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Free Essay About Mechanical Engineering

Type of paper: Essay

Topic: Engineering , Workplace , Manufacture , Experience , Design , Development , Skills , Profession

Words: 1800

Published: 12/03/2019

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Section I. Define the selected engineering field including areas of expertise in the field and types of work done.

The field I have chosen is mechanical engineering. It is interesting for me, as it represents application of the physics and materials science principles for design, analysis, maintenance and manufacturing of mechanical systems (“Mechanical Engineering” n.d.). In this branch mechanical power and heat are produced and used for production, design and operation of tools and machines. It is also known to be among the oldest engineering disciplines with particularly broad scope of interest. Mechanical engineers design and develop everything that can be classified as a machine, which is why their profession is extremely interesting and important for the development of our society and the world science as well. Moreover, design of the other products is also influenced by them, such as production of light bulbs, shoes and doors. Due to the vast scope of work, there are different specializations engineers can choose, the most popular of them being robotics, automotive/transportation, manufacturing and air conditioning. The main areas of expertise in this field are kinematics, mechanics, materials science, thermodynamics, and structural analysis (“Engineers” n.d.). The core principles are used along with special tools, such as product lifecycle management and computer-aided engineering. If they are properly applied, it become possible to analyze and design medical devices, industrial machinery and equipment, cooling and heating systems, manufacturing plants, aircraft, transport systems, robotics, watercraft, etc. The field of mechanical engineering started its development in the 18th century, when Europe was facing the industrial revolution, but the first traces of it can be found several thousand years ago all around the world. In the 19th century it emerged as a science along with the powerful developments in the field of physics. Since that time mechanical engineering has undergone numerous changes, as due to its nature it has to constantly incorporate the latest developments in technology. In the USA the American Society of Mechanical Engineers (ASME) has been functioning since 1880, which makes it the third professional engineering organization after the American Institute of Mining Engineers (1871) and the American Society of Civil Engineers (1852) (“ASME History” n.d.). Mechanical engineering courses at schools were first introduced in 1817 (the US Military Academy), and since that time education in this field has had a strong science and mathematics basis. Mechanical engineering degrees are offered throughout the world and mostly they take four to five years, resulting in B.Sc, B.ScEng, B.Tech, B.Eng or B.A.Sc. In the USA the majority of programs are accredited by ABET – the Accreditation Board for Engineering and Technology, owing to which similar course requirements are observed throughout the country. According to ABET, mechanical engineering students have to work professionally both in mechanical and thermal systems areas. The courses students have to take usually differ according to the specific program, but the fundamental subjects usually remain the same: measurement and instrumentation; dynamics and statics; electrotechnology; solid mechanics and strength of materials; mechanism design (including dynamics and kinematics); manufacturing engineering, processes or technology; automotive engines, combustion, fuels; pneumatics and hydraulics and others. Section II. List specific core (junior and/or senior) courses which are of the most interest to you and why. Also include three schools which offer the program. In order to become a successful mechanical engineer, it is necessary to become proficient in many different areas, and among them there are those that are the most important for successful professional development. In the course there are certain core subjects that I particularly enjoy and I am sure that my interest in them will make the studying path easier and more pleasant to me. As of today, one of my favorite subjects is classical physics. It is practically impossible to become a mechanical engineer without strong background in the area of physics. My interest in this subject was one of the main reasons why I have chosen mechanical engineering as the work of my life. Another subject that I particularly enjoy is mathematics. I like the fact that in this science it is very important to apply logical reasoning and every solution of problem improves my skills, which is why it is evident that what I do brings particular results. I understand that I have to work on my skills a lot to become a good engineer and I will try to do my best to succeed in this field. Also I like the courses that are directly related to the field of engineering, like engineering problem solving. When attending them and getting to know more and more about my chosen field, I see how I develop as professional and how interesting it will be for me to graduate and apply my knowledge in practice. Today there are many different schools that offer mechanical engineering programs, each of them having its own advantages and drawbacks. Among the most popular ones there are Stanford (“Stanford Mechanical Engineering” n.d.), Berkeley’s College of Engineering (“Berkeley Mechanical Engineering” n.d.) and Mechanical Engineering Department at Columbia (“Mechanical Engineering Department Overview” n.d.).

Section III. Typical salaries and three different position descriptions including education/experience requirements for selected engineering field.

In the field of mechanical engineering salaries vary on the basis of the same factors, as in the other professional area. Work experience and the size of the company influence it greatly and there are also differences between different states and cities. Average salary in the USA is $44,518-$85,045, the size of bonuses is usually between $509 and $9,854. The starting salary is $39,403-$66,195. If a person has 1 to 4 years of experience, it increases to $43,220-$72,178; between 5 and 9 years – to $50,744-$85,840; between 10 and 19 years – to $52,312-$102,451. If work experience exceeds 20 years, then the salary is between $58,527 and $127,734. Salaries are usually higher in companies with a large number of employees (if there are more than 50,000 employees, the salary is between $52,465 and $96,413, while in a small company with 10-49 employees it is $40,998-$78,834) (“Salary for Mechanical Engineer Jobs” 2011). As an example of job positions in this field, I decided to review and analyze the following ones: Design Engineer at Volkswagen of America, Mechanical Engineer at Corning and Facilities Manager at Miscrosoft. The first position at Volkswagen presupposes development of technical and design solutions that can assist drivers in convenient, safe and intelligent interaction with in-vehicle information (“Design engineer” n.d.). At Corning the position is focused on implementation of cost effective and robust automation and process machine systems at the company’s plants (“Mechanical engineer” n.d.). Facilities manager at Microsoft will be responsible for proper execution of all the activities related to maintaining and building utilities that are necessary for uninterrupted Digital services and other spheres of the company’s work (“Facilities manager job” n.d.). All the positions require profound skills that are necessary for successful work in this sphere, as well as perfect command of the modern software packages and computers on the whole. BS/MS degrees in Mechanical Engineering are also obligatory. Section IV. Answers to the following four questions from an interview (face-to-face, phone, or email) with an engineer. You must provide the contact information for this person. You may add additional questions to this list.

Interview was conducted via email with one of mechanical engineers in the Hewlett-Packard Company – Paul Hughes ().

a) What is your position title, product(s) description, and how long have you been an engineer? Hi, I have been working as a mechanical engineer at the Hewlett-Packard Company for 5 years already and I enjoy my work very much owing to a welcoming an facilitating atmosphere created in the office and interesting tasks I get every day. Before HP I worked as an engineer for 8 years and graduated from the Mechanical Engineering Department of the University of Texas with MS degree. At HP I am responsible for dynamic and static design and analysis of mechanical equipment, systems and packages. b) What is a typical day like? What are the four or five tasks you spend the most time on? I try to make every day of my work the most productive and interesting. Thus, I can say that the first important task that I complete on a daily basis is planning of my day. In this way I can manage my time effectively. Then, I prioritize my tasks and start competing them one by one. Also every day I try to allocate some time for developing of my skills, getting to know about the latest developments in my field of expertise. Another important activity is meeting with my supervisors who analyze my work. At the end of each day I analyze what I succeeded to do and what failed and on the basis of this analysis I draw up a rough plan for the next day. c) What are the best and worst things about your being an engineer? The best thing, to my mind, is that I enjoy what I do greatly and that I cope with what I have to do perfectly. That makes me really proud of myself. The worst thing is maybe that I will not be able to find out everything I want, as there is no time for everything – I have to follow my plan. d) Any advice for a freshman engineering student? The best advice that I have also received when I started working in this field: enjoy your life and profession and never waste your time doing unnecessary things. It is extremely important to value your time, so make sure that you learn how to plan your time and prioritize activities. IT will help you in all the spheres of life, not only in the professional area.

Works Cited

“ASME History.” Asme.org. ASME, n.d. Web. 11 Oct. 2011. “Berkeley Mechanical Engineering.” Berkeley.edu. Berkeley, n.d. Web. 11 Oct. 2011. “Design Engineer.” RecruitingCenter.net. Volkswagen, n.d. Web. 12 Oct 2011. “Engineers.” Bls.gov. Bureau of Labor Statistics, n.d. Web. 13 Oct. 2011. “Facilities Manager Job.” Microsoft-Careers.com. Miscrosoft, n.d. Web. 12 Oct. 2011. “Mechanical Engineering.” Dictionary.com. Dictionary, n.d. Web. 12 Oct. 2011. “Mechanical Engineering Department Overview.” Columbia.edu. Columbia, n.d. Web. 11 Oct. 2011. “Mechanical Engineer.” CorningCareers.Corning.com. Corning, n.d. Web. 12 Oct. 2011. “Salary for Mechanical Engineer Jobs.” PayScale.com. PayScale, 10 Oct. 2011. Web. 13 Oct. 2011. “Stanford Mechanical Engineering.” Stanford.edu. Stanford, n.d. Web. 11 Oct. 2011.

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Home — Essay Samples — Science — Mechanical Engineering — Passionate Pursuit: My Journey to Mechanical Engineering

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Passionate Pursuit: My Journey to Mechanical Engineering

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Published: Feb 7, 2024

Words: 614 | Page: 1 | 4 min read

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Current academic experience in mechanical engineering, career goals in mechanical engineering, work experience in mechanical engineering, reasons for transfer, extracurricular activities, personal qualities.

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one page essay on mechanical engineering

Mechanical Engineering Profession Essay (Critical Writing)

Text for the general public, text for elementary-aged children, text for graduates/professionals.

Keeping in consideration the fact that not all the people are well educated to understand the nuances of mechanical engineering, the text of this paragraph has been kept as moderate as possible. Simple language has been used, and the sentences have been kept short. The examples mentioned in the text have been taken from everyday life that people are aware of. The text is as follows:

Each one of us is probably familiar with the word ‘mechanic.’ We all know that he is the one who repairs our faulty implements, vehicles, electronic items, etc. So we know that a mechanic is a person who repairs machines. Similarly, mechanical engineering also deals with machines. But it is not only for repairing purposes. Machines are created with the help of mechanical engineering. From the smallest things (such as toys, door latches, etc.) to the biggest things (such as space ships, airplanes, trains, etc.) are all wonders of mechanical engineering.

So basically, mechanical engineering can be defined as a stream of engineering that deals with anything and everything that moves and is made by humankind. Mechanical engineering can be found in all walks of life like refrigeration, manufacturing, energy production and conversion, vehicles, aerospace, medical equipment, etc.

The history of mechanical engineering can be traced back to early Greece and Chinese civilizations. During that era, mechanical engineering was involved in numerous things such as pumps, engines, clocks, etc. But mechanical engineering became a separate field with the advent of the industrial revolution in the world.

To become a mechanical engineer, a student has to obtain a degree BSc in mechanical engineering. The usual duration of the course is four years, after which the student becomes a mechanical engineer. If it is feasible for the student, he/she can do further specialized studies in a field of his/her choice. Else, jobs are available for graduate mechanical engineers as well. Most of the companies engaged in manufacturing require mechanical engineers. So mechanical engineering is a great field to pursue.

It is commonly understood that the participation of children in commercial fairs is not much, but even though the number is less, this group of visitors is the most enthusiastic and eager to learn. After all, they are our future engineers, astronauts, doctors, etc. So keeping this into consideration, the following paragraphs have been written in a manner to enable the children to understand the concept of mechanical engineering in a playful manner.

The language has been kept very simple and the examples included in the text relate to their childhood and their fantasies. It is quite possible that they get impressed and inspired by what they see, and their future is nurtured here. Following is the text:

While at leisure, there might be several questions popping up in your minds. Why is it that only children have to go to school? Why do our parents work? If elders don’t go to school, then why do teachers come to school? Why is my father an engineer, and my friend’s father is a doctor? Well, children, the answer is very simple. There is a time for everything. Now is the time for you to study well so that when you grow up, you also become an engineer or a doctor. And as far as grownups doing different professions are concerned, it is a person’s choice of what he/she wants to become in life. He/she has to study hard to achieve that aim. Today, when you see the wonders of mechanical engineering, it is quite possible that one day you too will be successful mechanical engineers.

Mechanical engineering is a science that makes things move. Your toys, such as cars, trucks, catapults, building bots, ballistics, etc. are all wonders of mechanical engineering. Have you ever thought about how does a doll dance when you wind the key? Well, there’s a spring coil inside the doll that gets tightened when you wind the key. When you release the key, the spring starts rewinding, and since the spring is attached to the doll, it also moves in a dancing manner.

It was a small example. There are many more complicated machines (such as heavy machinery, airplanes, ships, power projects, etc.) that you can learn if you choose to become a mechanical engineer. Even the kitchen equipment, the air conditioners, the washing machines at your homes work on the principles of mechanical engineering.

Graduates and professionals who want to change their profession and want to pursue careers in mechanical engineering are encouraged to do so. Considering the level of their education, the language of the following paragraphs has been kept scientific and the examples quoted are from complicated fields. But care has been taken that it is understood by the audience of this group. The text is as follows:

Mechanical engineering is a field of engineering that deals with various principles of science to examine, plan, create, and maintain different mechanical systems. A successful mechanical engineer has to be thorough with a wide range of concepts such as technicalities, kinematics, thermodynamics, power, etc. All these principles and concepts are put to use by mechanical engineers while designing heavy equipment such as aircraft, ships, vehicles, power plants, medical equipment, etc. another important requirement for being successful in mechanical engineering is teamwork. A single mechanical engineer cannot do wonders single-handedly. He/she has to work as a team.

Since mechanical engineering principles are crucial for practically everything that is made by humankind, it is the vastest and diverse field of engineering. Moreover, with the incessant inventions around the world, the proper update is a must.

Mechanical engineering needs certain abilities and skills that cannot be nurtured at once. Such skills can be attained through proper education and guidance. Students should enroll in specific programs in their schools. They should be proficient in mathematics and science. The art of conversation and communication is also an important factor because only then he/she will be able to perform as a team. Students can augment their knowledge by attending science fairs.

The content of the mechanical engineering course might differ from university to university, but the principles are the same. Some mechanical engineers prefer specializing in some particular fields such as aeronautical engineering, automotive engineering, etc. It is a good thing because recruiters of such fields will prefer the specialists. Doing a management course in addition to mechanical engineering can prove to be a shot in the arm. Knowing design software such as CAD, CAM, FMEA proves to be an added advantage.

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Best topics on Mechanical Engineering

1. Achieving Mechanical Engineering Career Goals

2. Engineering and Thermodynamics: Paired Work For Better Surrounding

3. The Safety Protocol for Employees Involved in Engineering

4. Thermodynamic Process And Defects of Welding

5. Welding Definition and Welding Types

6. Welding: What is it And How to Do It Correctly

7. Difference Between Force and Torque 

8. A Project On Hydraulic Fracking

9. Summer Training Report: Mechanical And Electrical Engineering

10. Bladeless Turbine Technology For Wind Power Generation

11. Milling As One Of The Basic Machining Processes

12. My Motivation To Study Technical Engineering

13. Overview Of The Exoskeleton Properties And Functions

14. Structural Mechanics: First Moment Of Area And The Moment Of Inertia

15. Leonardo Da Vinci’s Drawings: Implications For The Discovery Of Engineering Mechanics

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Essay on Mechanical Engineering

Students are often asked to write an essay on Mechanical Engineering 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.

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100 Words Essay on Mechanical Engineering

What is mechanical engineering.

Mechanical engineering is about creating and fixing machines. It’s a very important kind of engineering. People in this field work on cars, robots, and even big machines in factories. They use science and math to make things work better and to invent new gadgets.

Designing and Building

Mechanical engineers design things like engines and air conditioners. They start with an idea, draw it, and then build it. They always try to make things safer, last longer, and use less power.

Making Things Move

A big part of mechanical engineering is understanding how things move. Engineers study forces and energy. They make sure parts of a machine move smoothly and do their job right.

Materials Matter

Choosing the right stuff to make machines is important. Some things need to be strong, while others should not be heavy. Mechanical engineers decide the best materials to use.

Future of Mechanical Engineering

The future is exciting for mechanical engineers. They will help make smarter robots, cleaner energy, and even explore space. Their work will make our lives better in many ways.

250 Words Essay on Mechanical Engineering

Mechanical engineering is a branch of engineering that deals with machines. It’s about designing, making, and keeping machines running. Engineers in this field use science and math to solve problems. They work on all sorts of machines, from tiny parts inside a watch to huge airplane engines or robots.

Creating New Machines

One important job for mechanical engineers is to create new machines. They think about what people need and use their skills to make it. For example, they might design a bike that is safer or a new toy that is more fun to play with. They draw their ideas and use computers to make sure their designs will work well.

Materials and Tools

Mechanical engineers also choose the right materials for their machines. They pick things that are strong enough but not too heavy. They use tools like wrenches and screwdrivers, as well as computers for designing and testing their ideas.

Keeping Machines Running

Another part of mechanical engineering is making sure machines keep working. Engineers check machines for any problems and fix them. They also do regular check-ups to prevent problems before they start.

Why It Matters

Mechanical engineering is very important because it helps create and fix the machines we use every day. Without mechanical engineers, we wouldn’t have cars, airplanes, or even refrigerators at home. They make our lives easier and help us do things faster and better.

500 Words Essay on Mechanical Engineering

Mechanical engineering is like being a doctor for machines. It’s a type of engineering that looks at how things work and how to build and fix them. Mechanical engineers make cars, planes, and even robots. They are curious about how things move and how to make them better.

The Work of a Mechanical Engineer

Imagine you have a big box of Legos. You can build cars, ships, or even castles. Mechanical engineers do something similar but with real machines. They start with a plan, use math and science to make sure it will work, and then create it in the real world. They need to think about how strong materials are, how much heat they can take, and if they can be bent or stretched.

Tools and Machines

Mechanical engineers use many tools to do their job. They use computers to draw their ideas and to test them without having to build them for real. This saves time and money. They also work with big machines to make parts for cars, airplanes, and lots of other things. These machines need to be very precise so everything fits together perfectly.

Energy and Mechanical Engineering

Energy is like the food that machines need to work. Mechanical engineers think a lot about how to make machines that use less energy and are better for the environment. They work with solar power, wind power, and other clean energy sources. They want to make sure we can do all the things we need to do without harming our planet.

Education and Skills

To become a mechanical engineer, you need to love math and science. You will go to a special school called a university where you learn all about materials, forces, energy, and how things move. It’s important to be good at solving problems and to be creative because sometimes you need to think of a brand-new way to do something.

The Importance of Mechanical Engineering

Mechanical engineering is very important because it helps make our lives easier and better. Think about how you get to school. Maybe you take a bus or a car. Mechanical engineers helped design those vehicles. They also help make machines that can build houses, make our food, and create phones and computers. Without mechanical engineers, we wouldn’t have many of the things we use every day.

The future for mechanical engineers is exciting. They will help us go to space, make cars that drive themselves, and create machines that can help doctors cure sicknesses. They will continue to find ways to use less energy and to make machines that are safe for our planet.

In conclusion, mechanical engineering is a field that mixes creativity with science and math to make the world a better place. Mechanical engineers are like the builders and fixers of the machine world, and they will continue to shape our future with their inventions and designs. It’s an exciting career that makes a big difference in our everyday lives.

That’s it! I hope the essay helped you.

If you’re looking for more, here are essays on other interesting topics:

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Wonderful Engineering

32 Best Topics For An Engineering Essay

10 Ways You Can Instantly Improve Your Writing 3

If a regular college student was told to come up with a list of the most difficult academic disciplines to deal with, we bet that engineering would be deservedly mentioned. Yes, this discipline is quite challenging to get around, which is especially true of home assignments in engineering so some students are forced to ask someone to  write my essay . This delicate problem often prompts some students to apply for help to online services, asking, “ do my engineering homework .” But it’s not only homework assignments in engineering that give college kids a hard time – another big burden connected with this discipline is academic writing.

In engineering paper writing, the first and most exasperating obstacle is settling on the topic. At first sight, choosing a paper topic seems to be quite easy. In reality, given the complexity of the discipline, developing a topic for an engineering discipline is a rigorous process. For this reason, we decided to put pen to paper and provide you with the greatest engineering essay topics!

Software Engineering Essay Topics

  • The rapid evolution of neural networks
  • Computer-assisted education as an innovative solution to the traditional academic system
  • The implementation of machine learning in today’s digital industry
  • The risks of using virus-infected computer software
  • Virtual reality and human perception
  • AI in modern digital marketing
  • The challenges of database management
  • The interactions between humans and machines
  • The problem of ethical hacking today
  • The development of biometric systems for computers

Biomedical Engineering Essay Topics

  • The critical importance of modeling diseases through engineering
  • The ways of improving medical imaging methods
  • The outlook for structural health monitoring
  • Genetic engineering as one of the most popular fields of biomedical engineering
  • The use of biomedical engineering in handling the COVID-19 situation
  • Biorobotics in disease detection
  • The authentication systems based on biorobotics
  • The treatment of cardiac diseases with the help of biomedical engineering

Structural Engineering Essay Topics

  • The use of software in modeling experiments
  • How to study the vulnerability of a particular area
  • Self-healing: core principles
  • The utilization of probabilistic methods in structural engineering

Mechanical Engineering Essay Topics

  • Marine shipping and air pollution
  • The history of mechanical engineering
  • Parallel kinematic machines
  • Manufacturing systems: performance analysis
  • Electricity production mechanisms used at nuclear power plants
  • The technology of solid-liquid separation
  • The mechanical engineering of the smart auto-reeling mechanism
  • Perpetual motion machines: the outlook
  • The implementation of oil depletion
  • The use of mechanical engineering in metallurgy

Engineering Writing Is Easy!

Developed by our top engineering specialists, these longed-for paper topics are for all students who fail to develop a good idea for their engineering papers. As you can now see, creating a solid engineering paper topic is not as big a deal as some college students believe it to be. Equipped with these 32 brilliant paper topics, you no longer have to torment yourself with the tedious procedure of seeking inspiration for your academic paper. Make sure to select the best topic from our top list developed by the leading experts in engineering!

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one page essay on mechanical engineering

Book cover

Essays on the History of Mechanical Engineering

  • Francesco Sorge 0 ,
  • Giuseppe Genchi 1

Chemical, Management, Informatics and Mechanical Engineering, University of Palermo, Palermo, Italy

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  • Presents articles on historical research in the area of mechanical sciences
  • Contains a large unique collection of documents and images on the arguments of the papers, which is not easily available elsewhere
  • Eclectic mix of subjects of interest to a wide readership
  • Includes supplementary material: sn.pub/extras

Part of the book series: History of Mechanism and Machine Science (HMMS, volume 31)

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Table of contents (22 chapters)

Front matter, eminent scientists of the past, lagrange as a historian of mechanics.

  • Agamenon R. E. Oliveira

Giuseppe Antonio Borgnis and His Handbook of Machine Designs

  • Marco Ceccarelli

Tribute to Reuleaux

  • Roberto Bragastini

Elia Ovazza, Professor of TMM in Palermo Around the End of the 19th Century

  • Marco Ceccarelli, Francesco Sorge, Giuseppe Genchi

Academician K.V. Frolov at Bauman Moscow State Technical University

  • Olga Egorova, Gennady Timofeev

History of Industrial Installations

Historical watermills. architectural, mechanical and hydraulic heritage.

  • Mario Centofanti, Stefano Brusaporci, Vittorio Lucchese

The Mill at the Orbetello Lagoon: Mechanisms and Hydraulic Energy

  • Emanuela Chiavoni

The Sulphur Mining Industry in Sicily

  • Vincenzo Ferrara

The History of Aircraft Manufacturing at the Braşov IAR Plant

  • Horia Salcă, Dan Săvescu

Science, Technology and Industry in Southern Italy Before the Unification

  • Cesare Rossi, Marco Ceccarelli

Medium Size Companies of Mechanical Industry in Northern Italy During the Second Half of the 19th Century

  • Yibing Fang, Marco Ceccarelli

History of Machinery and Transport

The museum of engines and mechanisms. more than a century of history of technology.

  • Riccardo Monastero, Giuseppe Genchi

History of the Trains Used on the Spanish Railway Line Madrid–Almorox

  • Daniel FernĂĄndez Caballero, VĂ­ctor RodrĂ­guez de la Cruz, JuliĂĄn MartĂ­n Jarillo, Manuel EsperĂłn Miguez

Airship—The American Dream by Quirico Filopanti, 1851

  • Pier Gabriele Molari

Human Inventiveness for Mechanical and Scientific Devices

Archimedes’ screw in the four books “de cochlea” by guido ubaldo del monte [santa maria]—venice—1615: the engineering and the language.

  • Elena Magnini, Pier Gabriele Molari
  • Engineering Mechanics
  • History of Machine and Mechanisms
  • History of Mechanics
  • Industrial Installations
  • Machinery and Transport
  • Robots and Human-Driven Automata

This book treats several subjects from the History of Mechanism and Machine Science, and also contains an illustrative presentation of the Museum of Engines and Mechanisms of the University of Palermo, Italy, which houses a collection of various pieces of machinery from the last 150 years.

The various sections deal with some eminent scientists of the past, with the history of industrial installations, machinery and transport, with the human inventiveness for mechanical and scientific devices, and with robots and human-driven automata. All chapters have been written by experts in their fields.

The volume shows a wide-ranging panorama on the historical progress of scientific and technical knowledge in the past centuries. It will stimulate new research and ideas for those involved in the history of Science and Technology.

Francesco Sorge, Giuseppe Genchi

Book Title : Essays on the History of Mechanical Engineering

Editors : Francesco Sorge, Giuseppe Genchi

Series Title : History of Mechanism and Machine Science

DOI : https://doi.org/10.1007/978-3-319-22680-4

Publisher : Springer Cham

eBook Packages : Engineering , Engineering (R0)

Copyright Information : Springer International Publishing AG, part of Springer Nature 2016

Hardcover ISBN : 978-3-319-22679-8 Published: 04 December 2015

Softcover ISBN : 978-3-319-79417-4 Published: 29 March 2019

eBook ISBN : 978-3-319-22680-4 Published: 24 November 2015

Series ISSN : 1875-3442

Series E-ISSN : 1875-3426

Edition Number : 1

Number of Pages : XI, 409

Number of Illustrations : 142 b/w illustrations, 180 illustrations in colour

Topics : Mechanical Engineering , History and Philosophical Foundations of Physics , Manufacturing, Machines, Tools, Processes

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Mechanical engineering articles from across Nature Portfolio

Mechanical engineering is the branch of engineering that deals with moving machines and their components. A central principle of mechanical engineering is the control of energy: transferring it from one form to another to suit a specific demand. Car engines, for example, convert chemical energy into kinetic energy.

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Surface defect detection method for discarded mechanical parts under heavy rust coverage

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Integrated mechanical computing for autonomous soft machines

Many mechanical computation platforms developed till date lack a rational design strategy and have limited computational functions, such as stand-alone single logic gates, or deformation/transition behaviors. Byun at al. have reported a systematic design principle for integrated mechanical computing that enables the electronics-free design of autonomous and intelligent soft machines, which are seamlessly integrated.

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Gradient matters via filament diameter-adjustable 3D printing

Direct ink writing of complex 3D gradient structures can be challenging due to inherent method limitations. Here, the authors report continuous diameter-adjustable filament by varying printing speed and height and enable extrusion 3D printers to produce complex gradient porous matters.

  • Chongjian Gao
  • Changshun Ruan

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Particle Swarm Optimization for exploring Darcy–Forchheimer flow of Casson fluid between co-axial rotating disks with the Cattaneo–Christov model

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Shell buckling for programmable metafluids

A metafluid with programmable compressibility, optical behaviour and viscosity is realized by mixing deformable spherical shells that undergo buckling within an incompressible fluid; the versatility of these metafluids opens up numerous opportunities for functionality.

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one page essay on mechanical engineering

Ultrasound-assisted tissue engineering

Ultrasound is an emerging tool for tissue engineering with the distinct advantages of cytocompatibility and deep tissue penetration. This Review discusses the integration of ultrasound for cellular assembly and tissue maturation with tissue-engineering techniques to advance regenerative medicine.

  • Athanasios G. Athanassiadis
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one page essay on mechanical engineering

Micro- and nanorobots for biofilm eradication

Micro- and nanorobots present a promising approach for navigating within the body and eliminating biofilm infections. Their motion can be remotely controlled by external fields and tracked by clinical imaging. They can mechanically disrupt the biofilm matrix and kill the dormant bacterial cells synergistically, thereby improving the effectiveness of biofilm eradication.

  • Staffan Kjelleberg

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Mechanism of plastic deformation in metal monochalcogenides

Metal monochalcogenides — a class of van der Waals layered semiconductors — can exhibit ultrahigh plasticity. Investigation of the deformation mechanism reveals that on mechanical loading, these materials undergo local phase transitions that, coupled with the concurrent generation of a microcrack network, give rise to the ultrahigh plasticity.

one page essay on mechanical engineering

Adaptable navigation of magnetic microrobots

An article in Nature Machine Intelligence presents an adaptable method to control magnetic microrobots’ navigation using reinforcement learning.

  • Charlotte Allard

one page essay on mechanical engineering

Soft sensing and haptics for medical procedures

Minimally invasive surgery (MIS) lacks sufficient haptic feedback to the surgeon due to the length and flexibility of surgical tools. This haptic disconnect is exacerbated in robotic-MIS, which utilizes tele-operation to control surgical tools. Tactile sensation in MIS and robotic-MIS can be restored in a safe and conformable manner through soft sensors and soft haptic feedback devices.

  • Arincheyan Gerald
  • Sheila Russo

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Propelling the widespread adoption of large-scale 3D printing

3D printing can be used to automate the manufacturing of building elements for large-scale structures such as skyscrapers, aircraft, rockets and space bases without human intervention. However, challenges in materials, processes, printers and software control must first be overcome for large-scale 3D printing to be adopted for widespread applications.

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one page essay on mechanical engineering

Exploration of truss metamaterials with graph based generative modeling

Optimisation tasks in the inverse design of metamaterials with machine learning were limited due to the representations of generative models. Here the author comments a recent publication in Nature Communications which generates a latent space representation that unlocks non-linear optimisations.

  • Angkur Jyoti Dipanka Shaikeea

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one page essay on mechanical engineering

Mechanical Engineering Communication Lab

Statement of Purpose for Graduate School

Criteria for success.

  •   qualified for their program, and
  • a good fit for their program’s focus and goals.
  • You show a select group of skills and experiences that concisely convey your scientific accomplishments and interests.
  • Your experiences are concrete and quantitative .
  • Your personal statement is no more than 2 pages (less if you can, or if it is required by the school).

Structure Diagram

The graduate school Personal Statement (≈ Statement of Purpose ≈ Statement of Intent) is a document that complements your resume and application form, describing your profile in a narrative way and convincing the admission committee that you would be a good match for a particular department or program. Take into account that matching goes both ways: they should be interested in you, and you should be interested in them. Your personal statement should make this match clear.

Analyze Your Audience

Your personal statement will be read by a graduate committee – a handful of faculty from the program. They’re trying to determine if you will be a successful graduate student in their department and a successful scientist after you graduate. They are interested in your qualifications as a researcher, your career goals, and how your personality matches their labs and department.

The graduate committee probably reads hundreds of applications every year. To make it easy for them to figure out that you are a good fit, keep in mind the following suggestions:

  • Make direct, concrete statements about your accomplishments and qualifications.
  • Create a narrative that serves as a personal brand and helps them remember you.
  • Give them some unique examples that describe you and make you stand out, and which will make them remember you as “that candidate that was so passionate about…” or “who has a lot of experience in…”, although they might not remember your name.
  • Align your academic goals and motivations with specific research projects or research directions of the target department. 

Assessing your match to the target program

A key point on writing your Personal Statement is to demonstrate that you have done previous research about the program to which you’re applying, that you understand its characteristics and objectives, and that you are really interested in joining it and willing to do your best to be successful in it. To do this:

  • Read the program’s website. Learn about its faculty members and the projects they are working on. Check what topics and high level goals the department is committed to. Identify the main research areas. 
  • Get in contact with faculty and students in your target program. Browse recent publications and presentations but remember lab websites can be outdated and a publication may lag a few years behind the active research in a lab so pay attention to the motivation, direction, and methods of the faculty member over specific results. If you have had a positive discussion with someone at the department, you can include in your essay how those interactions confirmed that you would be a good match for the program.

Reflect before you start

To convince a graduate committee that you are ready for and excited about graduate school, first you need to be able to articulate this to yourself. Earnestly reflect on the following types of questions. A lack of authenticity is easy to detect. 

  • Why do I want to go to graduate school? 
  • How am I sure?
  • Why will I be successful in graduate school?
  • What can I do with the help of this degree that I couldn’t do before?
  • Where do I want to be in a few years?
  • How am I going to get there?

Create a personal narrative

Graduate programs invest in the professional and scientific growth of their students. Get the committee excited about investing in you by opening your essay with a brief portrait of what drives you as a scientist. What research directions are you passionate about, and why? What do you picture yourself doing in 10 years?

  • E.g. “Graduate study is the first step towards my goal: I want to improve my ability as a researcher and gain more technical depth and breadth to maximize my impact. In the long term, I hope graduate school will better position me to be a leader in shaping the conversation about what problems can be addressed by mechanical engineers.”

Close your essay with a 2-3 sentence discussion of your long-term career interests. No one will hold you to this; this just helps your committee visualize your potential trajectory.

  • E.g. “Above all else, a MIT PhD would help me achieve my long term career goal of becoming a professor, the position in which I can best see myself accomplishing my mission to show others the hidden beauty in everyday life through science.”

Connect your personal narrative to whichever degree you are applying to (be it research-based or course-work-based, or a Master of Science, Master of Engineering, or PhD). Especially in mechanical engineering, each of these degrees will enable different career trajectories and provide different educational opportunities. Articulate clearly why the degree you are applying for helps you achieve your goals. In the same vein, consider mutual benefit: what will you contribute to the academic community over your time at your target school? Remember, it all comes back to “qualified match” , no matter what level of degree you are applying for. 

Describe your experiences

Experiences are the “what” of your essay. They are the most efficient and easiest way to prove your capabilities to the admissions committee.

  • What experiences led you to develop your skill set and passions ?
  • Where have you demonstrated accomplishment, leadership, and collaboration?
  • Show your depth with a range of experiences: research, teaching, relevant extracurriculars and leadership positions.
  • State concrete achievements and outcomes like awards, discoveries, or publications, or projects completed.

Achievements need not be limited to research projects or publications. Think about all the experiences that demonstrate your ability to conduct research and succeed within the structure of your target program. (Where have you demonstrated creativity? Self sufficiency? Perseverance? What open ended problems have you tackled? What enabled you to succeed at them?)

Quantify your experiences to show concrete impact. How many people were on your team? How many protocols did you develop? How many people were in competition for an award? As a TA, how often did you meet with your students?

For each experience you include, focus on how the experience affected you. Describe your actions, and always direct the message to highlighting your performance and growth (not how important the company was or how well-known the professor you TAed for is). Remember, it is not an essay about science, it is a personal essay—about you and how you have positioned yourself to succeed in graduate school.

Explain the meaning of your experiences

Meaning of Experiences

Your goal in sharing your experiences is to demonstrate that you have the qualifications, qualities, and drive needed to succeed in graduate school. Therefore, you will need to not only choose experiences wisely but also state specifically what they mean within the context of your application.

  • Why was this experience important to your growth as a scientist?
  • What did you gain from or demonstrate during that experience?
  • How will this make you a better grad student?

Even if it feels obvious to you, you need to explicitly answer these questions to your audience. Here are some examples experiences that have been expanded to contain meaning:

Contemplate how disparate activities can be unified into a common narrative about your motivations and achievements. Articulate this clearly to make your statement cohesive.

disparate activities example

Demonstrate your match to the target program

Using the research you did to assess your chosen programs, clearly articulate why you are a match . Consider both directions of the match: not only why you want to go to the school, but also why you would fit in well and contribute to the program.

State which professors in the program you would be interested in working with. Demonstrate that you have done your homework regarding the program. Show how their research areas align with your background and your goals. If you have had conversations with students or professors in the program, be sure to include that as well. 

Common Pitfalls

Write about you , not your role models. One of the most common pitfalls we see in the Comm Lab is students writing touching Personal Statements about family members or role models who have inspired them. There is nothing wrong with including personal stories about people who have helped you understand yourself better, or positioned you to succeed in graduate school, but it is important to tread very carefully. Don’t leave the reader wondering why they are reading about someone else in a document that is meant to be about you. If you take time to talk about someone who positively affected you, make sure to be very clear about how that experience with that person molded you into a strong graduate school candidate.

Be judicious with childhood stories. A brief mention of some childhood experience that shaped your interests in STEM is probably okay, but if you talk about it at length (more than ~2 sentences), you are taking up space that should probably be used to talk about who you are today, not who you were over a decade ago.

Don’t simply restate your resume. Your Personal Statement should be a technical document (having evidence, numbers, and supporting facts) with personal outcomes (talking about your motivations, ambitions, and ability to succeed as a graduate student). Of course, you will reiterate parts of your resume in your Personal Statement , but what uniquely makes it a “Personal Statement” is the discussion of how those professional experiences affected you , as a researcher and person well-suited to the graduate program at X University.  

Insufficient quantification of your experiences. We are all scientists and engineers; our line of work is inherently quantitative. Quantification is a quick and easy way to add context, lend credence to your experiences, and impress the reader. Even little quantifications can help: “I spent two semesters working on a project about…” is much better than “I spent some time working on a project about…”. See more examples in the section on Experiences, above.

Being a great student and having an impressive resume is only half the battle when it comes to graduate school applications. You need to be able to communicate and convince the committee that your personality and particular set of skills and experiences are well-suited to the graduate program you are applying for. This extends beyond graduate school applications: as scientists and engineers, we write papers and technical reports to communicate with our peers and convince them that our work is meaningful.

By reading this article, you have recognized the value of communication and are well on your way to crafting an effective and powerful Personal Statement. This is your opportunity to make yourself shine among all the other candidates, so make it count! You can do it!

Acknowledgements : This content was adapted from the NSE and CEE Communication Labs’ CommKits for graduate applications.

Resources and Annotated Examples

Annotated example 1, annotated example 2.

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Certificate in mechanical engineering KNEC past papers

Electrical principles Entrepreneurship education Fabrication technology ICT Materials and metallurgy Mechanical science 1

Communication skills Mathematics 2 Mechanical science 2 Technical drawing 2 Workshop organization and management

Certificate holders in mechanical engineering in Kenya possess a solid foundation for various entry-level positions across diverse industries. They can pursue roles as mechanical engineering assistants, supporting engineers in tasks such as equipment maintenance, troubleshooting, and quality control in manufacturing plants, construction sites, and automotive workshops.

Opportunities also exist in technical support roles within the energy sector, where graduates may assist in the installation and maintenance of mechanical systems, such as HVAC and plumbing. Additionally, certificate holders can explore careers as mechanical drafters, aiding in the creation of technical drawings and blueprints for engineering projects. With further training and experience, individuals can advance into specialized areas such as CNC machining, welding, or fabrication.

(KNEC past papers, study resources, trainers and trainee resources.)

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