University of North Dakota

USA
1 Scholarships 160 Programs 3 Degree levels
Masters

Master's in Chemistry

DegreeMasters
FieldChemistry.
B

Cost & earnings at University of North Dakota What students borrow here, and what they go on to earn

You borrow $22,057 median federal debt
You repay $251/mo over 10 years
Graduates earn $63,552 10 yrs after entry
Debt clears in 0.9 yrs of the salary premium
US Department of Education figures See the full breakdown →

The Master of Science in Chemistry (Optics and Quantum Chemistry emphasis) at the University of North Dakota is a research-focused programme that develops advanced experimental and theoretical skills in optical spectroscopy, photonics and quantum-level chemical modelling. It suits applicants with a strong undergraduate chemistry, physics or engineering background who want to pursue research careers in photonics, quantum technologies or related industrial and national-laboratory roles.

What you'll study

The programme combines advanced coursework with hands-on laboratory research. Core topics typically include quantum chemistry and molecular electronic structure, advanced physical chemistry, optical spectroscopy, laser-matter interactions, and nonlinear optics. Students also study complementary subjects such as statistical mechanics, computational chemistry methods, and experimental techniques for ultrafast and high-resolution optical measurements.

Teaching is delivered through a mix of seminars, lectures and laboratory practica. A significant component is independent research under the supervision of a faculty advisor: projects range from theoretical modelling of quantum systems and ab initio calculations to experimental investigations using lasers, spectrometers, and time-resolved optics. Students gain experience in data analysis, instrument design and scientific communication.

  • Advanced Quantum Chemistry and Electronic Structure
  • Optical and Laser Spectroscopy
  • Ultrafast and Nonlinear Optical Techniques
  • Computational Chemistry and Simulation
  • Experimental Laboratory Methods and Instrumentation

Programme structure

The department offers a flexible master’s structure that typically allows a thesis (research) or project/non-thesis option. Coursework hours are combined with supervised research credits, and students are expected to present research progress in seminars and prepare a final thesis or capstone report depending on the chosen route.

Entry requirements

Applicants are normally expected to hold a bachelor’s degree in chemistry, physics, materials science or a closely related discipline. Typical preparations include undergraduate courses in physical chemistry, general and organic chemistry, calculus, and introductory quantum mechanics or modern physics. Practical laboratory experience and familiarity with computational tools are advantageous.

Required application materials generally include official transcripts, a personal statement outlining research interests, at least two academic references, and a curriculum vitae. International applicants must meet the university’s English language proficiency requirements. Where appropriate, candidates without a fully aligned background may be admitted with specified prerequisite coursework.

Career prospects

Graduates from this emphasis move into a variety of careers. Common paths include research and development roles in photonics and optics companies, positions in national and regional laboratories working on quantum technologies, and roles in semiconductor or instrumentation firms. The programme also prepares students for further academic study at the PhD level and for roles that require strong analytical and instrumentation skills such as chemical analysis, spectroscopy, and computational modelling.

Alumni skills applicable to industry include experimental design, laser and optics instrumentation, quantum-level modelling, data analysis and scientific reporting — all valuable in sectors developing sensors, communication technologies, imaging systems and quantum devices.

Why study at University of North Dakota

The University of North Dakota offers a supportive, research-active chemistry department where students work closely with faculty on contemporary problems in optics and quantum chemistry. Small cohort sizes facilitate direct mentorship, regular seminar interaction and early involvement in laboratory research.

The university provides access to experimental facilities and shared instrumentation important to optical and quantum research, and encourages interdisciplinary collaboration with adjacent departments such as physics and engineering. The programme emphasises hands-on experience, preparing graduates for both applied industrial roles and continued academic research.

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Programme details are indicative and may change — always verify current information with the official university website before applying.