Cost & earnings at University of Massachusetts Boston What students borrow here, and what they go on to earn
Science, Technology and Society graduates earn a median $52,107 Across 50 US programmes, two years after finishing
See the degree grade →The PhD in Computational Science at the University of Massachusetts Boston is an interdisciplinary research degree that builds advanced expertise in numerical methods, high-performance computing, modelling and data analysis for applications across science and engineering. It suits applicants with a strong quantitative background who want to pursue research careers in academia, industry research groups, national laboratories or data-driven technical roles.
The programme combines coursework, qualifying examinations, research rotations and an independent doctoral dissertation. Core themes include numerical analysis, scientific computing, parallel and high-performance computing, mathematical modelling, uncertainty quantification and data-intensive methods. Students take advanced elective modules from applied mathematics, computational physics, computational biology, statistics and computer science to tailor the degree to a specific application domain.
Programme structure typically begins with 1–2 years of coursework and rotations, followed by qualifying exams and an extended period dedicated to independent research and dissertation writing. Students are expected to develop and implement computational methods, produce peer-reviewed publications and present at scientific conferences.
Applicants are normally expected to hold a relevant master’s degree or a strong bachelor’s degree in mathematics, physics, computer science, engineering or a related quantitative discipline. Admissions committees look for evidence of mathematical maturity and programming ability, such as coursework in calculus, linear algebra, numerical analysis and experience with scientific programming (e.g. Python, C/C++, Fortran, MPI).
Graduates from a PhD in Computational Science are prepared for research-intensive roles across academia, industry and the public sector. Typical career paths include university faculty positions, postdoctoral research, research scientist roles in national laboratories, and R&D positions in technology companies, finance, energy, healthcare and engineering firms.
UMass Boston offers an interdisciplinary environment with faculty across mathematics, physics, computer science and domain sciences who collaborate on computational research. The university’s location in the greater Boston research and innovation ecosystem provides easy access to partner institutions, hospitals and regional laboratories, facilitating collaborative projects and networking.
Students benefit from access to departmental computing resources, research seminars and opportunities for cross-department supervision. The programme emphasises applied, reproducible computational research and prepares graduates to address complex, data- and computation-intensive problems in science and engineering.
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