← All courses at City St George's, University of London

MEng Civil and Infrastructure Engineering

City St George's, University of London

Institution
City St George's, University of London
Level
undergraduate
Subject
Civil and Infrastructure Engineering MEng (Hons)
Duration
4-5 years
UCAS code
H292
Typical offer
A-level BBB, IB 30

Entry requirements

A level: BBB (including Mathematics) IB: 30 points with Higher Level Mathematics at grade 5 OR Standard Level Mathematics at grade 7 AND Higher Level Physics/Biology/Chemistry at grade 5 and minimum of grade 5 in Standard Level English

About this course

MEng in Civil Engineering, combining structures, geotechnics, hydraulics, and sustainability. Core topics include Engineering Design, Data Analysis, Statistics, Artificial Intelligence & Machine Learning, and Programming. The programme includes a final-year individual project and a group Integrated Infrastructure Project. An optional placement year is available, and the degree meets the academic requirements for Chartered Engineer registration.

Modules

  • Professional Placement & Career Development module
  • The Engineering in Society - Social Responsibility
  • Engineering Design 1
  • Introduction to Mechanics of Materials and Manufacturing
  • Electronics 1
  • Introduction to Programming
  • Engineering Science
  • Mathematics 1
  • Introduction to Thermodynamics and Fluid Mechanics
  • The Engineer in Society - Sustainability and Circular Economy
  • Mathematics 2
  • Engineering Design 2 - Infrastructure
  • Fluid Mechanics
  • Geology and Soil Mechanics
  • Structural Mechanics and Materials
  • Sensor Systems, Instrumentation and Surveying
  • Data Analysis for Engineers
  • Individual Project
  • The Engineer in Society - Infrastructure for Net Zero
  • Finite Element Analysis of Structures
  • Geotechnical Engineering
  • Design of Urban Infrastructure
  • Hydrodynamics for Civil and Marine Infrastructure
  • Construction Management
  • Design project (group): Integrated Infrastructure Project
  • The Engineer in Society - Infrastructure Resilience
  • Structural Dynamics and Stability
  • Analysis of Geotechnical Infrastructure
  • Advanced Hydrodynamic Analysis
  • Bridge Engineering
  • Blast and Earthquake Analysis of Structures
  • Construction Methods & Temporary Works