Engineering and Core Technology

Explore roles, required skills, pathways, and market demand for this career cluster.

26 roles
Cluster overview

What this career cluster covers

This cluster groups related career paths that share similar industries, skills, work environments, and education pathways.

Roles included

26 career roles

Review each role to understand typical responsibilities, skill expectations, education routes, growth paths, and demand indicators.

Aeronautical engineeringing Aerospace engineering Automotive engineering BioMedical engineering Chemical engineering Civil engineering Computer Engineering Electrical engineering +18 more

Compare Roles

Select 2 or 3 roles, then compare them in a table.

Aeronautical engineeringing

Science (PCM)
View details

Design, develop, and test aircraft, spacecraft, satellites, and missiles. Focus on aerodynamics, propulsion, structures, and control systems to ensure safety and efficiency in atmospheric and space flight.

Aerospace engineering

Science (PCM)
View details

Aerospace engineers design, develop, test, and help manufacture aircraft, spacecraft, satellites, and missiles. They work with technologies that fly through Earth's atmosphere and beyond. This field involves advanced physics and engineering principles to solve complex challenges in aviation and space exploration.

Automotive engineering

Science (PCM)
View details

Automotive engineers design, develop, and test vehicles and their components. They focus on creating efficient, safe, and sustainable transportation solutions, including advancements in electric and autonomous driving technologies.

BioMedical engineering

Science (PCM)
View details

A dynamic field where engineering principles are applied to healthcare to design and develop medical devices, diagnostic equipment, and therapeutic systems. Professionals in this area work on improving patient outcomes through innovative technological solutions.

Chemical engineering

Science (PCM)
View details

A career where you get to transform matter and turn laboratory chemical reactions into safe, large-scale industrial processes. This field is all about uncovering the secrets of molecular transformations and experimenting with material flows to produce vital compounds society relies on daily.

Civil engineering

Science (PCM)
View details

Civil engineers design, construct, supervise, operate, and maintain construction projects and systems, including roads, buildings, airports, railways, tunnels, dams, bridges, and systems for water supply and sewage treatment. They apply principles of mechanics and hydraulics to analyze and solve structural and system problems.

Computer Engineering

View details

Computer Engineers design, develop, and test computer hardware and software systems. They integrate hardware and software to create functional, efficient, and reliable technological solutions. This involves understanding both the physical components and the programming that makes them operate.

Electrical engineering

Science (PCM)
View details

Electrical engineers design, develop, test, and supervise the manufacturing of electrical equipment. This can range from power generation and transmission systems to intricate electronic components and control systems for various industries.

Electronics engineering

Science (PCM)
View details

Electronics engineers design, develop, test, and supervise the manufacturing of electronic equipment, including devices such as electronic components, and complex systems like computers, communication systems, and control systems. They work with microelectronics, integrated circuits, and signal processing to create the hardware that powers modern technology.

Energy Systems engineering

View details

Energy Systems Engineers design, develop, and manage systems that generate, transmit, and distribute energy. They focus on optimizing efficiency, sustainability, and reliability in various energy sectors.

Industrial Design engineering

View details

Industrial Design Engineers blend engineering principles with aesthetic design to create functional and visually appealing products. They are involved in the entire product development lifecycle, from concept generation to manufacturing. This role requires a strong understanding of user needs, materials, manufacturing processes, and market trends.

Instrumentation engineering

View details

Instrumentation engineers design, develop, install, manage, and maintain the instruments and systems used to monitor and control industrial processes. They ensure precision, accuracy, and efficiency in various operations by leveraging sensor technology and automation.

Marine engineering

View details

Marine engineers design, build, and maintain ships, submarines, offshore platforms, and other marine vessels and structures. They apply engineering principles to solve complex challenges in the maritime industry, focusing on efficiency, safety, and environmental sustainability.

Mechanical engineering

Science (PCM)
View details

Mechanical engineers design, develop, build, and test mechanical and thermal sensors and devices, including tools, engines, and machines. They work on everything from tiny micro-devices to large systems like power plants and vehicles, applying principles of physics and materials science to solve complex problems.

Mechanical engineering (Electrical Vehicles)

View details

Mechanical Engineers specializing in Electric Vehicles (EVs) design, develop, and test the mechanical systems of electric cars, buses, and other electric-powered transportation. They focus on areas like battery systems integration, powertrain mechanics, thermal management, chassis design, and vehicle dynamics specific to EVs.

Mechanics and Computing

Engineering
View details

This role involves the design, development, and maintenance of mechanical systems that are integrated with or controlled by computer systems. It bridges the gap between physical engineering principles and digital technologies.

Mechantronics engineering

Science (PCM)
View details

Mechatronics engineers design, develop, and integrate advanced automated systems that combine mechanical, electrical, and computer engineering. They are instrumental in creating intelligent systems for manufacturing, robotics, and product design.

Metallurgy, Material Scince and Engineering

View details

Metallurgical and Materials Engineers develop, process, and test materials to meet design and performance requirements for products and applications. They are involved in selecting appropriate materials, understanding their properties, and ensuring their effective use in various industries.

Naval Engineering

View details

Naval engineers design, build, and maintain ships, submarines, and other marine vessels and structures. They apply principles of engineering to solve complex challenges related to naval architecture, marine systems, and oceanographic engineering.

Plastic engineering

View details

Plastic engineers design, develop, and test plastic materials and products. They work on improving the properties of polymers and creating innovative applications for plastics in various industries.

Polymer engineering

View details

Polymer engineers design, develop, and test polymers, plastics, rubbers, and other polymeric materials. They focus on understanding the relationship between the structure of polymers and their properties to create new materials or improve existing ones for specific applications.

Robotics engineering

Science (PCM)
View details

Robotics engineers design, build, and test robots and robotic systems. They focus on integrating mechanical, electrical, and computer engineering principles to create machines that can perform tasks autonomously or semi-autonomously. This field involves developing intelligent systems capable of sensing, processing, and acting in their environment.

Sports engineeringing

View details

Sports engineers apply engineering principles to the design, development, and testing of sports equipment, facilities, and performance-enhancing technologies. They focus on improving athletic performance, preventing injuries, and enhancing the user experience in sports.

Structural engineeringing

View details

Structural engineering focuses on the design and analysis of load-bearing structures to ensure their stability, strength, and resilience. This involves mastering complex calculations related to stress distribution, seismic dampening, and dynamic load simulations to create safe and robust buildings and infrastructure. Professionals in this field transform architectural concepts and raw materials into earthquake-resistant towers and other significant constructions.

Systems engineering

View details

Systems engineers design, integrate, and manage complex systems throughout their life cycles. They ensure that all components of a system work together seamlessly to meet specified requirements. This role involves a holistic approach to problem-solving, considering the interdependencies between hardware, software, people, and processes.

Textile engineering

View details

Textile engineers apply engineering principles to the design, development, and manufacturing of fibers, yarns, fabrics, and textile products. They work on improving textile processes, creating new materials, and ensuring quality and efficiency in production.