imaginative literature, robots now stand at the forefront of technological revolutions. They are no longer just tools in assembly lines but have ventured into our homes, hospitals, and even the skies above. As helpers, they vacuum our floors, assist surgeons in performing delicate operations, and explore realms beyond human reach, like the depths of oceans and the vastness of space. But beyond their functional roles, robots challenge our understanding of consciousness, ethics, and the very essence of life. The rapid advances in artificial intelligence only augment these challenges, propelling robots closer to emulating human-like thought processes. As they evolve, we must navigate the complexities they introduce to our lives ethically and practically. In essence, the journey of robots is not just about technological feats; it’s a mirror reflecting humanity’s aspirations, dilemmas, and, potentially, its future.

The universe of robots is as enthralling as it is vast. Robots are not just characters in our favourite sci-fi movies; they are around us, making our lives more manageable and efficient. Aimed primarily at young minds, this essay encapsulates the essence of these incredible machines. Perfect as a ‘My robot essay for class 3,’ this write-up promises to be informative and engaging.

What is a Robot?

A robot is designed to execute one or more tasks with speed and precision automatically. It can be guided by an external control device or a pre-defined program, and some even use artificial intelligence to make decisions. Robots come in various shapes, sizes, and functionalities, from toy robots that you might play with to high-tech ones that manufacture cars in factories.

Advantages Of Robot

Robots have revolutionised many sectors of our society. Here are some of the benefits they offer:

1. Efficiency: Robots can work tirelessly 24/7 without getting exhausted, ensuring continuous production or service.

2. Precision: Robots are impeccable in tasks that require exact measurements, such as surgeries or assembling tiny components.

3. Hazardous Tasks: Robots can be deployed in dangerous environments like deep-sea exploration or bomb defusal, reducing human risk.

4. Cost-Efficient: Over time, robots can be more cost-effective as they don’t require benefits, pensions, or sick days.

5. Space Exploration: Robots like Mars Rovers can explore other planets , providing valuable information without risking human lives.

6. Repetitive Tasks: Robots can easily handle monotonous jobs, freeing up humans for more creative endeavours.

Disadvantages Of Robot

Despite their benefits, robots also come with some challenges:

1. Job Displacement: As robots take over specific industries, there is a risk of job losses for humans.

2. High Initial Cost: A robot’s initial setup and programming can be expensive.

3. Dependency: Over-reliance on robots might reduce human skill sets and innovation.

4. Maintenance: Robots require regular upkeep, and malfunctions can halt production.

5. Lack of Emotion: Robots don’t possess emotions, which can be a disadvantage in professions needing human empathy.

6. Ethical Concerns: The development of AI in robots poses ethical questions regarding consciousness, rights, and control.

The captivating world of robots is filled with wonders, surprises, and intriguing tidbits. Here are some fun and interesting facts for young minds eager to uncover the mysteries of these amazing machines. Let’s dive into the robot universe and explore things you might not have known!

1. First Robot Toy: The first robot toy, ‘Robby the Robot,’ was made in 1956. A robot character inspired it in a movie!

2. Fish Robots: There are robots shaped like fish, called robotic fish, that swim in water and help scientists study marine life.

3. Mars Exploration: Mars Rovers, like Curiosity and Perseverance, are robots that roam the surface of Mars and send valuable data back to Earth.

4. Robot Olympics: Yes, you heard that right! There’s a competition called RoboGames where robots compete in over 50 different events, including soccer and sumo wrestling.

5. Tiniest Robot: The world’s smallest robot is just a little bigger than the size of a speck of dust. Scientists hope it can be used for medical purposes inside the human body.

6. Robot Artists: Some robots are designed to draw and paint, creating wonderful pieces of art.

7. Language Learning: Honda’s robot ASIMO can understand multiple languages, making it multilingual.

8. Robotic Pets: In some parts of the world, people have robotic dogs or cats as pets. These robots can mimic the behaviour of real animals without needing food or walks!

From the ‘Robots in Our Life’ essay, your child will gain a foundational understanding of the role and significance of robots in today’s world. Tailored even for the youngest readers, like those exploring ‘My robot essays for class 1,’ the essay will spark curiosity , enhance vocabulary , and provide insights into the technological marvels shaping their future.

1. Can Robots Replace Human Intelligence?

While robots can emulate specific aspects of human intelligence and excel in certain tasks, they currently cannot replicate human cognition’s emotional and holistic complexity.

2. Who Is The Inventor Of Robot?

George Devol created the first modern robot, ‘Unimate,’ in 1954, marking the onset of industrial robotics.

3. What Is The Full Form Of Robot?

The word ‘robot’ doesn’t have a full form; it comes from the Czech word ‘robota,’ which means ‘forced labour.’

4. Who Is The First Human Robot?

Regarding humanoid design, ‘Elektro’ was introduced in 1939 at the New York World’s Fair, but for advanced humanoid robots with AI capabilities, Honda’s ‘ASIMO’ from 2000 is a notable example.

Robots continue to shape our world in myriad ways with their evolving capabilities and roles, from industrial applications to companionship. As we march towards a more technologically advanced future, we must understand and adapt to the symbiotic relationship we share with these mechanical marvels.

References/Resources:

1. Jones, J.L.; Robots at the tipping point: the road to iRobot Roomba; EEE Robotics & Automation Magazine; https://ieeexplore.ieee.org/abstract/document/1598056; March 2006

2. Retto, J.; Sophia, first citizen robot of the world; ResearchGate; https://www.researchgate.net/profile/Jesus-Retto/publication/321319964_SOPHIA_FIRST_CITIZEN_ROBOT_OF_THE_WORLD/links/5a1c8aa2a6fdcc0af3265a44/SOPHIA-FIRST-CITIZEN-ROBOT-OF-THE-WORLD.pdf

3. Torresen, J.; A review of future and ethical perspectives of robotics and AI; Frontiers in Robotics and AI; https://www.frontiersin.org/articles/10.3389/frobt.2017.00075/full

4. Soffar, H.; Advantages and disadvantages of using robots in our life; Online Sciences; https://www.online-sciences.com/robotics/advantages-and-disadvantages-of-using-robots-in-our-life/; May 2016

5. Hyland, K.; Representing readers in writing: Student and expert practices; Linguistics and Education; https://www.sciencedirect.com/science/article/abs/pii/S0898589806000404; 2005

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How to do IELTS

IELTS Essay: Robots and Jobs

by Dave | General Training | 3 Comments

IELTS Essay: Robots and Jobs

This is an IELTS writing task 2 sample answer essay on the topic of robots and jobs from the real IELTS general training exam.

Please consider supporting my efforts to creative high quality IELTS materials for students around the world by signing up for my Patreon (and don’t miss any of my exclusive IELTS Ebooks)!

Machines are taking over more and more jobs previously done by humans.

Discuss the advantages and disadvantages and give your own opinion.

There has been growing concern in recent years related to the number of positions robots now occupy in the workforce. In my opinion, though this has clear disadvantages for the average worker, it is a positive overall.

Those who decry this trend towards automation point out its impact on unskilled labourers. The most affected live in poorer, predominately rural areas rather than cities where there are more white collar workers. For example, in the United States in the primarily agrarian economies of the Midwest, the number of jobs for farmers and factory workers has been in steep decline. The result is either than many families now struggle to make ends meet and are embittered towards the current economic model or they leave their homes to earn subsistence wages in the city. This migrations brings its own negatives as cities become overcrowded and the consumer class in the countryside dwindles.

Nonetheless, the forward progress of technology is a positive sign for the future. There is little doubt that the transitional period will be rife with unrest among working class people; however, this will be more than compensated for by future generations. In the future, workers will be free to pursue their passions rather than having to toil in manual jobs better done by robots. This could lead to a concomitant rise in the number of scientists, artists, researchers, artisans, and other skilled positions. There is even consideration these days of a universal basic wage that would sever individuals from the necessity of work and open up a range of leisure options for the average citizen.

In conclusion, though the dominance of robotic technologies has short-term downsides, it will ultimately lead to a flourishing of human creativity and innovation. It is therefore important for governments to capably manage this transition.

1. There has been growing concern in recent years related to the number of positions robots now occupy in the workforce. 2. In my opinion, though this has clear disadvantages for the average worker, it is a positive overall.

  • Paraphrase the overall essay topic.
  • Write a clear opinion. Read more about introductions here .

1. Those who decry this trend towards automation point out its impact on unskilled labourers. 2. The most affected live in poorer, predominately rural areas rather than cities where there are more white collar workers. 3. For example, in the United States in the primarily agrarian economies of the Midwest, the number of jobs for farmers and factory workers has been in steep decline. 4. The result is either than many families now struggle to make ends meet and are embittered towards the current economic model or they leave their homes to earn subsistence wages in the city. 5. This migrations brings its own negatives as cities become overcrowded and the consumer class in the countryside dwindles.

  • Write a topic sentence with a clear main idea at the end.
  • Explain your main idea.
  • Develop it with specific examples.
  • Continue to develop it.
  • State the result or develop the idea fully.

1. Nonetheless, the forward progress of technology is a positive sign for the future. 2. There is little doubt that the transitional period will be rife with unrest among working class people; however, this will be more than compensated for by future generations. 3. In the future, workers will be free to pursue their passions rather than having to toil in manual jobs better done by robots. 4. This could lead to a concomitant rise in the number of scientists, artists, researchers, artisans, and other skilled positions. 5. There is even consideration these days of a universal basic wage that would sever individuals from the necessity of work and open up a range of leisure options for the average citizen.

  • Write a new topic sentence with a new main idea at the end.
  • Explain your new main idea.
  • Include specific details and examples.
  • The more specific, the better.
  • Add more detail but don’t add in a new main idea.

1. In conclusion, though the dominance of robotic technologies has short-term downsides, it will ultimately lead to a flourishing of human creativity and innovation. 2. It is therefore important for governments to capably manage this transition.

  • Summarise your main ideas.
  • Include a final thought. Read more about conclusions here .

What do the words in bold below mean?

There has been growing concern in recent years related to the number of positions robots now occupy in the workforce. In my opinion, though this has clear disadvantages for the average worker , it is a positive overall .

Those who decry this trend towards automation point out its impact on unskilled labourers . The most affected live in poorer, predominately rural areas rather than cities where there are more white collar workers . For example, in the United States in the primarily agrarian economies of the Midwest , the number of jobs for farmers and factory workers has been in steep decline . The result is either than many families now struggle to make ends meet and are embittered towards the current economic model or they leave their homes to earn subsistence wages in the city. This migrations brings its own negatives as cities become overcrowded and the consumer class in the countryside dwindles .

Nonetheless , the forward progress of technology is a positive sign for the future. There is little doubt that the transitional period will be rife with unrest among working class people; however, this will be more than compensated for by future generations. In the future, workers will be free to pursue their passions rather than having to toil in manual jobs better done by robots. This could lead to a concomitant rise in the number of scientists, artists, researchers, artisans , and other skilled positions. There is even consideration these days of a universal basic wage that would sever individuals from the necessity of work and open up a range of leisure options for the average citizen.

In conclusion, though the dominance of robotic technologies has short-term downsides , it will ultimately lead to a flourishing of human creativity and innovation . It is therefore important for governments to capably manage this transition.

growing concern increasing worry

positions jobs

occupy take

clear disadvantages definite negatives

average worker normal person with a job

positive overall good in general

decry argue against

trend pattern

automation things being done automatically/by robots

unskilled labourers work that doesn’t require much skill

most affected impacted greatly

predominately rural areas mostly just in the countryside

white collar workers people with better jobs

primarily agrarian economies mostly based on farming

Midwest the middle and Western area of the United States

steep decline going down a lot

result effect

struggle to make ends meet have a tough time making enough money

embittered angry towards

current economic model the way the economy is now

earn subsistence wages just make enough to survive

migrations travelling/moving

negatives bad parts

overcrowded too many people

consumer class people who buy things

dwindles disappears

nonetheless regardless

forward progress development

positive sign good thing

there is little doubt that it is clear

transitional period time of change

rife full of

unrest unhappiness

more than compensated for more than makes up for

pursue their passions do what they want

toil work pointlessly/hard

manual jobs physical jobs

concomitant rise related increase

artisans skilled makers

consideration area to think about

universal basic wage salary for all people

sever cut off from

necessity of work needing to work

open up allow for

range variety of

leisure not doing anything

dominance supremacy

short-term downsides negatives in the short-term

ultimately in the end

flourishing improving

innovation new ideas

capably manage do well handling

Pronunciation

ˈgrəʊɪŋ kənˈsɜːn   pəˈzɪʃənz   ˈɒkjʊpaɪ   klɪə ˌdɪsədˈvɑːntɪʤɪz   ˈævərɪʤ ˈwɜːkə ˈpɒzətɪv ˈəʊvərɔːl dɪˈkraɪ   trɛnd   ˌɔːtəˈmeɪʃ(ə)n   ʌnˈskɪld ˈleɪbərəz məʊst əˈfɛktɪd   prɪˈdɒmɪneɪtli ˈrʊərəl ˈeərɪəz   waɪt ˈkɒlə ˈwɜːkəz ˈpraɪmərɪli əˈgreərɪən i(ː)ˈkɒnəmiz   ˈmɪdˈwɛst stiːp dɪˈklaɪn rɪˈzʌlt   ˈstrʌgl tuː meɪk ɛndz miːt   ɪmˈbɪtəd   ˈkʌrənt ˌiːkəˈnɒmɪk ˈmɒdl   ɜːn səbˈsɪstəns ˈweɪʤɪz   maɪˈgreɪʃənz   ˈnɛgətɪvz   ˌəʊvəˈkraʊdɪd   kənˈsjuːmə klɑːs   ˈdwɪndlz ˌnʌnðəˈlɛs ˈfɔːwəd ˈprəʊgrəs   ˈpɒzətɪv saɪn   ðeər ɪz ˈlɪtl daʊt ðæt   trænˈsɪʒənl ˈpɪərɪəd   raɪf   ʌnˈrɛst   mɔː ðæn ˈkɒmpɛnseɪtɪd fɔː pəˈsjuː ðeə ˈpæʃənz   tɔɪl   ˈmænjʊəl ʤɒbz   kənˈkɒmɪtənt raɪz   ˌɑːtɪˈzænz kənˌsɪdəˈreɪʃən   ˌjuːnɪˈvɜːsəl ˈbeɪsɪk weɪʤ   ˈsɛvə   nɪˈsɛsɪti ɒv wɜːk   ˈəʊpən ʌp   reɪnʤ   ˈlɛʒə   ˈdɒmɪnəns   ʃɔːt-tɜːm ˈdaʊnˌsaɪdz ˈʌltɪmɪtli   ˈflʌrɪʃɪŋ   ˌɪnəʊˈveɪʃən ˈkeɪpəbli ˈmænɪʤ  

Vocabulary Practice

Remember and fill in the blanks:

There has been g_______________n in recent years related to the number of p___________s robots now o_________y in the workforce. In my opinion, though this has c_________________s for the a_________________r , it is a p___________________l .

Those who d________y this t_________d towards a_________________n point out its impact on u________________________s . The m_____________d live in poorer, p_________________________s rather than cities where there are more w__________________________s . For example, in the United States in the p_____________________________s of the M_________t , the number of jobs for farmers and factory workers has been in s_____________e . The r______t is either than many families now s__________________________t and are e__________________d towards the c________________________l or they leave their homes to e___________________________s in the city. This m___________s brings its own n_____________s as cities become o_______________d and the c___________________s in the countryside d____________s .

N______________s , the f_______________s of technology is a p_______________n for the future. T________________________t the t______________________d will be r___e with u____________t among working class people; however, this will be m______________________________r by future generations. In the future, workers will be free to p________________________s rather than having to t_____l in m___________________s better done by robots. This could lead to a c________________________e in the number of scientists, artists, researchers, a_____________s , and other skilled positions. There is even c________________n these days of a u_______________________e that would s______r individuals from the n__________________k and o___________p a r_________e of l_________e options for the average citizen.

In conclusion, though the d_______________e of robotic technologies has s_______________________s , it will u_____________y lead to a f____________g of human creativity and i______________n . It is therefore important for governments to c___________________e this transition.

Listening Practice

Learn more about this topic in the video below and practice with these activities :

Reading Practice

Read more about this topic and use these ideas to practice :

https://www.theatlantic.com/magazine/archive/2018/01/iron-chefs/546581/

Speaking Practice

Practice with the following speaking questions from the real IELTS speaking exam :

  • Why did you choose your job?
  • How much work do you do in a week?
  • Do you have to work on weekends as well?

Writing Practice

Practice with the related topic below and then check with my sample answer:

Nowadays more tasks at home and work are being performed by robots.

Is this a negative or positive development?

IELTS Writing Task 2 Sample Answer Essay: Robots at Home (Real Past IELTS Tests/Exams)

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Dr AQEEL F. DURRANI

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Essay on Robots: Top 17 Essays | Intelligent Machines | Engineering

write an essay on robot

Here is an essay on ‘Robots’ for class 11 and 12. Find paragraphs, long and short essays on ‘Robots’ especially written for college students.

Essay on Robots

Essay Contents:

  • Essay on the Reasons for Using Robots

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Essay # 1. Definition of Robot:

Robot, once a creature of science fiction, is today a reality. It is the off-shoot of the second industrial revolution. Robot can be defined as a programmable multi­function manipulator designed or intelligent machine to move material, parts, tools, or specialised devices through variable programmed motions for the performance of variety of tasks.

Today’s robots are fitted with a variety of sensors (like vision, ranging, force-torque, touch, proximity, etc.) sending the sensory information to the computer which processes them subject to given objective and constraints, and develops action decisions for the robot actuators.

Robots are more flexible in terms of ability to perform new tasks or to carry out complex sequences of motion than other categories of automated manufacturing equipment. Generally speaking, robots are machines with some degree of intelligence and operated under the control of a mini or micro-computer.

Industrial robots (tough and tireless) are capable of handling a variety of jobs right from material handling to complex assembly tasks. They perform hazardous and monotonous tasks with tireless precision. They improve productivity and reduce manufacturing costs. They can perform complex jobs. They can even cope with changing conditions in the workplace, when fitted with sensors and adaptive controls.

Essay # 2. Basic Elements of Robots :

The basic elements of industrial robots are manipulator, controller, end effector, sensors and energy source. (Refer Fig. 38.1).

Basic Elements of Robots

The manipulator comprising of base, arm and wrist are the most obvious parts of the robot. The robot’s movements are executed by the mechanical parts like links, power joints, and transmission system along with internal sensors housed within the manipulator.

The controller acts like a brain of robot. It performs the functions of storing and sequencing data in memory, initiating and stopping the motions of the manipulator, and interacting with the environment.

End effector is the tool, a sort of gripper, which directly interacts with the job. Grippers are being designed to handle a wide range of part configurations.

Sensors to sense the environment are essential for intelligent robots.

Energy source is required to cause movement of the manipulator arm. They may take the form of electrical, hydraulic or pneumatic devices.

Essay # 3. General Structure of Robot:

Figure 38.13 shows a general structure of an advanced robot. The operational unit consists of articulated mechanical system (AMS), (comprising of rigid links and kinetic joint), transmission system and actuators (which control the configuration of each articulation). The internal sensors are provided to indicate the position, velocity and forces of the end effector. The external sensors are provided to sense the environment.

write an essay on robot

The structural analysis program provides the user with integrated interactive processing from structural analysis to strength evaluation, by means of a pre-processor for graphics, geometrical modeling, finite element modeling and output graphic functions to be used for displaying the deformation quantity, indicating equi-stress lines, stress diagrams, excess stress, dynamic response and animation.

This system displays the element division diagrams and the vibration characteristics of the entire robot as a result of the frequency response calculation for the component parts of the robot system. In the design stage the strength and rigidity of each part are analysed, while the dynamic characteristics of the entire system are predicted and evaluated for lighter weight and higher rigidity.

ii. Mechanical Design of a Robot :

The mechanical design of a robot is an iterative process involving evaluation and choice among a large number of engineering and technical considerations in several disciplines.

A purely static, rigid-body approach to design is not sufficient and factors like mechanical system stiffness, natural frequencies, control system compatibility also need to be considered. A robot should be designed to have only the flexibility it needs to perform the range of tasks for which it is intended.

The various design consideration are:

(i) System Specification:

It includes range, reach, work envelope, load capacity.

(ii) System Configuration:

It includes the joint configuration, number of degrees of freedom, joint travel range, drive configuration.

(iii) System Performance:

It includes system velocity and acceleration, repeatability, resolution, accuracy, component life and duty cycle. Detailed design of major components concerns the robot structures, robot joints, actuators, transmission, wiring and routing of cables and hoses. One should evaluate the possible flexibility of the robot, grippers, tools, and peripheral units and integrate all components to one system.

Essay # 6. Classification of Robots:

Broadly three classes of robots could be considered:

(i) Pre-Programmable/Re-Programmable General Purpose Industrial Robots:

These operate fully by programmed computer control. These are most useful for all structured operations, i.e. activities whose motion and work handling requirements are known before hand and thus can be programmed.

The robot is taught before-hand to perform the necessary action in the teach mode. The robot can then take over and execute the operation repetitively such as in welding, painting, assembly of components for mass manufacturer, loading/unloading of jobs into and from machine tools, etc.

(ii) Tele-Operated, Man-Controlled Robots or Man-in-the-Loop Manipulator:

These differ from totally machine-controlled robots in the sense that the advantage of presence of man is taken in situations where it is not possible to anticipate all the motion and handling requirements in such details as to render them programmable or teachable for machine control. This type of requirement is found in hazardous locations.

The servo-driven master-slave manipulator with force feedback, or vehicle mounted heavy duty multi-axis power manipulator performs the necessary work in hazardous environment, taking commands from a human controller who can manipulate the slave arms at the scene of operation from safe location, relying for viewing on closed circuit television.

(iii) Intelligent Robots:

These are very advanced, state of the art robots and possess sufficient artificial or machine intelligence, somewhat analogous to the sensory perception of the neuro-muscular coordination that human beings are capable of.

Such intelligent robots can not only explore the environment on their own machine perceptions and evaluate them in real time, but also execute the necessary motor functions matching the action of their sensory inputs.

Advanced robots have been built with mobility to not only move over floors but also to climb, ability to avoid obstacles, high power-to-weight ratios, compactly assembled, with on board sensors, instruments and power supplies.

According to another general method of classification robots are classified as:

(i) Special purpose, designed and produced for a limited range of specific jobs, like welding, painting, casting, assembling, material handling etc.

(ii) General purpose of universal robots designed and produced to perform a wide variety of jobs. These may be non-servo-controlled, servo-controlled or sensory type depending on sophistication.

Essay # 7. Specifications of Robot:

i . Work Envelope:

Work envelope or work volume of a manipulator is defined as the envelope or space within which the robot can manipulate the end of the wrist. It depends on the number of types of joints, physical size of the joints and links and the ranges of various joints.

The shape of work volume is dependent upon the configuration of robot, for example, polar configuration has partial sphere as work space, cartesian coordinate configuration robot has a rectangular work space, and a cylindrical robot has a cylindrical work envelope.

ii .   Load Carrying Capacity:

It is dependent on the physical size and construction of robot, and also on the capability to transmit force and torque to the end effector in the wrist.

iii . Speed:

It varies from one point to other and it can be programmed into cycle so that different portions of cycle are performed at different speeds as desired. Maximum speed may be of the order of 2m/sec. In fact more important than speed is the accelerating and decelerating capability in a controlled manner. Robot may hardly achieve its top rated speed in view of its operation in a confined area.

iv . Repeatability:

It is the measure of the robot’s ability to position an object at a previously taught point in the work envelope. Due to inherent errors present (particularly due to mechanical sources), the robot will not be able to return to exact programmed point.

v . Control Resolution:

It refers to the capability of the system (both controller and the positioning device) to divide the range of total movement into closely spaced points than can be identified. Thus it would represent the minimum noticeable movement achievable. It may be mentioned that controller can generate pulses of very small duration but the positioning device should be able to respond and change its position accordingly.

In such a case:

write an essay on robot

Essay # 9. Control Systems for Robots :

Actuators (pneumatic, electrical, or hydraulic type) are used to move the joints of robots. Electric actuators may be d.c. servo motors or stepping motors. These are preferred type due to compatibility with computers, non-dependence on air or oil supply from outside source.

These are very common for sophisticated robots due to higher accuracy. Pneumatic cylinders are used for smaller robots as in material handling applications. Hydraulic actuators are used to exert high torque and greater speed.

The type of actuator, position and speed sensors, feed-back systems, etc., determine the dynamic response characteristics of the manipulator. Robot’s cycle time is dependent on the speed of response. It may be mentioned that while robots with greater stability are slower in response, the less stable system may tend to oscillate near the set value.

Microprocessor based controllers are used. A hierarchical structure approach is followed, i.e. each joint is actuated by its own controller, and a supervisory controller is used to coordinate the combined actuation of the joints and sequences of the motions.

Depending on sophistication desired, the robot control system may be:

(i) Simple Interlocked System:

This employs no servo control to achieve precise positioning. It is used for simple operations like pick-and-place. Limit switches are used for sequencing the actuation of the joints to complete the cycle.

(ii) Point-to-Point Control with Play Back Facility:

In this system, the various positions/locations, and the sequence to be followed in a cycle are programmed in the memory. The locations and their sequence are played back during the operation. Feed-back control is used to ascertain that desired location is attained.

(iii) Continuous Path Control:

The memory is big to hold information regarding locations of path. In this case path taken by the arm to reach final location is controlled. Servo control is used to maintain continuous control over the position and speed of the manipulator.

(iv) Intelligent Robot:

These can take own decisions when things go wrong during the cycle. These can interact with their environment, communicate with human beings, make computations during the motion cycle, incorporate advanced sensors like machine vision.

Essay # 10. Kinematic Control of Robots:

The various ways in which the robots could be controlled are:

(i) Non-Servo Control:

Non-servo-controlled robots move their arms in an open loop fashion between exact end positions on each axis, or along predetermined trajectories in accordance with fixed sequence. Such controls could be executed either by sequence controllers or by limit switches.

In latter type, more than one position is defined along an axis by indexable stops inserted or withdrawn automatically. A sequence type control steps through a number of pre-set logic steps, which causes one or more joints to move until the appropriate limit switch on the axis is reached.

(ii) Servo-Controlled Robots:

These incorporate feedback devices on the joints or actuators of the manipulator which continuously measure the position of each axis. These have much more manipulative quality and can position the end effector anywhere within the total work envelope.

These could be further classified as:

(a) Point-to-Point Control:

In this system each joint is controlled by an independent position servo with all joints moving from position to position independently. In it, each joint or axis of the robot is moved individually until the combination of joint positions yields the desired position of the end effector.

The way each joint is to move to achieve final position is practiced before-hand and stored in a memory device. As per this stored information each joint runs freely at its maximum or limited rate until it reaches its final position.

Point-to-point motion could be controlled independently in sequence joint control, uncoordinated joint control, or terminally co-ordinated joint control. In sequential joint operation one joint is activated at a time, while all other axes are immobilised.

A single joint may operate more than once in a sequence associated with such a motion. The resulting path of the manipulator end effector will thus have a zig-zag form associated with the motion directions of the manipulator joints.

It results in immediate simplification in the control. However, it causes longer point-to-point motion time. In uncoordinated joint control, the motions are not coordinated, in the sense that if one joint has made some fraction of its motion it does not imply that all other joints will have made the same fractions of their respective motions. When each joint reaches its final position, it holds and waits until all the joints have completed their motions.

Due to non-coordination of motion between joints, the path and velocity of end effector between points is not easily predicted. Terminally co-ordinated joint control is the most useful type of point-to-point control. In it the motion of individual joints are co-ordinated so that all joints attain their final position simultaneously.

It is used primarily in applications where only the final position is of interest and the path is not a prime consideration. Where the continuous path of the end effector is of primary importance to the application, then continuous path control is used.

(b) Continuous Path Control:

It is used where continuous path of the end effector is of primary importance. Continuous path motions are produced by interpolating each joint control variable from its initial value to its desired final value.

Each joint is moved the maximum amount required to achieve the desired final positions to give the robot tool a controlled predicted path. All the joint variables are interpolated to make the joints complete their motions simultaneously, thus giving a co-ordinated joint motion.

Depending on the quantum of information used in the motor control calculation the basic categories of continuous path control techniques are:

(i) Servo control approach (controller has a stored representation of the path to be followed, and the drive signals to the robot’s motors are determined by performing all calculations based on the past and present path tracking error);

(ii) Preview control or feed forward control. (It uses some knowledge about how the path changes immediately ahead of the robot’s current location, in addition to the past and present tracking error used by the servo-controller); and

(iii) Path planning or trajectory calculation approach (controller is fed with a complete description of the manipulator from one point to another. It uses a mathematical physical ‘model’ of the arm and its load, and pre-computes an acceleration profile for every joint, predicting the nominal motor signals that should cause the arms to follow the desired path).

Continuous path control requires lot of memory space to store all the axis positions needed to smoothly record the desired path. In practice, the device is moved actually through the desired path manually and the position of each axis is recorded on a constant time base, thus, generating continuous time history of each axis position.

Essay # 11. Expected Qualities in Robots :

The qualities expected in robots are listed below:

(i) Vision:

The utility of robots will increase several folds by incorporation of vision systems. Vision systems capable of identifying the part for pick up by pattern recognition data based on object’s silhouette have been developed.

Such systems can transform the position and orientation of the object into robot co-ordinates enabling the robot to acquire the object in a known manner. Other type of vision systems can recognise different objects. For each part, a number of distinguishing geometric features can be delineated, including area, perimeter, centre of gravity, number of holes and maximum and minimum radii.

In another vision system, a fibre sensor is used to look at a seam to be welded and automatically adjusts the robot’s weld path.

(ii) Tactile Sensing:

Robots with tactile sensor can identify an object and perform the function based on the referenced data. Grippers have been developed which can pick up any shape of objects and at the same time not exert enough force to crush them.

(iii) Mobility:

Usually the robot stands in a single station for the bulk of factory requirements. However, to handle intermittent and asynchronous demands, compact mobile device which could move in complex paths and access large areas economically has been developed.

(iv) Other Important Qualities in the Process of Development in Robots are:

Computer interpretation of the visual and tactile data, multiple appendage hand-to-hand co-ordination, minimised spatial intrusion, general purpose hands, man-robot voice communication, total self-diagnostic fault tracing, inherent safety, interaction with other technologies, etc.

Essay # 12. Performance Testing of Robots :

Usually following tests are performed on robots to judge their suitability.

(i) Geometric Values:

These include:

(a) Workspace:

Workspace, i.e. the envelope reached by the centre of the interface between the wrist and the tool, using all available axis motions.

(b) Static Behaviour:

It is indication of the deformation of a fixed robot structure under different load cases.

(c) Position Accuracy:

The repeatable accuracy that can be achieved at nominal load and normal operating temperature. This is based on two types of errors, viz., repeatability and reversal error.

(d) Path Accuracy:

The path accuracy of a path- controlled robot indicates at what level of accuracy programmed path curves can be followed at nominal load. The typical errors in path accuracy of a robot are: path accuracy or mean-path dispersion error, trailing error or mean-path deviation, overshoot during acceleration/deceleration.

(e) Reproduction of Smallest Steps:

With very low velocities, the slip-stick effect may become serious and it is hard to control.

(f) Synchronous Travel Accuracy:

(For cases where robot has to perform tasks synchronous to a moving conveyor) as in spray painting and assembly.

(g) Long-Term Behaviour:

It provides information on the time required to achieve thermal stability.

(ii) Kinematic Values:

These include cycle time, speed, and acceleration. It involves measuring of attainable cycle times for a defined sequence in different areas of the working space.

(iii) Power and Noise Values:

Usually measured in decibel at a distance of one metre from the working space.

(iv) Thermal Values:

Changes in temperature effect deviation of the structure.

(v) Dynamic Values:

It involves determination of dynamic behaviour of simple components and the total structure. The response of the robot structure is elicited by the following excitation methods—shaker (sinus, random), hammer (impact), snapback (impact), drives (sinus, random).

Essay # 13. Sensors for Robots :

To carry out its task, a robot must have access to information on predetermined parameters of the environment. Sensors are used to provide this information. The key to the success of closed loop control systems used in robots, in terms of accuracy, reliability and stability relies upon the type, complexity, resolution of the sensor.

It must be remembered that best sensory power has been bestowed by nature in the homomorphic creatures. It is the aim of engineers to attain similar perfection for robots. In order to enable robot perform its duties by understanding the environment around it, sensors provide information like.

(i) Recognition data (to understand the shape, size and features of the object).

(ii) Orientation data (the position of the object in relation to the robot arm co-ordinates in the absolute mode).

(iii) Physical interaction data (to understand the intensity interaction between the end effectors and the object).

The various types of sensors used for this purpose are:

(i) Force sensors (these measure the three mutually orthogonal forces and three orthogonal torques at the tips of the fingers of robot).

(ii) Inertial sensors (these feel the gravity and acceleration generated reaction torques).

(iii) Tactile sensors (these respond to contact forces arising between themselves and objects—used to warn the manipulator of robot to avoid collision when the end effector is near the object).

(iv) Visual sensors (with the use of triangulation or any other algorithm these help in determining the co-ordinates of the object before it is grasped.)

(v) Binary sensors micro-switches, magnetic switches, bimetallic thermal switches, etc. These are used to sense the presence/absence of a part.

(vi) Analog sensors thermocouples, linear variable differential transformers, strain gauges, piezo-electric sensors. These are used when the magnitude of quantity is desired.

(vii) Sensor arrays include pressure sensitive arrays or optical arrays used on the fingers and palm of a gripper. This requires considerable signal processing with a dedicated microprocessor.

Essay # 14. Precautions in the Use of Robots :

Before taking a decision to install a robot, it is important that its use be justified as it costs a lot. Plenty of work should exist for each robot. It is safest to employ robots first on simpler jobs and then put them to complex jobs after gaining experience.

The repetitive tasks, such as picking up heavy parts from one conveyor and placing them on another conveyor, can be easily programmed. Grippers are selected depending on the shape and size of the parts. It is possible to equip them with sensors and computer controls. These can then search the parts for out of position also.

In machine loading and unloading applications, the machines may be grouped around a robot and the robot picks up a part from an incoming conveyor and loads it into a NC lathe and then transfer it to drilling machine, inspect on table, and finally place it on an outgoing conveyor. Thus a system of machines with a robot can be converted into automatic production system.

All operations requiring worker intervention can be completely eliminated. If the shape or size of the part gets changed significantly after machining, then double grippers can be used on robots. To avoid any damage, the gripper of robot must hold the parts securely, exerting sufficient gripping force. Universal grippers are also available for handling parts of different size and shape.

A very nice application of robots is in cleaning of castings, deburring of machined parts, and polishing of parts which is usually fatiguing monotonous, dirty, noisy and sometimes hazardous. In a typical operation, the robot may be programmed to pick up casting from conveyor, presenting it to a rotary cut off wheel or saw removing gates and rise’s, then to a floor stand grinder for removing external flash, then to a grinding head that cleans the interior of the casting and then returning to the second conveyor. All machines should be located and grouped within easy reach of the robot. Stations of such type can handle a wide variety of castings of different shapes and sizes simply by changing programs.

Robots also find wide applications in assembly jobs, spot welding and arc welding. It is observed that robotic welders are about three times more productive than human operators. Robots can also be mounted on tracks so that they can automatically move from one station to another. It is essential to follow safety guidelines strictly in design and operation of robots to avoid any accidents.

Essay # 15. Applications of Robots :

Robots would find successful applications in following situations:

(i) Repetitive operation.

(ii) Other justifications for doing away with manual handling.

(iii) Handling hot or heavy work pieces.

(iv) Production limited by human performance and for endurance.

(v) Quality adversely affected by inconsistent manual handling.

(vi) Where parts have to be repeatedly oriented in the same position.

(vii) Part geometries must permit mechanical handling.

The most useful application of robot is for processes involving hazardous, unpleasant work environment like heat, sparks, fumes, etc. Typical applications in this regard could be die casting, shot welding, spray painting, forging, etc.

The other useful field for use of robots is involving repetitive work cycle which is tiring, fatiguing and boring for operator. Robots give consistent and repeatable results. Robots are essential for applications involving handling of heavy parts or tools.

Industrial robot applications usually involve several pieces of hardware (conveyors, pallets, machine tools, fixtures, etc.) in addition to the robot. Several robots and associated hardware may have to be integrated into a single work-cell.

Layout of the equipment in cell deserves greater attention for optimum results. Various types of layouts may involve centering around single robot, various robots arranged in line, or robots may be mobile. In manufacturing applications, robots may be used to handle tools and work pieces, processing operations, assembly and inspection.

Essay # 17. Reasons for Using Robots :

The reasons for introducing robot into a production process could be:

(i) It relieves man of hazardous or fatiguing tasks.

(ii) It brings improvements in product consistency and quality.

(iii) It offers opportunities for multi-machine manning for multi-shift operation and for wholly unmanned production.

(iv) In countries short of labour, it brings in savings from labour reductions. It increases the output without increasing the labour force.

(v) Robots will lead the way into areas of technology where man has not entered so far.

(vi) Mobile robots with moving arms and wide sensing power will find more applications.

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  • Robots with Jointed-Spherical Co-Ordinated System | Industrial Engineering

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Essay on My Robot

Students are often asked to write an essay on My Robot in their schools and colleges. And if you’re also looking for the same, we have created 100-word, 250-word, and 500-word essays on the topic.

Let’s take a look…

100 Words Essay on My Robot

Introduction.

My Robot is a fantastic creation. It’s not just a machine, but a friend and helper. I named it Robo.

Robo’s Appearance

Robo’s abilities.

Robo can clean my room, help with homework, and even play games with me. It follows my commands instantly.

Robo’s Impact

Robo has made my life easier and more fun. It’s not just a robot, it’s my companion. I am proud of my robot, Robo.

250 Words Essay on My Robot

Design and functionality.

My robot, named Optimus, is a humanoid model designed with a sleek exterior and advanced features. It employs artificial intelligence to interpret and respond to its environment. Equipped with sensors, it can navigate through spaces, avoiding obstacles and ensuring its safety. Its multifunctional nature allows it to assist in household chores, making life significantly easier.

Academic Assistance

Optimus has been instrumental in my academic pursuits. It has a built-in search engine and a vast storage capacity, which allows it to access and store a plethora of information. This feature has been invaluable in researching for assignments, providing quick and accurate information.

Emotional Companion

Surprisingly, Optimus also serves as an emotional companion. It is programmed to recognize emotional cues in speech and respond accordingly, providing comfort during stressful times. This emotional intelligence has transformed it from a mere machine into a reliable companion.

In conclusion, my robot, Optimus, is a testament to the endless possibilities of robotics and artificial intelligence. It not only simplifies daily tasks and aids in academic pursuits, but also provides emotional support. As we advance further into the technological era, robots like Optimus will become an integral part of our lives, blurring the lines between the human and the artificial.

500 Words Essay on My Robot

The advent of robotics and artificial intelligence has revolutionized various aspects of human life, from healthcare to entertainment, manufacturing to education. In this context, I would like to discuss my personal experience with a robot, which I affectionately call Alpha.

The Genesis of Alpha

Alpha’s capabilities.

Equipped with advanced AI, Alpha has an impressive range of capabilities. It can perform basic tasks such as fetching items, cleaning, and even cooking simple meals. However, its true prowess lies in its cognitive abilities. Alpha can engage in meaningful conversations, learn from past interactions, and even exhibit emotional intelligence.

Alpha’s AI algorithms allow it to process and analyze data at an astonishing speed, enabling it to make informed decisions. It uses machine learning to adapt to new situations and improve its performance over time. Moreover, Alpha’s deep learning capabilities enable it to understand complex human emotions, making it a truly empathetic companion.

Alpha and Education

Alpha as a companion.

In conclusion, my robot Alpha exemplifies the remarkable advancements in robotics and artificial intelligence. It is not just a tool or a machine, but a companion that assists, learns, and empathizes. Alpha has transformed my life in numerous ways, from simplifying daily tasks to enhancing my learning experience, and even providing emotional support. As technology continues to evolve, I look forward to seeing how Alpha will grow and adapt, continuing to redefine the boundaries of what a robot can be.

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Op-Ed Contributor

Why Robots Will Always Need Us

By Nicholas Carr

  • May 20, 2015

write an essay on robot

“HUMAN BEINGS are ashamed to have been born instead of made,” wrote the philosopher Günther Anders in 1956. Our shame has only deepened as our machines have grown more adept.

Every day we’re reminded of the superiority of our computers. Self-driving cars don’t fall victim to distractions or road rage. Robotic trains don’t speed out of control. Algorithms don’t suffer the cognitive biases that cloud the judgments of doctors, accountants and lawyers. Computers work with a speed and precision that make us look like bumbling slackers.

It seems obvious: The best way to get rid of human error is to get rid of humans.

But that assumption, however fashionable, is itself erroneous. Our desire to liberate ourselves from ourselves is founded on a fallacy. We exaggerate the abilities of computers even as we give our own talents short shrift.

It’s easy to see why. We hear about every disaster involving human fallibility — the chemical plant that exploded because the technician failed to open a valve, the plane that fell from the sky because the pilot mishandled the yoke — but what we don’t hear about are all the times that people use their expertise to avoid accidents or defuse risks.

Pilots, physicians and other professionals routinely navigate unexpected dangers with great aplomb but little credit. Even in our daily routines, we perform feats of perception and skill that lie beyond the capacity of the sharpest computers. Google is quick to tell us about how few accidents its autonomous cars are involved in, but it doesn’t trumpet the times the cars’ backup drivers have had to take the wheel . Computers are wonderful at following instructions, but they’re terrible at improvisation. Their talents end at the limits of their programming.

Human skill has no such constraints. Think of how Capt. Chesley B. Sullenberger III landed that Airbus A320 in the Hudson River after it hit a flock of geese and its engines lost power. Born of deep experience in the real world, such intuition lies beyond calculation. If computers had the ability to be amazed, they’d be amazed by us.

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Home — Essay Samples — Information Science and Technology — Robots — The Development Of Robots And Their Impact On The Economy

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Published: Feb 8, 2022

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The beginning, further technological advancements, using robots and their impacts on the economy.

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Fully explain your ideas

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  • artificial intelligence
  • displacement
  • ethical considerations
  • domestic robots
  • personalized learning
  • equitable access
  • environmental sustainability
  • waste management
  • climate change
  • combat drones
  • re-skilling
  • technical challenges
  • space exploration
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Doing an enjoyable activity with a child can develop better skills and more creativity than reading. To what extent do you agree? Use reasons and specific examples to explain your answer.

* you have recently started work in a new company. write a letter to an english-speaking friend. in your letter * explain why you changed job * describe your new job * tell him/her your other news, in many countries, old people are valued by the government while others think that they should consider the young. discuss both views and give your opinion., today more and more tourists are visiting where condition are difficult, such as the sahara desert or the antarctic. what are the benefit and disadvantages for tourists who visit such places, new technologies have changed the way children spend their free time. do you think the advantages of this trend outweigh the disadvantages.

Optimus

Elon Musk’s Tesla is promising to sell a humanoid robot. It could be the first of many

write an essay on robot

Professor of Collaborative Computing, University of Nottingham

write an essay on robot

Professor of Embodied Intelligence, School of Computer Science, University of Nottingham

Disclosure statement

Steve Benford receives funding from UKRI, EPSRC, AHRC and the European Union.

Praminda Caleb-Solly is Professor of Embodied Intelligence at the University of Nottingham. She is also the Co-Founder and Director of Robotics for Good, a Community Interest Company. She receives funding from the UKRI, EPSRC, AHRC, NIHR and the European Union.. She is Co-Chair of the IEEE Robotics and Automation Society Technical Committee for Robot Ethics.

University of Nottingham provides funding as a founding partner of The Conversation UK.

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Elon Musk’s recent announcement on Twitter that “Tesla will have genuinely useful humanoid robots in low production for Tesla internal use next year” suggests that robots that have physical human-like characteristics and provide “genuinely useful” function might be with us soon.

However, despite decades of trying, useful humanoid robots have remained a fiction that never seems to quite catch up with reality. Are we finally on the crux of a breakthrough? It’s relevant to question whether we really need humanoid robots at all.

Tesla’s Optimus robot is just one of several emerging humanoid robots, joining the likes of Boston Dyanmic’s Atlas , Figure AI’s Figure 01 , Sanctuary AI’s Phoenix and many others. They usually take the form of a bipedal platform that is variously capable of walking and sometimes, jumping, along with other athletic feats. On top of this platform a pair of robot arms and hands may be mounted that are capable of manipulating objects with varying degrees of dexterity and tactility.

Behind the eyes lies artificial intelligence tailored to planning navigation, recognising objects and carrying out tasks with these objects. The most commonly envisaged uses for such robots are in factories , carrying out repetitious, dirty, dull and dangerous tasks, and working alongside humans, collaboratively, carrying a ladder together for example.

They are also proposed for work in service industry roles , perhaps replacing the current generation of more utilitarian “meet and greet” and “tour guide” service robots. They could possibly be used in social care, where there have been attempts to lift and move humans, like the Riken Robear (admittedly this was more bear than humanoid ), and to deliver personal care and therapy.

There is also a more established and growing market in humanoid sex robots. Interestingly, while many people recognise the moral and ethical issues related to these, the use of humanoid robots in other areas seems to attract less controversy. It is, however, proving challenging to deliver humanoid robots in practice. Why should this be so?

There are numerous engineering challenges, such as achieving flexible bipedal locomotion on different terrain. It took humans about four million years to achieve this, so where we are now with humanoid robots is pretty impressive. But humans learn to combine a complex set of sensing capabilities to achieve this feat.

Similarly, achieving the dexterous manipulation of objects, which come in all shapes, sizes, weights, levels of fragility, is proving stubborn with robots. There has been significant progress, though, such as the dexterous hands from UK company Shadow Robot .

Compared to the human body that is covered in a soft and flexible skin that continuously senses and adapts to the world, robots’ tactile capabilities are limited to only a few points of contact such as finger tips.

Moving beyond automating specific tasks on factory assembly lines to improvising general tasks in a dynamic world demands greater progress in artificial intelligence as well as sensing and mechanical capabilities. Finally, if you are going to make a robot look human, then there is an expectation that it would also need to communicate with us like a human, perhaps even respond emotionally .

However, this is where things can get really tricky, because if our brains, which have evolved to recognise non-verbal elements of communication, don’t perceive all the micro-expressions that are interpreted at a subconscious level, the humanoid robot can come across as positively creepy.

These are just a few of the major research challenges that are already taxing communities of researchers in robotics and human-robot interaction across the globe. There’s also the additional constraint of deploying humanoid robots in our ever-changing noisy real world, with rain, dust and heat. These are very different conditions to the ones they’re tested in. So shouldn’t we focus on building systems that are more robust and won’t succumb to the same pitfalls that humans do?

Recreating ourselves

This brings us to the question of why Musk and many others are focused on humanoid robots. Must our robotic companions look like us? One argument is that we have gradually adapted our world to suit the human body. For example, our buildings and cities are largely constructed to accommodate our physical form. So an obvious choice is for robots to assume this form as well.

It must be said, though, that our built environments and tools often assume a certain level of strength, dexterity and sensory ability which disadvantages a vast number of people, including those who are disabled. So would the rise of stronger metal machines among us, further perpetuate this divide?

Perhaps we should see robots as being part of the world that we need to create which better accommodates the diversity of human bodies. We could put more effort into integrating robotics technologies into our buildings, furniture, tools and vehicles, making them smarter and more adaptable, so that they become more accessible for everyone.

It is striking how the current generation of limited robot forms fails to reflect the diversity of human bodies. Perhaps our apparent obsession with humanoid robots has other, deeper roots. The god-like desire to create versions of ourselves is a fantasy played out time and time again in dystopian science fiction, from which the tech industry’s readily appropriates ideas.

Or perhaps, humanoid robots are a “Moon shot”, a vision that we can all understand but is incredibly difficult to achieve. In short, we may not be entirely sure why we want to go there, but impressive engineering innovations are likely to emerge from just trying.

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