BRUSH UP YOUR ENGINEERING SKILLS (Robotics, Mechatronics, Automation). Учебное пособие
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Text 1: What is Engineering?
on involve … understanding to result … profitability
within solutions … problems
-based … information meet … specifications arrive … outcomes
8.Найти синонимы данных слов в тексте:
1 necessary;
2 obvious, understandable;
3 enormous, large;
4 examination, verification, observation;
5 information, awareness;
6 support, service;
7 production;
8 purpose, aim, goal;
9 productivity, effectiveness, efficiency;
10warehouse;
11device;
12to carry, to lead, to perform;
13to grow, to rise;
14to offer, to suggest;
15to improve, to enhance;
16to decrease, to weaken, to shrink.
9.Составить словосочетания (как в тексте):
1 |
remote |
a |
analysis |
2 |
carbon |
b |
requirements |
3 |
analytical |
c |
monitoring |
4 |
data |
d |
thinking |
5 |
renewable |
e |
systems |
6 |
desired |
f |
footprint |
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meet |
g |
objectives |
8 |
existing |
h |
energy |
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technological |
a |
reduction |
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Unit 1. Engineering
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cost |
b |
automation |
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quality |
c |
integrity |
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data |
d |
standards |
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industrial |
e |
solutions |
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risk |
f |
principles |
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scientific |
g |
control |
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desired |
h |
assessment |
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10.Сопоставить слово с его определением:
1efforts made to maintain, restore, or promote someone's physical, mental, or emotional well-being especially when performed by trained and licensed professionals;
2the ability to maintain or support a process continuously over time;
3a computer program which is designed for a particular purpose;
4something that follows as a result or consequence;
5something wanted or needed;
6a process by which information is exchanged between individuals through a common system of symbols, signs, or behavior.
7a new idea, method, or device;
8the degree to which a company can produce goods or services at a lower cost than its competitors;
9the entire set of programs, procedures, and related documentation associated with a mechanical or electronic system and especially a computer system;
10the ability of a company or business to generate revenue over and above its expenses;
11the taking of preliminary steps toward a particular purpose;
12a process to confirm or establish the truth, accuracy, or reality of something.
13the ability to learn or understand or to deal with new or trying situations;
application
communication
healthcare
outcome
requirements
sustainability
approach
competitiveness
innovation
profitability
software
verification
budget
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Text 1: What is Engineering?
14the extent to which an experiment, test, or measuring procedure yields the same results on repeated trials;
15the return to the input of a part of the output of a machine, system, or process;
16simplifying to make more efficient or profitable;
17the sequence of steps involved in moving from the beginning to the end of a working process;
18the amount of money that is available for, required for, or assigned to a particular purpose.
feedback
intelligence
reliability
streamline
workflow
11. Заполнить таблицу (добавить недостающую форму единственного или множественного числа):
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principle |
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city |
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need |
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strategies |
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opportunity |
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idea |
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business |
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challenges |
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tool |
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technology |
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system |
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process |
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12. Образовать недостающие части речи: |
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creativity |
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consistency |
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reliability |
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success |
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application |
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diverse |
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contribute |
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Unit 1. Engineering
6 |
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competitiveness |
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execution |
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improve |
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utilize |
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reduce |
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13. В каком абзаце говорится о:
1.Cost reduction and efficiency enhancement?
2.Problem-solving and innovation?
3.Risk assessment and management?
4.Product and process improvement?
14.Какие основные принципы инженерии перечислены в тексте?
15.Перечислить основные технологии, которые используются в инженерии.
Text 2:Types of Engineering
If you stand in the middle of a city or even in a room in your home and look around, at least 90% of what you see was developed by some kind of engineer. Engineering is the practice of using principles developed in various fields of science to produce novel products that don’t exist in nature. You’re able to read this article on a computer or mobile device thanks to computer engineers who have worked tirelessly to develop computer technology. If you’re currently inside a building, you can be fairly sure that it’s not going to fall in on you thanks to structural engineers. Here are 20 different types of engineering and how their practitioners contribute to making our everyday lives a little easier.
1. Aerospace Engineering
Aerospace engineers work to develop things that fly-airplanes, spacecraft, missiles, and so on. They do so by incorporating physics principles such as lift, drag, and thrust. The products that they develop help to defend us from threatening nations and help us go where we need to go, whether that’s a vacation to
Greece or a space flight to Mars.
2. Agriculture & Food Engineering
These engineers are all about food. Food engineers help design systems for producing, storing, and distributing it. They are responsible for ensuring that we
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Text 2:Types of Engineering
can continually produce enough food to feed our growing populations and that the food is stored in a safe and efficient manner. Without them, we would likely have to deal with food shortages on a regular basis.
3. Architectural Engineering
Architectural engineers are tasked with designing buildings, preferably ones that won’t fall down. To achieve this, they study things like the strengths of various building materials, how to make buildings withstand earthquakes and high winds, how different soil types affect the stability of a building, and so on. Without architectural engineers, we would presumably still be building our homes and community buildings out of mud and sticks. We certainly wouldn’t have the large skyscrapers that we have today.
4. Automotive Engineering
Automotive engineers design the cars, trucks, SUV’s, and vans that you and
I drive on a daily basis. They use their knowledge of things like aerodynamics, material densities, and even software and electronics applications to design everything from the physical shapes of cars to their complicated electrical systems.
If we didn’t have automotive engineers, getting around would be not only much slower but also much more difficult.
5. Biomedical Engineering
Biomedical engineers are the ones who design the devices and instrumentation used in the healthcare industry. Everything from prosthetic limbs to CPAP machines have been developed by biomedical engineers. They build the machines and other devices that help save our lives, deliver our babies, and sometimes just live a little more comfortably.
6. Biotechnology Engineering
Biotechnology engineers use principles from biochemistry to develop things like medicine, cell and tissue cultures used in research, and even art! Like biomedical engineers, biotechnology engineers study ways to keep us alive and healthy. Without both biomedical engineers and biotechnology engineers, we would likely still have lifespans of only 35 years.
7. Chemical Engineering
Chemical engineering is about designing new chemicals for all kinds of uses. They develop plastics and other polymers, fuels, medicines, and many other types of chemical compounds, as well as the processes that are used to make these
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Unit 1. Engineering
things from raw materials. Life would definitely be a lot different without chemical engineers.
8. Civil Engineering
Civil engineers design some of the most important systems. They design systems to supply people with clean water as well as systems to clean it back up after use. They also design things like roads, bridges, dams, etc. Without civil engineers, we would still be walking through the woods to a nearby river to get water.
9. Computer Engineering
Computer engineers don’t only design home computers. They also develop mobile devices, embedded computer systems for industrial processing, computer peripherals like keyboards and printers, machine learning and artificial intelligence programs, and much more. For better or worse, we would never have reached the digital age without computer engineers.
10. Electrical and Instrumentation Engineering
Electrical and instrumentation engineers develop machines and equipment that are used in manufacturing, vehicles, research, etc. Most of the other engineers on this list rely in some way on instrumentation that’s designed by an instrumentation engineer. They develop the instruments that help pilots fly and allow doctors and nurses to monitor your vital signs.
11. Electronics and Communication Engineering
Electronics engineers and communication engineers design things like computer systems and telecommunications systems. Electronics engineers design systems that incorporate things like motors and actuators as well as small electronics. Without electronics engineers and communication engineers, we wouldn’t have many of the complicated electronics and control machinery that manufacturers use to produce all of our everyday products.
12. Environmental Engineering
Environmental engineers work to solve problems related to the environment, typically problems caused by human activities. They design ways to decrease water and air pollution and chemical runoff from farms and manufacturing facilities. They also tackle issues of public health related to how we interact with our environment. Their biggest challenges involve keeping ecosystems functioning properly despite the continuing growth of human populations.
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Text 2:Types of Engineering
13. Industrial and Production Engineering
Industrial engineers and production engineers develop systems to increase efficiency in industrial and manufacturing facilities. They do this by incorporating things like automation to design new machines and processes that make better use of available resources. Many of the products that we buy would be much more expensive if not for the efficiency in manufacturing that results from the efforts of industrial and production engineers.
14. Marine Engineering
What aerospace engineers are to air, marine engineers are to water. They design things that go in the water, including ships, submarines, and even offshore drilling equipment. Many industries that we rely on, from fishing to logistics to defense, require ships and other water vessels to operate. Without marine engineers, we wouldn’t have water skiing or Mediterranean cruises.
15. Materials Science Engineering
These engineers design and develop ways to take raw materials and turn them into materials that we can use to make valuable products. While this is also what chemical engineers do, materials science engineers typically only work with solids to make things like new stronger metals, nonmetals, and more. Many of the materials that the other engineers on this list rely on, like computer chips and plastics and metals for medical devices, wouldn’t exist without materials science engineers.
16. Mechanical Engineering
Mechanical engineers design many types of machines, such as engines for vehicles and industrial uses, refrigeration systems for restaurants and food storage, turbines for power generation, and more. Without mechanical engineers, we wouldn’t have refrigerators or air conditioning in our homes. And we also wouldn’t have any electricity to run them even if we did.
17. Mining and Geological Engineering
Geological engineers study things related to the earth. They can use the knowledge gained from their studies to tell us where to build a tunnel to connect a roadway to two sides of a mountain or how and where to build a hydropower plant. A mining engineer can assist us in safely building a mine for digging up things like coal or gold for energy production or for making electronics and jewelry.
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Unit 1. Engineering
18. Nuclear Engineering
Many nations around the world are incorporating nuclear energy into their national energy programs. The nuclear reactors that play a crucial role in producing nuclear energy are designed and built by nuclear engineers. They are tasked with ensuring the reactors are safe, not only for the people who work there but also for the people who live in the surrounding areas.
19. Petroleum Engineering
Petroleum engineers not only develop ways of finding oil underground but also methods of extracting it. Since most of our world runs on fuels derived from oil, it’s safe to say that things would be a lot different without petroleum engineers.
20. Textile Engineering
Textile engineering involves producing new kinds of fabrics and fibers, not only for making clothing and drapes but also for things like papers and cardboard products. Textile engineers ensure that humanity is not doomed to a life of nothing but cotton and wool socks.
From the products we buy to the homes that we live in, our lives are forever made easier by a group of people we call engineers. As new sciences emerge, so do new ways to utilize the fruits of those sciences in ways that can improve our lives. (2)
1.Составить вопросы к тексту, учитывая данные ответы:
1.How much … ? – 90%.
2.Who… ? – Food engineers.
3.What principles… ? – Principles from biochemistry.
4.Why… ? – To make buildings strong/
5.What … ? – Different types of chemical compounds.
2. Сопоставить виды инженерии с их описанием (с их функциями):
Aerospace engineering |
Biomedical engineering |
Chemical engineering |
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Civil engineering |
Computer engineering |
Electrical engineering |
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Environmental |
Industrial engineering |
Mechanical |
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engineering |
engineering |
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Nuclear engineering |
Structural engineering |
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Text 2:Types of Engineering
1.…involves the design, manufacturing, inspection and maintenance of machinery, equipment and components as well as control systems and instruments for monitoring their status and performance.
2.… involves the design, testing, manufacturing, construction, control, monitoring and inspection of electrical and electronic devices, machinery and systems.
3.… involves the design, construction, maintenance and inspection of large infrastructure projects such as highways, railroads, bridges, tunnels, dams and airports.
4.… involves the design, manufacturing and testing of aircraft and spacecraft as well as parts and components such as airframes, power plants, control and guidance systems, electrical and electronic systems, and communication and navigation systems.
5.… involves the design, manufacturing, construction, operation and testing of equipment, systems and processes involving the production, control and detection of nuclear radiation; it also includes monitoring and protecting humans from the potentially harmful effects of radiation.
6.… involves the design, construction and inspection of load-bearing structures such large commercial buildings, bridges and industrial infra-structure.
7.… is the practice of designing systems, equipment and devices for use in the practice of medicine; it also involves working closely with medical practitioners, including doctors, nurses, technicians, therapists and researchers, in order to determine, understand and meet their requirements for systems, equipment and devices.
8.… is the practice of designing equipment, systems and processes for refining raw materials and for mixing, compounding and processing chemicals to make valuable products.
9.… is the practice of designing computer hardware components, computer systems, networks and computer software.
10.… is the practice of designing and optimizing facilities, equipment, systems and processes for manufacturing, material processing, and any number of other work environments.
11.… is the practice of preventing, reducing and eliminating sources of pollution that affect air, water and land; it also involves detecting and measuring pollution levels, determining sources of pollution, cleaning up and rehabilitating polluted sites and ensuring compliance with local, state and federal regulations.
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Unit 1. Engineering
3.Определить, являются ли следующие утверждения правдивыми
(TRUE; FALSE; MAYBE):
1.Petroleum engineers develop methods of finding oil underground.
2.Without mechanical engineers, we would not have refrigerators or air conditioning in our homes.
3.Marine Engineering plays a significant role both for water and for air.
4.Materials science engineers work not only with solids.
5.Computer engineers design only home computers.
6.Automotive engineers help us getting around much faster.
7.Food engineers have more than four functions.
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