Durham University
Programme and Module Handbook

Undergraduate Programme and Module Handbook 2015-2016 (archived)

Module GEOG4111: EROSION AND OROGENESIS

Department: Geography

GEOG4111: EROSION AND OROGENESIS

Type Tied Level 4 Credits 20 Availability Available in 2015/16 Module Cap None. Location Durham
Tied to F802

Prerequisites

  • None

Corequisites

  • None

Excluded Combination of Modules

  • GEOG4031 Practical Skills in Sea Level Science; GEOG4051 Glacial Geology and Geomorphology: From Process to Application, GEOG4041 Advanced Catchment Science

Aims

  • To develop an advanced understanding of relationships and feedbacks between erosion, tectonics, and mountain building in active orogens.

Content

  • An advanced assessment of mountains as coupled erosion-tectonic systems and the active tectonics of mountain belts,
  • The detailed patterns of glacial and fluvial erosion processes, an assessment of the timescales and rates over which these operate
  • The major feedbacks between tectonics, climate and erosional processes and link between erosion and biogeochemical cycles
  • How field measurements, remote sensing, laboratory experiments and computer modelling can be applied to develop an advanced understanding of processes and feedbacks in mountain belts

Learning Outcomes

Subject-specific Knowledge:
  • On successful completion of the module students are expected to be able to:
  • Demonstrate advanced levels of knowledge and understanding of the rates, patterns, and major processes of erosion in mountain belts.
  • Understand processes and patterns of tectonic activity
  • Identify and interpret themajor feedbacks between tectonics and the Earth surface system.
  • Demonstrate recognition of current debates and areas of uncertainty in the subject area
Subject-specific Skills:
  • On successful completion of the module, students will be able to:
  • Identify and relate the key physical processes that build mountain ranges
  • Appreciate and analyse the interactions and feedbacks between erosion, tectonics, and climate in shaping mountain ranges
  • Evaluate the use of different analytical techniques for studing mountain range evolution
  • Read and critically assess the scientific literature on erosion, tectonics, and climate
Key Skills:
  • Demonstrate the ability to read, synthesise, and understand a range of current literature
  • Demonstrate skill in summarising and presenting cutting-edge subject material and complex arguments to a mixed audience of staff and students
  • Lead and sustain discussion by focusing on key questions or points
  • Demonstrate the ability to prepare a concise written summary of a complex and multi-faceted topic

Modes of Teaching, Learning and Assessment and how these contribute to the learning outcomes of the module

  • Lectures will aim to provide students with an outline of key concepts in the topic area, to introduce and contextualize the literature that they will explore, and provide relevant examples and case studies
  • Seminars will follow the format of advanced level ‘Reading groups’ and will be used to critique the key scientific literature at an advanced level. They will introduce students to cutting-edge subject-specific knowledge and provide a forum for open discussion of major topics. Students will take an active role in leading discussions. Staff will oversee and guide discussions throughout the module. These will form the basis of the summative assigments
  • Workshops will provide hands-on experience of analysing and interpreting geomorphic data from mountain belts
  • The Conference will examine the students ability to synthesise material from the reading group themes by producing an academic poster. During the conference, students will present their key findings and answer questions from their peers and staff.
  • The student preparation and reading time is devoted to reading key literature set by staff prior to reading groups. Each student will participate in summarizing and leading discussion on papers over the course of the module
  • The short written critical analysis (second summative assessment) will be based on the key topics and the overarching theme of the module, ‘Erosion and Orogenesis’. This will be written in the style of a short academic journal article, and is intentionally limited to 2000 words to encourage students to focus on the key elements and common themes

Teaching Methods and Learning Hours

Activity Number Frequency Duration Total/Hours
Lectures 7 Varies 1.5 hours 10.5
Seminars 10 5 per term 1.5 hours 15
Workshops 2 1 per term 3 hours 6
Conference 1 Term 2 4 hours 4
Self-directed learning 164.5
Total 200

Summative Assessment

Component: Poster presentation Component Weighting: 50%
Element Length / duration Element Weighting Resit Opportunity
Poster presentation at ‘Erosion and Orogenesis’ conference 100%
Component: Coursework Assignment Component Weighting: 50%
Element Length / duration Element Weighting Resit Opportunity
Coursework assignment 2000 words, 2 figures 100%

Formative Assessment:

Verbal and written Formative feedback will be provided during reading group discussion and during workshop practicals.


Attendance at all activities marked with this symbol will be monitored. Students who fail to attend these activities, or to complete the summative or formative assessment specified above, will be subject to the procedures defined in the University's General Regulation V, and may be required to leave the University