Cost & earnings at Boise State University What students borrow here, and what they go on to earn
This Bachelor of Science in Chemistry with a focus on Optics and Quantum Chemistry combines a rigorous foundation in core chemical principles with specialised study of light–matter interactions and quantum-level chemical behaviour. It suits students interested in experimental and theoretical work in photonics, spectroscopy, quantum materials and related technologies, and those planning careers in research, industry or postgraduate study.
The programme builds strong core knowledge in general, organic and physical chemistry before moving to specialised topics in optics and quantum chemistry. You will study the theoretical foundations of quantum mechanics as applied to chemical systems and the experimental techniques used to probe optical and electronic properties of matter.
Elective options allow deeper study in areas such as solid-state chemistry, nanomaterials, surface science, photonic device fabrication and advanced computational chemistry.
Admission is to the university and then to the chemistry programme; applicants are expected to have a high school diploma (or equivalent) with strong preparation in science and mathematics. Typical preparation includes:
Transfer students must provide transcripts from previous college-level study; completion of introductory chemistry and calculus will strengthen transfer applications to the major.
Graduates with a chemistry degree emphasising optics and quantum chemistry are well placed for careers across academia, industry and government. Common paths include:
Internships, undergraduate research and collaboration with regional employers and national laboratories enhance employability and provide practical experience directly relevant to these careers.
Boise State offers a chemistry programme with an emphasis on hands-on learning and undergraduate research. The department provides modern teaching laboratories, opportunities to work with faculty on experimental and computational projects, and supportive small-group instruction in upper-division courses. Proximity to regional technology companies and national laboratory partners provides pathways to internships and collaborative research experiences.
Students benefit from campus-wide support services including career counselling, research funding opportunities for undergraduates and facilities for spectroscopy and instrumental analysis. The university’s focus on applied research and engagement with industry makes it a practical choice for students who want to combine strong chemical theory with experience in optics, photonics and quantum-level applications.
Shortlist scholarships and plan your application — free guidance from our advisors.