Simmons University

USA
2 Scholarships 56 Programs 3 Degree levels
Bachelor

Bachelor's in Chemistry

Offered at Simmons University, USA
DegreeBachelor
FieldChemistry.
C

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

You borrow $24,840 median federal debt
You repay $282/mo over 10 years
Graduates earn $63,494 10 yrs after entry
Debt clears in 1 yrs of the salary premium
US Department of Education figures See the full breakdown →

The Bachelor of Science in Chemistry with a focus on Optics and Quantum Chemistry at Simmons University is an undergraduate degree that combines a strong foundation in core chemical principles with specialised study in light–matter interactions and quantum theory. It suits students who want hands‑on laboratory experience, undergraduate research opportunities, and preparation for careers or further study in photonics, materials science, quantum information, or related industries.

What you'll study

The programme is built around core chemistry subjects and targeted modules in optics and quantum chemistry. You will take sequential courses in general chemistry, organic chemistry, physical chemistry and analytical chemistry, supported by rigorous laboratory work. Layered on top of this foundation are specialised courses such as quantum chemistry, molecular spectroscopy, optics and photonics, and computational chemistry.

  • Core modules: General Chemistry, Organic Chemistry, Inorganic Chemistry, Analytical Chemistry, Physical Chemistry, Instrumental Analysis.
  • Optics & quantum modules: Introduction to Quantum Mechanics for Chemists, Quantum Chemistry, Molecular Spectroscopy, Optics and Photonics, Laser Spectroscopy, Quantum Materials.
  • Supporting modules: Mathematics for Chemists (calculus and linear algebra), Statistical Mechanics, Computational Methods in Chemistry, Data Analysis and Experimental Design.
  • Laboratory and research: Progressive lab sequences that develop practical skills in synthesis, spectroscopic characterisation, and instrumental operation, plus an advanced laboratory course and a year‑long senior research project or capstone involving independent research under faculty supervision.
  • Experiential learning: Internship placements, summer research (REU-style) opportunities, and collaborations with local research centres and industry partners in the Boston area to gain applied experience in photonics, materials, or quantum technologies.

Entry requirements

Applicants should hold a high school diploma (or equivalent) with strong preparation in mathematics and the sciences. Recommended preparation includes high school chemistry, physics and calculus or pre-calculus; laboratory experience is highly desirable.

  • Academic readiness: evidence of strong performance in STEM subjects.
  • Preparation: coursework in chemistry, physics and mathematics is recommended prior to entry.
  • International applicants: proof of English language proficiency where applicable and documentation of equivalent secondary qualifications.
  • Other materials: personal statement describing scientific interests, and academic references that speak to readiness for a rigorous laboratory programme.

Career prospects

Graduates are prepared for a wide range of careers that draw on chemistry, optics and quantum science. The programme emphasises practical laboratory skills, data analysis and independent research, all of which are valued by employers and postgraduate programmes.

  • Industry roles: research and development scientist, analytical chemist, process chemist, photonics/optics technician in companies ranging from instrumentation manufacturers to materials and semiconductor firms.
  • Technology and innovation: positions in quantum information, optical communications, sensors and materials characterisation.
  • Further study: many graduates progress to graduate programmes (MSc or PhD) in chemistry, materials science, optical engineering or quantum science, or professional schools in fields such as patent law or medicine.
  • Other paths: roles in environmental testing, quality control, technical sales, science education and laboratory management.

Why study at Simmons University

Simmons combines a liberal arts environment with a commitment to hands‑on STEM education. Chemistry students benefit from small class sizes, close faculty mentoring and extensive access to on‑campus laboratories designed for undergraduate research. The university’s location in the Boston area provides ready access to a dense ecosystem of research institutions, hospitals and technology companies, which supports internship and collaborative research opportunities.

The programme emphasises experiential learning and student research, enabling students to graduate with a portfolio of laboratory skills, independent project experience and professional contacts that ease the transition to graduate study or employment in optics, quantum chemistry and related fields.

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