Civil Engineering

Roads, bridges, water systems, buildings, foundations, and public infrastructure.

Visual learning: These pages use real Wikimedia Commons engineering photographs and technical diagrams.
Bridge Engineering
Bridge EngineeringLarge bridges combine structural analysis, materials, foundations, and construction planning.
Jet Engine
Jet EngineAerospace engineering combines thermodynamics, materials, aerodynamics, and control systems.
Circuit Board
Circuit BoardElectrical and computer engineering connect hardware, signals, sensors, and software.
Prosthetic Engineering
Prosthetic EngineeringBiomedical engineering applies design to medicine and human movement.

Structures

Explore the key ideas behind structures.

Learn More

Roads

Explore the key ideas behind roads.

Learn More

Water Systems

Explore the key ideas behind water systems.

Learn More

Foundations

Explore the key ideas behind foundations.

Learn More

Geotechnical Engineering

Explore the key ideas behind geotechnical engineering.

Learn More

Transportation

Explore the key ideas behind transportation.

Learn More

Public Safety

Explore the key ideas behind public safety.

Learn More

Infrastructure Maintenance

Explore the key ideas behind infrastructure maintenance.

Learn More

Structures

Structures shows how engineers turn scientific ideas into practical systems. Engineers begin with a problem, define requirements, compare possible designs, calculate forces or performance, build models or prototypes, and test results. For structures, success is not only about making something work. Safety, reliability, cost, maintenance, energy use, materials, accessibility, and environmental effects are also part of the design. Modern projects usually involve teams with several specialties.

Roads

Roads shows how engineers turn scientific ideas into practical systems. Engineers begin with a problem, define requirements, compare possible designs, calculate forces or performance, build models or prototypes, and test results. For roads, success is not only about making something work. Safety, reliability, cost, maintenance, energy use, materials, accessibility, and environmental effects are also part of the design. Modern projects usually involve teams with several specialties.

Water Systems

Water Systems shows how engineers turn scientific ideas into practical systems. Engineers begin with a problem, define requirements, compare possible designs, calculate forces or performance, build models or prototypes, and test results. For water systems, success is not only about making something work. Safety, reliability, cost, maintenance, energy use, materials, accessibility, and environmental effects are also part of the design. Modern projects usually involve teams with several specialties.

Foundations

Foundations shows how engineers turn scientific ideas into practical systems. Engineers begin with a problem, define requirements, compare possible designs, calculate forces or performance, build models or prototypes, and test results. For foundations, success is not only about making something work. Safety, reliability, cost, maintenance, energy use, materials, accessibility, and environmental effects are also part of the design. Modern projects usually involve teams with several specialties.

Geotechnical Engineering

Geotechnical Engineering shows how engineers turn scientific ideas into practical systems. Engineers begin with a problem, define requirements, compare possible designs, calculate forces or performance, build models or prototypes, and test results. For geotechnical engineering, success is not only about making something work. Safety, reliability, cost, maintenance, energy use, materials, accessibility, and environmental effects are also part of the design. Modern projects usually involve teams with several specialties.

Transportation

Transportation shows how engineers turn scientific ideas into practical systems. Engineers begin with a problem, define requirements, compare possible designs, calculate forces or performance, build models or prototypes, and test results. For transportation, success is not only about making something work. Safety, reliability, cost, maintenance, energy use, materials, accessibility, and environmental effects are also part of the design. Modern projects usually involve teams with several specialties.

Public Safety

Public Safety shows how engineers turn scientific ideas into practical systems. Engineers begin with a problem, define requirements, compare possible designs, calculate forces or performance, build models or prototypes, and test results. For public safety, success is not only about making something work. Safety, reliability, cost, maintenance, energy use, materials, accessibility, and environmental effects are also part of the design. Modern projects usually involve teams with several specialties.

Infrastructure Maintenance

Infrastructure Maintenance shows how engineers turn scientific ideas into practical systems. Engineers begin with a problem, define requirements, compare possible designs, calculate forces or performance, build models or prototypes, and test results. For infrastructure maintenance, success is not only about making something work. Safety, reliability, cost, maintenance, energy use, materials, accessibility, and environmental effects are also part of the design. Modern projects usually involve teams with several specialties.