Cost & earnings at Augustana University What students borrow here, and what they go on to earn
The Bachelor of Science in Chemistry with a focus on Optics and Quantum Chemistry at Augustana University combines a rigorous foundation in chemical principles with specialised study of light–matter interaction and the quantum mechanics that underpins molecular behaviour. It suits students who enjoy laboratory work, mathematical reasoning and pursuing hands‑on research projects that prepare them for graduate study or technical careers in photonics, materials and analytical science.
The programme builds core competency in general, organic and physical chemistry while delivering targeted coursework and laboratory experience in optics, spectroscopy and quantum chemical methods. Students complete a sequence of laboratory-based courses emphasising experimental technique, data analysis and scientific communication alongside theory classes that cover quantum mechanics as applied to atoms, molecules and optical systems.
Applicants are expected to hold a recognised secondary school diploma or equivalent. Strong preparation in chemistry, mathematics (including algebra and precalculus or calculus) and physics at secondary level is recommended. Admissions typically look for solid grades in science and maths subjects and evidence of intellectual curiosity—examples include advanced coursework, science projects or laboratory experience.
Augustana accepts transfer students from other post‑secondary institutions and considers mature applicants; applicants whose first language is not English will need to demonstrate English proficiency according to the university's standard requirements. Prospective students are encouraged to consult the admissions office for details about portfolio materials, placement testing and course advising.
Graduates with a chemistry degree concentrating in optics and quantum chemistry pursue a variety of careers that combine experimental and theoretical skills. Common pathways include:
Augustana is a liberal arts university that emphasises close faculty mentorship and high levels of undergraduate research participation. Chemistry students benefit from small class sizes, frequent access to faculty supervisors and well‑equipped laboratories that support experimental optics and spectroscopy work. The curriculum fosters cross‑disciplinary collaboration with physics and computer science, preparing students for both industry roles and competitive graduate programmes.
Students also gain experiential learning through internships, regional industry partnerships and conference presentations, with career services and alumni networks that help translate academic experience into employment or postgraduate opportunities.
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