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- GEOL1001 Earth Materials
- GEOL1002 From Petrology to Petrogenesis
- GEOL1003 History of Life
- GEOL1004 Dynamic Earth
- GEOL1006 Foundations of Physical Geoscience
- GEOL1012 Surface Processes
- GEOL1013 The Earth
- GEOL1014 Geochemistry
- GEOL1015 Geology of Planetary Bodies
- GEOL2004 Chemistry of Earth Environments
- GEOL2008 Vertebrate Palaeontology and Evolution
- GEOL2009 Surface Processes & Structures
- GEOL2010 Igneous Petrology
- GEOL2012 Metamorphism
- GEOL2014 Global Geophysics
- GEOL2016 Atmosphere, Weather & Climate
- GEOL2026 Maps, Images and Structures
- GEOL2027 Structural Geology and Tectonics
- GEOL3003 Geodynamics & Global Tectonics
- GEOL3011 Geosciences Report
- GEOL3036 Biodiversity and Macroevolutionary Patterns
- GEOL3038 Experimental Methods in Water-Rock Interaction
- GEOL3039 Physics of Oceans, Ice Sheets and Climate
- GEOL3040 Crustal Dynamics, Mountain Building & Basin Evolution
- GEOL3042 Geological/Environmental Mapping Project
- GEOLM002 Earthquake Seismology & Earthquake Hazards
- GEOLM003 Earth & Planetary System Science
- GEOLM006 Earth & Planetary Materials
- GEOLM008 Physical Volcanology & Volcanic Hazard
- GEOLM010 Tectonic Geomorphology
- GEOLM012 Palaeoclimatology
- GEOLM018 Palaeoceanography
- GEOLM021 Melting and Volcanism
- GEOLM022 Hydrogeology and Groundwater Resources
- GEOLM037 Deep Earth & Planetary Modelling
- GEOLM905 Independent MSci Project
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Planetary Geology: An Introduction
A second edition of Planetary Geology: An Introduction book will be published by Dunedin Academic Press at the end of June 2013 More...
GEOL3039 Physics of Oceans, Ice Sheets and Climate
AIMS
The module aims to describe and explain features of the ocean circulation that are important to the Earth’s climate system using fundamental physical principles of mechanics and energy conservation. It will also describe techniques in satellite geodesy applicable to ocean circulation and mass fluxes and to the determination of changes in the Earth’s ice masses.
OUTCOMES
- Knowledge and understanding of physical principles governing the energy balance and circulation of the oceans, ice mass balance and dynamics, and the interaction between the cryosphere and global climate.
- Understanding of analytical, and observational, techniques that can be used to obtain that knowledge.
CONTENT
- Mean oceanic circulation: Coriolis acceleration, geostrophic flow, barotropic and baroclinic motion, dynamic topography, Ekman motion, mid-latitude gyres, Gulf Stream, equatorial circulation;
- Geodesy and the shape of the Earth;
- Surface topography of the ocean determined from satellites;
- Ocean Dynamic topography;
- Unsteady motion (waves): inertial motion, barotropic and baroclinic modes;
- Water mass and the thermohaline circulation;
- Planetary equilibrium temperature and the greenhouse effect;
- Carbon dioxide/temperatures from ice core records;
- Milankovich fluctuations in temperature; Ocean-ice interaction;
- Observed mass balance and dynamics of ice sheets, ice shelves and sea ice.
| Title |
Physics of Oceans, Ice Sheets and Climate |
| UG Code |
GEOL3039 |
| Coordinator | Prof Seymour Laxon |
| Other Contributors | |
| Term |
1 & 2 |
| Credit | 1.0 CU |
| Written Exam |
70% (2.5 hours unseen) |
| Coursework |
20%: 4 problem sheets |
|
Mid Second Term, Open Book Test After Reading Week |
10% |
| Pre-Requisites |
PHAS1245 Mathematical Methods I and PHAS1246 Mathematical Methods II or equivalent modules strongly recommended. |
| Maths & Stats Content and Requirement |
PHAS1245 Mathematical Methods I or equivalent is a pre-requisite. It is strongly recommended that students also take PHAS1246 Mathematical Methods II. |
| Total Number of Hours of Student Work | 375 hours |
| Hours of Lectures/Seminars | 20 hours |
| Hours of Practicals/Problem Classes | 20 hours |
| Hours of Tutorials | 0 |
| Days of Fieldwork | 0 |
| Other | None |
|
Annual Monitoring |
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| Categorizing Student Performance Levels |
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|
Moodle page |
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