Florida State University

USA
1 Scholarships 180 Programs 3 Degree levels
Bachelor

Bachelor's in Atmospheric Sciences and Meteorology

Offered at Florida State University, USA
DegreeBachelor
FieldAtmospheric Sciences and Meteorology.
B

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

You borrow $18,000 median federal debt
You repay $205/mo over 10 years
Graduates earn $61,675 10 yrs after entry
Debt clears in 0.8 yrs of the salary premium
US Department of Education figures See the full breakdown →
C

Atmospheric Sciences and Meteorology graduates earn a median $35,238 Across 83 US programmes, two years after finishing

See the degree grade →

The Bachelor in Atmospheric Sciences and Meteorology at Florida State University is an undergraduate degree that builds a rigorous foundation in the physics and dynamics of the atmosphere, combined with hands-on training in observation, modelling and data analysis. It suits students who enjoy mathematics and physics, are curious about weather and climate processes, and who seek careers in forecasting, environmental consulting, research or related applied fields.

What you'll study

The programme emphasises the fundamental sciences that govern atmospheric behaviour and provides practical skills in observation and numerical modelling. Core topics typically include synoptic and mesoscale meteorology, atmospheric dynamics, thermodynamics, cloud microphysics, radiation, and physical climatology. Students gain training in remote sensing and radar meteorology, numerical weather prediction, air quality and atmospheric chemistry, and statistical methods for atmospheric data.

Instruction combines lectures, problem sets and laboratory work. Students complete coursework in calculus, differential equations, physics, and computer programming to support model development and data analysis. Practical components include laboratory exercises with instrumentation and sensors, radar and satellite data interpretation, and exposure to operational forecast techniques. Many programmes also incorporate a capstone project or senior research thesis that applies classroom learning to a real-world atmospheric problem.

  • Synoptic and mesoscale meteorology
  • Atmospheric dynamics and thermodynamics
  • Cloud physics and precipitation processes
  • Radar and satellite remote sensing
  • Numerical weather prediction and modelling
  • Air quality and atmospheric chemistry
  • Programming for atmospheric science (e.g. Python, MATLAB/Fortran familiarity)
  • Field methods, instrumentation and data analysis

Entry requirements

Applicants need a high-school diploma or equivalent with a strong background in mathematics and physical sciences. Typical preparation includes courses in calculus, physics and chemistry; experience with algebra, trigonometry and statistics is useful. Admissions decisions consider overall academic record, recommendation letters and personal statements that demonstrate interest in atmospheric science. If standardised tests are submitted, they are reviewed alongside the academic record but specific test thresholds are not prescribed here.

Incoming students who lack certain preparatory courses may be advised to take introductory university mathematics and physics courses in their first year. Transfer students should provide transcripts from previous post‑secondary institutions and may receive credit for relevant coursework subject to departmental review.

Career prospects

Graduates are prepared for a range of careers that use atmospheric and environmental expertise. Common pathways include operational weather forecasting (National Weather Service and regional forecasting centres), broadcast meteorology, environmental and air-quality consulting, and roles in energy, agriculture and insurance sectors that require weather and climate risk assessment. Other graduates work in research and modelling positions in government agencies, private weather companies and academic institutions, or continue to postgraduate study in atmospheric science, climate science, oceanography or related fields.

Specific roles alumni take on include weather forecaster, atmospheric modeller, climate analyst, air-quality scientist, research technician, and environmental data scientist. Practical skills developed in the degree—numerical modelling, remote sensing interpretation, data analysis and programming—are in demand across both public and private employers.

Why study at Florida State University

Florida State University offers atmospheric science education within a department and research environment that support both teaching and applied research. The university benefits from established research centres focused on atmospheric and oceanic prediction and climate studies, providing faculty-led research opportunities and access to computational resources. Proximity to regional forecasting offices and opportunities for internships help students gain operational experience.

Students at Florida State can take advantage of laboratory facilities, instrumentation for field observations, and student chapters of professional societies that foster networking and career development. The programme's combination of foundational science, hands-on laboratory and field experience, and emphasis on modelling and data skills prepares graduates to enter a variety of meteorological and environmental careers or to pursue further study.

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