 | |  |  | Cursus |  | NWI-MOL012 | Categorie |  | PB (Propedeuse) | Voertaal |  | Engels | Aangeboden door |  | Radboud Universiteit; Faculteit der Natuurwetenschappen, Wiskunde en Informatica; Moleculaire Wetenschappen; | Docenten |  | | | Collegejaar | | 2017 | | Periode | | KW2 | (13-11-2017 t/m 04-02-2018) |
| Aanvangsblok | | KW2 |  |
| Onderwijsvorm | | voltijd |  |
| Opmerking | | - | Inschrijven via OSIRIS | | Ja | Inschrijven voor bijvakkers | | Ja | Voorinschrijving | | Nee | Wachtlijst | | Nee | Plaatsingsprocedure | | - |
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At the end of the course the student can:
- solve collision problems
- understand the relation between translational and angular quantities of motion
- calculate motion of rigid bodies about a fixed axis
- apply force and torque analysis and solve simple static problems
- understand Kepler's laws and solve universal gravitational problems
- apply the principles of fluid mechanics
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Serway/Jewett chapters 9-14:
- Linear momentum and collisions: center of mass, system of particles
- Rotation of rigid objects; angular momentum, torque, moment of inertia, rolling motion, conservation laws, gyroscopes
- Static equilibrium; force and torque analysis, center of gravity, elasticity
- Universal gravitation; Newton’s laws, particle in a field, Kepler’s laws, planetary and satellite motion
- Fluid mechanics; pressure and depth, buoyant forces, fluid dynamics, continuity equation, Bernoulli’s equation
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Please review Serway/Jewett chapters 1-8 and 9.1-9.3, which are required knowledge for this course. |
Serway/Jewett chapters 9-14: • Linear momentum and collisions: center of mass, system of particles • Rotation of rigid objects; angular momentum, torque, moment of inertia, rolling motion, conservation laws, gyroscopes • Static equilibrium; force and torque analysis, center of gravity, elasticity • Universal gravitation; Newton’s laws, particle in a field, Kepler’s laws, planetary and satellite motion • Fluid mechanics; pressure and depth, buoyant forces, fluid dynamics, continuity equation, Bernoulli’s equation |
This is a course in the theme 'Physics and mathematics'. The contents covered by Mechanics 1A (MOL003) or 1B (NP019B/MOL003B) are required knowledge for this course. |
R.A. Serway en J.W. Jewett, Physics for Scientists and Engineers, with Modern Physics, Technology Update, Cengage Learning (BrooksCole), 9th edition, 2014. ISBN: 9781305401969 |
• 16 hours lecture • 16 hours problem session • 52 hours individual study period |
|  |  | Verplicht materiaalBoekR.A. Serway en J.W. Jewett, Physics for Scientists and Engineers, with Modern Physics, Technology Update, Cengage Learning (BrooksCole), 9th edition, 2014. |
ISBN | : |  | 9781305401969 |
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Werkvormen Toetsen TentamenWeging |  | 1 |
Gelegenheden |  | Blok KW2, Blok KW4 |
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