Seismology
About the course
This course is available as a single course.
This course will introduce the students to earthquakes and the propagation of elastic waves through the Earth and other planets. The aim is to provide training in mathematical modelling and practical data analysis pertaining to seismic wave propagation, seismology and Earth structure, earthquakes, and the relevant signal processing methods. The theory will be illustrated by several illuminating real-world applications ranging from tectonic earthquake analysis, to ambient seismic noise seismology, cryo-seismology and microseismic monitoring. Modern e-learning tools (e.g., Jupyter Notebooks and ObsPy) will be used extensively for exploring seismological data, and to provide practical training in analyzing seismological data that will be made available to the students.
The course will be conducted by a seismology expert from NORSAR in collaboration with scientists from the Department of Geosciences at UiT The Arctic University of Norway.
Admission requirements
Bachelor's degree in geology, or a similar degree following a programme of study of at least three years, or similar education approved in accordance with the Norwegian Universities Act section 3-4. In addition, specialization in geology worth the equivalent of at least 80 ECTS credits is required. Normally, an average mark of C or better is required at the bachelor's degree level or other program for basis of admission.
Application code: 9371.
Objectives of the course
Learning outcomes
On completion of the course the student should have the following learning outcomes defined in terms of knowledge, skills and general competence:
Knowledge
The student has
- a comprehensive understanding of the concepts and tools for modelling of seismic wave propagation, in particular the seismic wave equation, plane waves, strain and stress, reflection and transmission coefficients, surface waves, anisotropy and attenuation, and elements of ray theory • a comprehensive understanding of seismology and Earth structure, including reflection and refraction seismology, body waves, and inverse problems
- understanding of earthquakes, including focal mechanisms, waveform modelling, moment tensors, source parameters, and global earthquake statistics
- understanding of signal processing and data analysis methods relevant for the analysis and interpretation of seismological data
Skills
The student can
- apply the principles of seismology to get access to, visualize, analyze, and assess earthquakes and other seismological events
- understand and interpret seismograms
- connect observational data to source, propagation medium and receiver array configuration
- utilize analysis software to process and extract relevant geophysical information from data
General competences
The student can
- carry out the most important elements of research projects related to seismology: read and understand relevant literature, acquire and analyze data, and communicate results to fellow students/scientists and to the public.
- work with seismological problems in the public and private sector.
- solve problems related to seismology analytically and prompt in written English, and present research results orally.
- work independently and in a team.
Prerequisites
Anbefalte forkunnskaper
GEO-2006 Introduction to applied geophysics
Credit reduction
If you pass the examination in this course, you will get an reduction in credits (as stated below), if you previously have passed the following courses:
- GEO-8137 Seismology 10 ects
Teaching methods
The course will be given as an intensive course over two weeks with 30 hours of lectures and 20 hours of exercises/computer lab.
Compulsory active participation in the course.
Language of instruction and examination
EnglishSchedule
The schedules are normally finalized and published well in advance of the start of the semester, often a few weeks beforehand. This gives students the opportunity to organize their studies and prepare for upcoming activities.
It is recommended to check the schedule regularly, as changes may occur.
Information to incoming exchange students
This course is open to incoming exchange students.
Study Level: Master's
Prerequisites:
To take this course, you must first meet the requirements listed in the “Admission requirements” section above.
Important note for GEO courses:
If you come from a university that has a direct exchange agreement with the Department of Geosciences (GEO) at UiT, you may be allowed to take master’s-level GEO courses (course codes 3000–4000) even if you have not yet completed a bachelor’s degree or earned 180 ECTS credits.
For details on how to apply for exchange, course selection guidelines, or to contact the Incoming Admissions Team, please visit: Admissions for Student Exchange.
Examination
| Assignment | Hand in: 30.10.2026 14:00 Duration: 1 Semesters Weighting: 1/2 |
Grade: A–E, fail F |
| School exam | Date: 25.11.2026 09:00 Duration: 4 Hours Weighting: 1/2 |
Grade: A–E, fail F |
Everything you need to know about before, during, and after the exam; registration, absence, appeals, and diplomas: UiT Exams homepage