Majors
What each degree actually leads to — and the confusion students usually hit along the way.
Aerospace Engineering
Aircraft and space systems engineering with heavy emphasis on structures, propulsion, and avionics rigor.
Artificial Intelligence and Data Science
Combined AI + data curriculum — hireability still depends on SQL, software, and evaluation discipline.
Artificial Intelligence and Machine Learning
A computing-specialized path oriented to ML systems, data, and applied AI products.
Automobile Engineering
Vehicle engineering across design, manufacturing, electronics, and the EV transition.
BCA
Application-focused computing degree — strong path into software when projects and DSA are deliberate.
Biotechnology
Biology meets process and product engineering — labs, bioprocess, and regulated industries.
Chemical Engineering
Process thinking at industrial scale — plants, materials, energy, and increasingly sustainability.
Civil Engineering
Built environment engineering — structures, sites, transportation, water, and infrastructure.
Computer Science and Engineering
A broad computing degree that can lead into product engineering, data, or infrastructure — depending on what you actually build.
Cybersecurity
Security-focused computing path spanning SOC, appsec, networks, and defensive engineering.
Data Science
Degree track focused on analytics, statistical thinking, and data products.
Electrical and Electronics Engineering
Electrical and electronics with strength in power, controls, automation, and increasingly EV/energy systems.
Electrical Engineering
Focused electrical engineering for power systems, machines, and industrial electrical design.
Electronics and Communication Engineering
Electronics and communication with paths into embedded, VLSI, telecom, IoT, and increasingly software-heavy roles.
Electronics and Telecommunication Engineering
Electronics with a telecom lean — similar mobility into embedded, VLSI, and software as ECE.
Industrial Engineering
Systems of people, machines, and flow — productivity, quality, and operations design.
Information Technology
IT sits close to CSE but often leans application systems, networks, and enterprise delivery — still decided by your projects.
Instrumentation Engineering
Measurement and control — sensors, loops, and industrial automation systems.
Internet of Things
Connected devices degree spanning sensors, embedded software, and cloud data paths.
MCA
Postgraduate computing path often used to deepen software readiness after BCA or non-CS undergrad.
Mechanical Engineering
The classic design-to-manufacture branch — products, plants, vehicles, and energy systems.
Mechatronics
Cross-disciplinary machines — mechanical design, electronics, and control in one product.
Metallurgy and Materials
Metals and materials — processing, testing, failure analysis, and selection for products.
Mining Engineering
Mine planning, safety, and production systems for mineral extraction operations.
Petroleum Engineering
Upstream energy engineering — reservoirs, drilling, production, and plant-adjacent process work.
Production Engineering
How things get made — tooling, process, planning, and manufacturing systems.
Robotics
Robotics spanning mechanics, embedded systems, control, and autonomy software.