Cursus |
193901110 |
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Aanvangsblok |
2A |
Studiepunten (ECTS) |
5 |
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Opmerkingen |
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Cursustype |
Cursus |
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Aanmeldingsprocedure |
Zelf aanmelden via OSIRIS Student |
Voertaal |
Engels |
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Inschrijven
via OSIRIS |
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Is onderdeel van |
Bachelor Advanced Technology |
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Contactpersoon |
prof. dr. ir. H.J.M. ter Brake |
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E-mail |
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Docenten |
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Docent |
prof. dr. ir. H.J.M. ter Brake |
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Docent |
prof. dr. J.G.E. Gardeniers |
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Cursusdoelen |
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Verplicht materiaal |
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Boek |
Inhoud |
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Introduction to Thermal Physics,
Daniel V. Schroeder (0201380277) |
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Participating
program(s) |
Exam Objective |
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Boek |
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The Science and Design of
Engineering Materials, 2nd edition, J.P. Schaffer e.a., WCB / McGraw-Hill, |
Advanced
Technology (BSc-AT) |
Propedeuse |
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Purpose |
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Aanbevolen
materiaal |
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Course
information |
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Werkvormen
(aanwezigheidsplicht) |
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In our daily live we are used to
working with systems containing extremely large numbers of particles. For
instance, for boiling water in a small kettle you need to heat some 10^25
water molecules. It is simply impossible to consider each of the particles
separately in order to describe the behavior of such a multi-particle system.
Therefore, instead of the microscopic approach we follow the macroscopic one
where properties of the whole system are considered, such as thermal
conductivity, heat capacity etc. Usually, these properties as well as the
overall behavior do not at all depend on the microscopic details of the
system. A gas, for instance, will always expand to fill a larger volume,
whereas the reverse process will not occur spontaneously. This kind of
behavior and the underlying principles are considered in thermodynamics. The
developed basic knowledge will be applied to systems like engines, chemical
reactions and phase transitions. |
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Hoorcollege Werkcollege |
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Toetsen |
Content |
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Tentamen Weging 1, Minimum cijfer 5.5 |
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Prerequisite |
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