Fields of engineering
Fire protection engineering
Food process engineering
Forensic engineering
Forest engineering
Genetic engineering
Geomatics engineering
Geotechnical engineering
Industrial engineering
Information technology engineering
Instrumentation engineering
Landscape engineering
Logistic engineering
Manufacturing engineering
Marine engineering
Materials engineering
6.78M

Fields of Engineering

1. Fields of engineering

FIELDS OF
ENGINEERING
Shvarts Maxim, Vorobyov Timur, Azarov
Nikita 1A41
12.02.2026

2. Fire protection engineering

FIRE PROTECTION ENGINEERING
Application of scientific principles to protect people,
property, and the environment from fire and related
hazards.
Nanoelectronics and Electronics
Applications:
Smart sensors with nanomaterials can detect smoke, heat,
or toxic gases at extremely low concentrations for earlier
warnings.
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3. Food process engineering

FOOD PROCESS ENGINEERING
Transform raw agricultural materials into safe, shelf-stable,
and high-quality food products. It focuses on operations like
heating, freezing, drying, fermentation, and packaging while
ensuring efficiency, nutrition, and food safety.
Nanoelectronics and Electronics Applications:
Precision control systems with microelectronics regulate
temperature, pressure, and humidity during processing to
maintain consistent quality.
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4. Forensic engineering

FORENSIC ENGINEERING
It combines engineering analysis with legal investigation,
often involving site inspections, material testing, and
reconstruction of incidents.
Nanoelectronics and Electronics Applications:
Portable electron microscopes allow on-site analysis of
fracture surfaces, corrosion, or material defects at the atomic
scale.
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5. Forest engineering

FOREST ENGINEERING
Managing forest ecosystems, focusing on timber harvesting,
road construction, watershed protection, and reforestation.
Nanoelectronics and Electronics Applications:
Drones
equipped
with
hyperspectral
imaging
and
nanoelectronics detect early signs of fire, pest infestation,
disease, illegal logging from the air.
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6. Genetic engineering

GENETIC ENGINEERING
Manipulating an organism's DNA to alter its
characteristics, involving the creation of new traits or the
correction of genetic defects.
Nanoelectronics and Electronics Applications:
Biosensors can detect specific DNA sequences or geneediting outcomes with high sensitivity, accelerating
research and quality control.
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7. Geomatics engineering

GEOMATICS ENGINEERING
Collecting and study information about land, water, and maps
using this to make maps, help cars find roads, and watch
changes in nature.
Nanoelectronics and Electronics Applications:
Drones with cameras take pictures of fields and forests.
Computers measure how fast land moves after earthquakes.
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8. Geotechnical engineering

GEOTECHNICAL ENGINEERING
Studying soil and rock to make sure buildings,
bridges, and roads stay strong and safe.
Nanoelectronics and Electronics Applications:
Small sensors in the ground check for water or
movement. Electronics warn us before landslides
happen. Nano tools measure how hard or soft the soil
is.
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9. Industrial engineering

INDUSTRIAL ENGINEERING
Making work faster, easier, and better in factories,
hospitals, and offices.
Helping people and machines work well together.
Nanoelectronics and Electronics Applications:
Smart sensors check machines and tell when they need
fixing.
Computers help plan the best way to do work.
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10. Information technology engineering

INFORMATION TECHNOLOGY
ENGINEERING
Building and taking care of computers, networks, and
software so people can share information.
We help keep data safe and make sure systems work fast.
Nanoelectronics and Electronics Applications:
Tiny chips store lots of information in phones and laptops.
Small electronics help computers talk to each other without
wires.
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11. Instrumentation engineering

INSTRUMENTATION ENGINEERING
Creating and using special tools to measure things like
temperature, pressure, and speed.
Helping machines and factories work correctly and safely.
Nanoelectronics and Electronics Applications:
Temperature sensors inside engines stop them from getting
too hot.
Nano-measuring tools find very small problems in
machines.
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12. Landscape engineering

LANDSCAPE ENGINEERING
Designing and fixing spaces like parks, gardens, and hills to be
beautiful and useful.
Controlling water, plants, and soil to protect nature and help
people enjoy the land.
Nanoelectronics and Electronics Applications:
Humidity sensors in soil tell when plants need water.
Electronics in fountains and lights turn on automatically.
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13. Logistic engineering

LOGISTIC ENGINEERING
Planning how to move, store, and deliver things so they
arrive on time and in good condition.
Nanoelectronics and Electronics Applications:
Small tracking tags show where packages are during
shipping.
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14. Manufacturing engineering

MANUFACTURING ENGINEERING
Building machines and steps to make products quickly and
well.
Turning materials into things like cars, phones, or toys.
Nanoelectronics and Electronics Applications:
Electronics in robots help them build things fast.
Smart systems count products and fix small mistakes by
themselves.
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15. Marine engineering

MARINE ENGINEERING
Making and repairing engines and machines on boats, submarines,
and oil platforms.
Keeping power, water, and steering systems working right in the
ocean.
Nanoelectronics and Electronics Applications:
Computers help control the direction of the boat.
Special coverings stop small sea creatures from attaching to boats.
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16. Materials engineering

MATERIALS ENGINEERING
Learning about and making new stuff like
metal, plastic, and glass using the best
materials to build things that are in need.
Nanoelectronics and Electronics
Applications:
Non-destructive testing systems check if
material is breaking inside
Machines test how much weight a new
part can hold.
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