Students build a solid foundation in mathematics, physics, and computational methods, followed by specialized coursework in solid earth geophysics, space science, planetary science, signal processing, and data analysis. The discipline emphasizes both theoretical knowledge and field or laboratory practice, including geological field work, geophysical observation techniques, and scientific computing, to develop strong analytical and problem-solving abilities.
The objectives of the program are to cultivate graduates with systematic theoretical knowledge, experimental skills, and innovation capabilities, capable of applying geophysical principles to research, environmental monitoring, natural hazard assessment, resource exploration, and related scientific and engineering fields. Graduates are prepared for careers in geoscience research, environmental and resource industries, government agencies, and technology sectors, or to pursue advanced study and research in geophysics, Earth sciences, or space science.
NOTE: The university may have additional program-specific eligibility requirements. It is recommended to verify these on the official university website.