Advanced Engineering (Structural Engineering Design)

Study mode:Online Study type:Full-time Languages: English
Local:$ 13.7 k / Year(s) Foreign:$ 14.5 k / Year(s)  
501–600 place StudyQA ranking:11992 Duration:1 year

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The Master of Engineering in Structural Engineering Design at the University of Southern Queensland is a comprehensive postgraduate program tailored for engineering professionals seeking to deepen their expertise in structural design and analysis. This advanced degree is designed to equip students with the theoretical knowledge and practical skills necessary to address complex engineering challenges within the built environment. Throughout the course, students will explore the principles of structural mechanics, materials science, and load analysis, enabling them to develop innovative and sustainable structural solutions. The curriculum emphasizes modern design techniques, computational modeling, and the application of current industry standards and codes, ensuring graduates are well-prepared for leadership roles in structural engineering projects. The program also offers opportunities for research and collaboration with industry partners, fostering a practical understanding of real-world engineering issues and solutions. With a focus on innovation and sustainability, students will learn to assess the performance, safety, and economic viability of various structural systems. The Master of Engineering in Structural Engineering Design is ideal for those seeking career advancement or specialized expertise in structural engineering design, offering a flexible study mode that accommodates working professionals. Graduates will be equipped to contribute effectively to multidisciplinary engineering teams, undertake structural assessments, or pursue careers in consultancy, construction, or governmental agencies overseeing infrastructure development. Overall, the program emphasizes critical thinking, problem-solving skills, and ethical considerations in engineering practice, aligning with industry demands for highly skilled and responsible structural engineers.

Program structure

Courses to be studiedUnits

Core courses2

Major courses4

Project course2

Total8

Course codeCourse name

Core Courses: 

ENG8103Management of Technological Risk

ENG8104Asset Management in an Engineering Environment

Major courses:

CIV8801Code-Based Structural Design

CIV8802Advanced Prestressed Concrete1

CIV8803Mechanics and Technology of Fibre Composites

CIV8804Advanced Design Practice using Finite Element Analysis

Capstone project:

ENG8308Industry Project2

 Footnotes

1 Offered odd years only . 

2 Will be offered for the first time in 2015.

 

Entry requirements

  • 4-year Bachelor of Engineering (Honours) degree or equivalent with a relevant major

English Language Requirements

Domestic and international students from a non-English speaking background are required to satisfy English Language requirements. This program requires a minimum of IELTS 6.5 or equivalent.

If you do not meet the English language requirements you may apply to study a University-approved English language program.

International entry requirements

English Language Requirements

Domestic and international students from a non-English speaking background are required to satisfy English Language requirements. This program requires a minimum of IELTS 6.5 or equivalent.

If you do not meet the English language requirements you may apply to study a University-approved English language program.

Pre-requisites

  • 4-year Bachelor of Engineering degree or equivalent with a relevant major

Want to improve your English level for admission?

Prepare for the program requirements with English Online by the British Council.

  • ✔️ Flexible study schedule
  • ✔️ Experienced teachers
  • ✔️ Certificate upon completion

📘 Recommended for students with an IELTS level of 6.0 or below.

Enroll in the course

You may be able to apply for scholarships to help with your study costs.You may be able to apply for scholarships to help with your study costs.

The Advanced Engineering (Structural Engineering Design) program at the University of Southern Queensland is a rigorous postgraduate qualification aimed at preparing engineering professionals for specialized roles in structural engineering and design. This program is designed to enhance technical expertise and analytical skills necessary for developing innovative and sustainable structural solutions across various sectors, including construction, infrastructure, and industrial facilities. Students enrolled in this program will engage with advanced coursework that covers a broad range of topics such as structural analysis, design principles, material properties, and construction methods. The curriculum emphasizes practical application through case studies, project work, and simulations, enabling students to apply theoretical knowledge to real-world problems effectively.

The program also aims to develop competencies in current industry standards, regulations, and best practices, ensuring graduates are well-equipped to meet the demands of modern engineering challenges. The program often incorporates modules on project management, safety standards, and environmental considerations, reflecting the interdisciplinary nature of contemporary structural engineering. Students will have opportunities to collaborate with industry partners, participate in research activities, and gain insights through internships or industry placements, supporting their transition from academic to professional environments.

The duration of the program typically spans one to two years, depending on whether students undertake full-time or part-time study. The program’s flexible delivery mode includes online learning components to accommodate working professionals. Graduates from this program are prepared for careers in structural design, consulting engineering, construction management, or further research and doctoral studies. Overall, the Advanced Engineering (Structural Engineering Design) program at USQ is tailored to empower engineers with advanced skills and knowledge to contribute effectively to the evolving landscape of structural engineering, emphasizing innovation, safety, and sustainability in design.

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