Engineering and Core Technology

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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

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

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Aeronautical engineeringing

Science (PCM)
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Design, develop, and test aircraft and spacecraft, from initial concept to final production. Focus on optimizing aerodynamic performance, structural integrity, and propulsion systems for efficient and safe flight within the atmosphere and beyond.

Aerospace engineering

Science (PCM)
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Aerospace engineers design, develop, test, and help manufacture aircraft, spacecraft, satellites, and missiles. They work on projects ranging from conceptual design to final assembly and testing, focusing on aerodynamics, propulsion, and structural integrity. This field involves applying advanced physics and engineering principles to solve complex challenges in flight and space exploration.

Automotive engineering

Science (PCM)
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Automotive engineers design, develop, and test vehicles and their components. They focus on creating efficient, safe, and environmentally friendly transportation solutions, often specializing in areas like electric powertrains, vehicle dynamics, or manufacturing processes.

BioMedical engineering

Science (PCM)
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Biomedical engineers combine engineering principles with medical sciences to design and develop medical equipment, devices, and software. They create solutions to improve human health, from artificial organs and prosthetics to advanced diagnostic tools and therapeutic systems. This field involves understanding biological systems and material science to ensure safety and efficacy.

Chemical engineering

Science (PCM)
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Chemical engineers design, develop, and operate industrial chemical processes. They transform raw materials into valuable products like fuels, plastics, pharmaceuticals, and food ingredients through safe and efficient large-scale production.

Civil engineering

Science (PCM)
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Civil engineers design, construct, supervise, operate, and maintain infrastructure projects and systems in the public and private sector, including roads, buildings, airports, railways, bridges, tunnels, dams, and systems for water distribution and sewage treatment. They focus on structural integrity, environmental impact, and project feasibility.

Computer Engineering

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Computer Engineers design, develop, test, and supervise the manufacturing of computer hardware, including computer systems, microprocessors, circuit boards, modems, routers, and memory devices. They combine electrical engineering with computer science to create and improve computer systems and components.

Electrical engineering

Science (PCM)
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Electrical engineering involves designing, developing, testing, and supervising the manufacturing of electrical equipment. This includes everything from power generation and distribution systems to complex integrated circuits and telecommunications equipment.

Electronics engineering

Science (PCM)
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Electronics engineers design, develop, test, and supervise the manufacturing of electronic equipment, including electrical systems, components, and machinery. They work with devices such as transistors, diodes, microchips, and complex circuit boards to create everything from consumer electronics to advanced communication systems.

Energy Systems engineering

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Energy Systems Engineers design, develop, and manage systems for the efficient generation, distribution, and utilization of energy. They focus on both conventional and renewable energy sources, ensuring reliability and sustainability.

Industrial Design engineering

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Industrial Design Engineers blend artistic creativity with engineering principles to design and develop products that are both aesthetically pleasing and functional. They focus on user experience, ergonomics, and manufacturability, translating concepts into tangible designs that meet market needs.

Instrumentation engineering

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Instrumentation engineers design, develop, install, manage, and maintain the equipment used to monitor and control physical variables like temperature, pressure, flow, and level in industrial processes. They ensure systems operate safely, efficiently, and accurately by applying principles of measurement, control, and electronics.

Marine engineering

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Marine engineers design, develop, and manage the operation and maintenance of mechanical systems for ships, offshore structures, and other marine vessels. They focus on propulsion systems, power generation, and hull integrity to ensure safe and efficient maritime operations.

Mechanical engineering

Science (PCM)
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Mechanical engineering is a broad field focused on the design, analysis, manufacturing, and maintenance of mechanical systems. It involves applying principles of physics, materials science, and engineering to create and improve everything from tiny micro-devices to large-scale industrial machinery. This discipline is fundamental to many industries, driving innovation in areas like energy, transportation, and automation.

Mechanical engineering (Electrical Vehicles)

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Focuses on the design, development, manufacturing, and testing of mechanical components and systems for electric vehicles (EVs). This involves understanding vehicle dynamics, powertrain integration, battery thermal management, and chassis design tailored for electric propulsion.

Mechanics and Computing

Engineering
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This role combines mechanical engineering principles with computer science to design, develop, and maintain automated systems, robotics, and smart devices. It involves creating and managing the hardware and software that enable machines to perform tasks autonomously or with human-machine interaction.

Mechantronics engineering

Science (PCM)
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Mechatronics engineers design, develop, and maintain integrated systems that combine mechanical, electrical, electronic, and computer engineering. They focus on creating smart automated solutions for industries.

Metallurgy, Material Scince and Engineering

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Metallurgical and Materials Engineers are concerned with the study, design, and development of metals, polymers, ceramics, and composites. They research the properties and applications of materials to create new products or improve existing ones, ensuring they meet specific performance requirements.

Naval Engineering

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Naval engineers design, build, and maintain ships, submarines, and other marine vessels and structures. They apply principles of engineering, physics, and mathematics to solve complex challenges related to naval architecture, marine systems, and oceanography. This field is crucial for national defense, maritime trade, and offshore resource exploration.

Plastic engineering

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Plastic engineers design, develop, and test plastic materials and products. They work on optimizing the properties of polymers for various applications, ensuring product quality and performance.

Polymer engineering

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Polymer engineers design, develop, and test new polymer materials and processes. They work with plastics, rubbers, and other polymers to create innovative products for various industries.

Robotics engineering

Science (PCM)
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Robotics engineers design, build, and test robots and robotic systems. They apply principles of mechanics, electronics, and computer science to create machines that can perform tasks autonomously or semi-autonomously, often in manufacturing, healthcare, or exploration.

Sports engineeringing

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Sports engineers apply engineering principles to the design, development, and improvement of sports equipment, facilities, and performance-enhancing technologies. They focus on biomechanics, materials science, and product development to enhance athletic performance, safety, and the overall sporting experience.

Structural engineeringing

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Structural engineers design, analyze, and oversee the construction of structures to ensure their safety and stability. They apply principles of physics and materials science to calculate loads, stresses, and strains on buildings, bridges, dams, and other constructions. This involves creating detailed plans and specifications that meet building codes and regulations.

Systems engineering

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Systems engineers design, integrate, and manage complex systems throughout their life cycles. They focus on the overall architecture, ensuring all components work together efficiently and effectively to meet user needs and project goals.

Textile engineering

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Textile engineers develop new fabrics, fibers, and manufacturing processes. They work on improving the quality, sustainability, and performance of textile products and machinery.