FY3107

Mathematical Approximation Methods in Physics

Autumn

Trondheim

English

Overview

8 candidates

Average grade

C

2.50

0.02

Pass rate

100%

14 points

Grade distribution
Average over time
Pass rate over time

About this course

Content

The course is given every second year, next time autumn 2026. The aim of the course is to give an introduction to, and training of, useful methods of finding approximate solutions to physics problems, in particular situations where regular perturbation expansions cannot be used. Even in cases where a given problem must be treated numerically, approximative solutions may give valuable information of qualitative behaviour for choice and implementation of numerical method. The course covers e.g. local analysis of differential equations, approximate evaluation of integrals, asymptotic expansions, singular perturbation expansions, the boundary layer method, the WKB method, multiple scale expansions.

Learning outcomes

Knowledge

The candidate should have knowledge about the most useful methods for finding approximate analytical solutions of mathematical problems which often occur when modeling physical systems.

Skills

The candidate should be able to

  • identify various classes of mathematical problems
  • simplify or rewrite the problem to a form which enables use of an appropriate method
  • apply the method to find an approximate analytical solution

General competence

The candidate should

  • know about relevant mathematical reference works and software
  • be able to use these to find/extract information efficiently

Teaching methods

Lectures and problem sessions. Some problems will make use of mathematical software. When lectures and lecture material are in English, the exam is usually given in English only. Expected workload in the course is 225 hours.

The course has joint lectures with FY8304.