Engineering Physics Undergraduate Programme By Institut Teknologi Bandung (ITB) |TopUniversities
Main Subject Area

Engineering - GeneralMain Subject Area

Programme overview

Main Subject

Engineering - General

Degree

BSc

Study Level

Undergraduate

Study Mode

On Campus

Engineering Physics program is designed to provide "generalist" graduates to complement the "specialist" graduates from monodisciplinary fields. However, in terms of its scientific elements, Engineering Physics overlaps with several traditional study programs such as Physics, Electrical Engineering, Mechanical Engineering, Chemical Engineering, Civil Engineering, Architectural Engineering, Biology, and others. The term "generalist" here does not mean that Engineering Physics graduates lack unique knowledge and skills. Instead, this field of study equips students with an interdisciplinary perspective that can be applied to various technical problems, including those found in monodisciplinary studies. Meanwhile, the Multi-physics and Multi-scale approaches help realize the interdisciplinary capabilities being developed. As a result, Engineering Physics graduates are typically identified as R&D engineers, system engineers and interdisciplinary engineers, making them suitable for engineering roles in departments or workgroups such as research and development, quality control, product quality assurance, environmental and sustainability systems, instrumentation, control and automation, new and renewable energy, nanomaterials/advanced materials, and more—whether in industry or the public sector. Moreover, industries that emphasize technical development, innovation, and the proactive adoption of emerging technologies to address engineering challenges with multiple constraints from various disciplines provide an ideal work environment for Engineering Physics graduates. In general, industries and public sectors that require the integration and interaction of multiple disciplines to solve complex problems align well with the characteristics of Engineering Physics graduates. Specifically, career fields that have evolved for Engineering Physics graduates include material engineers, instrumentation and control engineers, biomedical engineers, acoustic and ultrasonic engineers, built environment engineers and consultants, and new and renewable energy engineers. In the future, these career fields will continue to expand in line with industry demands and technological advancements, including roles such as energy storage and material engineers, quantum computing engineers, and beyond

Programme overview

Main Subject

Engineering - General

Degree

BSc

Study Level

Undergraduate

Study Mode

On Campus

Engineering Physics program is designed to provide "generalist" graduates to complement the "specialist" graduates from monodisciplinary fields. However, in terms of its scientific elements, Engineering Physics overlaps with several traditional study programs such as Physics, Electrical Engineering, Mechanical Engineering, Chemical Engineering, Civil Engineering, Architectural Engineering, Biology, and others. The term "generalist" here does not mean that Engineering Physics graduates lack unique knowledge and skills. Instead, this field of study equips students with an interdisciplinary perspective that can be applied to various technical problems, including those found in monodisciplinary studies. Meanwhile, the Multi-physics and Multi-scale approaches help realize the interdisciplinary capabilities being developed. As a result, Engineering Physics graduates are typically identified as R&D engineers, system engineers and interdisciplinary engineers, making them suitable for engineering roles in departments or workgroups such as research and development, quality control, product quality assurance, environmental and sustainability systems, instrumentation, control and automation, new and renewable energy, nanomaterials/advanced materials, and more—whether in industry or the public sector. Moreover, industries that emphasize technical development, innovation, and the proactive adoption of emerging technologies to address engineering challenges with multiple constraints from various disciplines provide an ideal work environment for Engineering Physics graduates. In general, industries and public sectors that require the integration and interaction of multiple disciplines to solve complex problems align well with the characteristics of Engineering Physics graduates. Specifically, career fields that have evolved for Engineering Physics graduates include material engineers, instrumentation and control engineers, biomedical engineers, acoustic and ultrasonic engineers, built environment engineers and consultants, and new and renewable energy engineers. In the future, these career fields will continue to expand in line with industry demands and technological advancements, including roles such as energy storage and material engineers, quantum computing engineers, and beyond

Scholarships

Selecting the right scholarship can be a daunting process. With countless options available, students often find themselves overwhelmed and confused. The decision can be especially stressful for those facing financial constraints or pursuing specific academic or career goals.

To help students navigate this challenging process, we recommend the following articles:

More programmes from the university

Undergrad Programmes 41