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208 weeks
On Campus
Full time or part time · 38 hours per week (work component)
Semester 1
Course Overview
Where You Can Study
Hobart
University of Tasmania, Churchill Ave, Hobart, TAS 7005
Student Information
Tuition Fee
Commonwealth Supported Place indicative annual fee: $8,431 AUD (2027)
Duration
Minimum 4 years, up to a maximum of 9 years.
Intakes
Semester 1
Eligibility
Domestic students:
We encourage you to apply for the courses you most want to study. If you are not eligible to enter your chosen course right now, the University’s admissions team will work with you to find the best pathway option.
Enquire online for more advice on the application process and the available pathways to enrol and study at the University of Tasmania.
Schools Recommendation Program
Australian year 12 students can apply for this course via our Schools Recommendation Program (SRP). Rather than an ATAR, your application is based on a recommendation by your school teachers. This can factor in your year 11 results, an assessment of your capabilities, and other considerations.
Through the SRP, you can receive and accept an offer prior to completing year 12. You will still need to finish your year 12 studies – including any exams – to commence your studies. In addition, this course (all specialisations) requires you to pass specific pre-requisite subjects in Year 12 (or equivalent), see below for details.
If you don’t receive an offer for this course through the Schools Recommendation Program, you will be re-assessed for a higher preference offer once your ATAR is released.
Domestic applicants who recently completed secondary education
Applicants are ranked by ATAR and offers are made based on the number of places available. In 2026, the lowest ATAR to receive an offer into this course was 70.45. The lowest ATAR to receive an offer may change from year to year based on the number of applications we receive.
Applicants who have recently completed senior secondary studies but have not received an ATAR may still be eligible for admission. We will consider your individual subject results on a case-by-case basis when we assess your application.
Domestic applicants with higher education study
To be eligible for an offer, applicants must have:
Partially completed an undergraduate course at Diploma level or higher (or equivalent). Applicants must have completed at least two units of study (equivalent to 25 University of Tasmania credit points). If an applicant has failed any units, the application may be subject to further review before an offer is made; OR
Completed the University of Tasmania University Preparation Program (or an equivalent qualification offered by an Australian university).
Domestic applicants with VET / TAFE study
To be eligible for an offer, applicants must have completed a Certificate IV (or equivalent) in any discipline.
Domestic applicants with work and life experience
Applicants without senior secondary, tertiary or VET / TAFE study can complete a personal competency statement.
Applicants may be eligible for an offer if they have relevant work and/or life experiences which demonstrate a capacity to succeed in this course.
Subject Prerequisites
These prerequisites apply to students from all educational backgrounds.
To be eligible for an offer, you must have completed studies or have experience equivalent to a satisfactory achievement in the following Tasmanian Senior Secondary subject:
Mathematics Methods (MTM415117) or equivalent
Physical Sciences (PSC315118) or equivalent (equivalency includes CHM415115 Chemistry OR PHY415115 Physics)
You can enquire online for information on interstate and international equivalents to the Tasmanian senior secondary subject above. If you need assistance to meet the prerequisite, we offer foundation units that you can complete before you start your course.
SPECIAL CONSIDERATION
We believe university education should be an option for everyone, no matter your background. If your ability to access or participate in education has been affected by circumstances beyond your control, you can apply for special consideration as part of your application. We will consider a range of factors, including economic hardship, a serious medical condition, or disability.
We can only approve applications for special consideration if we are confident that you have the necessary skills and knowledge to succeed in your studies. If your application is not approved, the University admissions team will work with you to find the best alternative pathway to your chosen course. Special consideration is not available for international applicants.
COURSE PARTICIPATION REQUIREMENTS
This course includes compulsory Work Integrated Learning (professional experience placements). In order to participate in placements, all students must:
International students:
English Language Requirements
This degree requires an IELTS (Academic) of 6.0, with no individual band less than 5.5, or a PTE Academic score of 50, with no score lower than 42 or equivalent.
For students who do not meet the English Language Requirement through citizenship or prior studies in English in an approved country, evidence of an approved English language test completed within the last 2 years must be provided.
See the English Language Requirements page for more information.
General Entry Requirements
Admission to undergraduate courses at the University of Tasmania requires the completion of qualifications equivalent to a year 12 education in Australia.
Please review the equivalent undergraduate entry requirements to see the minimum requirement relevant to your country. The ATAR information for this course is located in the “For Domestic Students” section of the entry requirements on this page.
You can also meet the General Entry Requirement for this course with the following qualifications or prior studies:
Completion of an equivalent AQF Certificate IV or above
Complete or incomplete (minimum 25 credit points) of previous tertiary study at Diploma level or higher
Course Specific Requirements
These prerequisites apply to students from all educational backgrounds.
To be eligible for an offer, you must have completed studies or have experience equivalent to a satisfactory achievement in the following Tasmanian Senior Secondary subject:
Mathematics Methods (MTM415117) or equivalent
Physical Sciences (PSC315118) or equivalent (equivalency includes CHM415115 Chemistry OR PHY415115 Physics)
You can enquire online for information on interstate and international equivalents to the Tasmanian senior secondary subject above. If you need assistance to meet the prerequisite, we offer foundation units that you can complete before you start your course..
COURSE PARTICIPATION REQUIREMENTS
This course includes compulsory Work Integrated Learning (professional experience placements). In order to participate in placements, all students must:
Career & Study Pathways
More than 15,000 jobs are expected to be created in Australia as part of the continuous Naval Shipbuilding Program over the coming decades. Our graduates pursue successful careers in one of two specialist streams of Maritime Engineering
Design the most complex machines on Earth, from luxury yachts and submarines to the future of autonomous shipping and Australia’s next-generation naval fleet.
Quality & Recognition
Academic Regulator
TEQSA
Professional Body
Engineers Australia (EA)
Accreditation Status
AccreditedSkills Assessor
Engineers Australia
Course Content
Engineering Circuits
This unit is an introduction to a range of concepts that are fundamental to understanding electrical theory. You will develop an understanding of electrical circuits and circuit analysis through workshops, tutorials, and laboratory work. The unit provides you with the…
Engineering Materials
This unit introduces students to the use of materials in an engineering context. Students will learn the properties used to classify materials from an engineering perspective, and how these are determined. Students will apply this knowledge to characterise materials using…
Engineering Dynamics
In this unit you will develop knowledge and skills for solving problems in engineering dynamics based on fundamental theory developed using Newtonian Mechanics with an introductory focus on particle kinematics and kinetics. This leads to the development of problem solving…
Engineering Statics
This unit aims to develop student competency in analysing static equilibrium problems through the systematic application of rigid body mechanics principles. Students will examine objects at rest or in uniform motion, employing structured analytical approaches to solve engineering problems. Upon…
Engineering Problem Solving and Data Analysis
The unit is primarily designed for students to develop basic to intermediate computer-based skills to solve engineering problems using mathematical and programming techniques. The emphasis is on developing solutions and algorithms by building well structured and efficient computer programs and…
Engineering Design and Communication
This unit aims to introduce students to the professional practice of engineering (including ongoing learning, ethics and safety) and develops skills in technical communication, engineering drawings, engineering design process, and project management techniques. Students will apply this knowledge to work…
Mathematics 1A
The applicability of calculus and linear algebra is so broad that fluency in it is essential for a successful career in a variety of areas including science and engineering. This unit is devoted to the conceptual and logical development of…
Mathematics 1B
This unit is a continuation of KMA152, with emphasis on the application of single-variable calculus and linear algebra to problems in mathematics, the physical and biological sciences, economics, and engineering. Topics include complex numbers, linear equations and matrices, numerical integration…
Mechanics of Solids
This is the foundation unit in the study of structures. By applying the knowledge gained in Engineering Statics, the students are introduced to fundamental theories and techniques required to analyse the state of stress and strain in structural members subjected…
Fluid Mechanics
The design and analysis of engineering fluid systems and marine vehicles requires knowledge of the principles and behaviour of moving and stationary fluids. This unit provides students with knowledge and understanding of fluid flow phenomena via flow visualization, theory and…
Thermal Engineering
Energy is one of the 21st century’s biggest engineering issues, and thermodynamics (the science of energy) will play a key role in understanding the energy needs. JEE223 Thermal Engineering is a foundation unit designed to introduce the laws and concepts…
Hydrostatics
This unit provides students with knowledge of the fundamental concepts of statical stability and trim of intact and damaged floating structures and the associated practical implications and applications within a regulated environment. This is a unit pivotal to an adequate…
Introduction to Maritime Science, Engineering and Technology
This unit introduces the ocean environment and the role of maritime engineers in the design of maritime infrastructure. The unit covers essential elementary knowledge of marine sciences, types of marine crafts and maritime structures, marine systems, and ocean renewable energy…
Maritime Dynamics and Waves
This unit aims to introduce students to the fundamental knowledge and tools required for the analysis of oscillating systems within the maritime engineering field. Students will be required to perform calculations enabling them to model systems such as ocean waves…
Maritime Design and Production
Maritime Design and Production aims to develop students’ knowledge in the design and production of maritime infrastructure. Students will explore all stages of the project lifecycle from response to tender, design conception, manufacturing and delivery and finally decommissioning. Students will…
Maritime Systems
Maritime Systems aims to develop students’ understanding of the key systems on board maritime platforms. Students will learn to explain, predict performance and select components for integrated systems including powering systems, hydraulic systems, instrumentation and control systems, and emerging power…
Structural Analysis
This is an advanced unit that introduces students to the linearised elastic analysis techniques required for the design of structural systems used in maritime engineering projects. Building upon the knowledge gained in previous structure-themed units, students are introduced to new…
Finite Element Analysis
Finite Element Analysis (JEE350) is an advanced unit that introduces the student to the theory and application of the Finite Element Method in engineering analysis and design. In addition to learning the theoretical bases of the finite element method the…
Engineering at Sea
This unit facilitates translation of theory learned across a range of prior and concurrent subjects into practical application via hands-on projects conducted in the field. Additionally, students are engaged in marine operations which expose relevant issues unique to the maritime…
Research Project (Part:1/2)
Students develop, implement and carry out a research project under the supervision of at least one staff member from the National Centre for Maritime Engineering and Hydrodynamics or UTAS. The progress and outcomes of the research are assessed in the…
Research Project (Part:2/2)
Students develop, implement and carry out a research project under the supervision of at least one staff member from the National Centre for Maritime Engineering and Hydrodynamics or UTAS. The progress and outcomes of the research are assessed in the…
Design Project (Part:1/2)
This is the capstone design unit for all three BMarEng degrees streams (NA, OE, MOE). This unit consolidates the knowledge and capabilities developed through previous years of study. Maritime engineering design involves developing complex solutions through the combined inputs of…
Design Project (Part:2/2)
This is the capstone design unit for all three BE degrees streams (NA, OE, MOE). This unit consolidates the knowledge and capabilities developed through previous years of study. Maritime engineering design involves developing complex solutions through the combined inputs of…
Applied Computational Fluid Dynamics
The design and analysis of engineering fluid systems and marine vehicles require the prediction of the fluid behaviour and the interaction between the fluid and the system. This requires a good knowledge of thermo-fluid dynamic principles and the behaviour under…
Engineering Professional Practice
This unit provides students with practical engineering experience in a professional workplace and improves awareness of working within a professional engineering environment. This ensures the students perceptions of engineering during academic studies develop alongside the realities of practice. This unit…
Honours
Administrative unit to be used for recording Honours grades and marks…
Seakeeping and Manoeuvring
The purpose of the unit is to provide knowledge on ship seakeeping and ship manoeuvring. The details behind theoretical and experimental prediction methods are described and students use this information to predict and assess ship seakeeping and manoeuvring performance. Students…
Resistance and Propulsion
To provide an understanding and working knowledge of resistance and propulsion of ships. Experimental and theoretical methods are covered with an emphasis on application to design. Students are shown the theory behind these methods and are required to demonstrate usage…
Applied Ship Design
This unit exposes students to practical design issues and processes and facilitates development of conceptual, analytical and project-planning skills required for a preliminary level of ship design with an emphasis on the application of skills developed in previous units directly…
Applied Hydrodynamics
This unit covers the key elements and essential concepts of environmental forcings on offshore structures and vessels. Additionally, the unit helps students in developing and applying appropriate numerical and analysis methods relevant to engineering problems of structures at sea. The…
Advanced Ship Structures
Advanced Ship Structures is an advanced and specialised unit aimed at furthering students’ knowledge and understanding of ship structures. By applying the knowledge gained in previous units such as Mechanics of Solids and Analysis of Machines & Structures and combining…
Underwater Vehicle Technology
Underwater Vehicle Technology is an advanced and specialist unit aimed at developing the students’ knowledge and understanding of naval architecture theories, concepts and principles required for the design torpedo-shaped underwater vehicles. This particular shape is the classic hull form used…
Applied Offshore Structural Engineering
This advanced unit introduces students to industry-standard methods, codes, and practices for the loading, analysis, design, and construction of fixed steel and concrete offshore structures, as well as subsea systems and pipelines. The unit also covers key geotechnical engineering topics…
Design of Floating Offshore Structures
This is an advanced ocean engineering unit that introduces students to the complex hydrodynamic and structural challenges associated with floating structure design. Students will apply their knowledge of hydrostatics, environmental loading, and structural response to understand the engineering principles that…
Design for Offshore Energy
This unit focuses on the design of offshore energy infrastructure, exposing students to practical design considerations, issues, and processes. It consolidates and expands on knowledge in mooring system design, fixed and floating offshore structure design, ocean wave mechanics, and resource…
Design of Coastal Engineering Structures
This is an advanced design unit of the Ocean Engineering specialisation that introduces the students to key concepts in coastal engineering. The unit extends and applies the concepts from hydrodynamics and marine structural engineering to the context of coastal-zone hydrodynamics,…
Common Questions
The CRICOS course code for the Bachelor of Maritime Engineering (Specialisation) (Honours) at the University of Tasmania is 102706F.
The course has a duration of 208 weeks as listed in the CRICOS course details for the University of Tasmania.
The estimated total course cost for the Bachelor of Maritime Engineering (Specialisation) (Honours) is AU$195,895, which consists entirely of tuition fees with no additional non-tuition fees listed.
Yes, the course includes a work component. Students are expected to undertake 38 hours per week over 12 weeks, totalling 456 work component hours.
The course is delivered at the University of Tasmania's Launceston campus, which is a location owned and operated by the provider. The University of Tasmania holds CRICOS Provider Code 00586B.
Application
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Step 02
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Step 03
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