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Karlstad University
Matter
Instruction is in the form of lectures, calculation exercises, and mandatory seminars and laboratory sessions. A further mandatory activity is carried out in conjunction with industry or public agency, for example, a study visit, an authentic seminar project or a guest lecture. Course content: - the background to q…
- Higher education
- Information unavailable
- 31 August 2026
- Karlstad
- Information unavailable
- 50 %
Overview
Instruction is in the form of lectures, calculation exercises, and mandatory seminars and laboratory sessions. A further mandatory activity is carried out in conjunction with industry or public agency, for example, a study visit, an authentic seminar project or a guest lecture. Course content: - the background to quantum mechanics: photons, matter waves and wave-particle-duality, - basic quantum mechanics: wave function, Heisenberg's uncertainty principle, the Schrödinger equation and its solution for different potentials, - application of the Schrödinger equation to the hydrogen atom and particle in box (one dimension) and characterisation of solutions and quantum equations, - quantum mechanical tunneling through potential barriers, - structure of atomic nucleus, - different atom models: for example, Bohr's atom model, Dalton's atom model, Rutherford's atom model, - the connection between materials electronic structure and properties (e.g. chemical reactivity and interaction with electromagnetic radiation, - the structure of the periodic system, classification of elements and their properties and occurrence of the most important element groups, - chemical bonding: ionic bonding and covalent bonding, connection between electronic structure and molecular geometry as described with the Lewis-, VSEPR- and valence-bonding models, molecular orbital theory: the LCAO method, - the dipole moment in molecules, - intermolecular forces: hydrogen bond, van der Waal's forces and properties in the solid state, gases and fluids, - mass balance and stoichiometry in simple chemical reactions, - laboratory safety, - apply theories treated to practical lab experiments.
Admission scores
Entry requirements
45 ECTS credits for the Msc programme in engineering including 15 ECTS credits completed.
The text is reproduced from the Susa source. Antagningsdata does not map GY11 and GY25 or assess personal eligibility.
Source, measure and data quality
- Source
- Skolverket Susa-navet
- Period
- 2026-08-31
- Measure
- Entry-requirement text reproduced from the published Susa data; no personal eligibility assessment is made.
- Population
- Education offering e.uoh.kau.cbgam1.55205.20262
- Last checked
- 2026-09-23T10:37:50.445791+00:00
- Limitation
- Antagningsdata does not map GY11 and GY25. General and specific conditions are not separated without structured source data.
Programme content
Study structure
Application and important dates
- Programme or course starts
- Programme or course ends
Salary and salary distribution
Common occupations after graduation
Students
Geographical background
Previous upper-secondary schools and programmes
Completion and outcomes
About the provider
Sources and data quality
Education facts for the selected offering come from Skolverket Susa-navet.
Retrieved . Published . Times are shown in Swedish local time.
Source identity and publication version
- Publication version
- 8e217193-f5fa-4778-b085-a4521fd03e8d
- Education identity in the source
- i.uoh.kau.cbgam1.55205.20262
- Offering identity in the source
- e.uoh.kau.cbgam1.55205.20262
- Education-form source code
- HS
- Education code in the source
- CBGAM1
- Change time according to the source
- 2026-03-03T14:11:18
The provider, education and education offering are separate identities. Application information should be checked on the official website. Supplementary statistics have not been obtained from this source.