Chisholm's Bachelor of Engineering Technology, specialising in mechanical and manufacturing, will prepare one for a lifetime career as an engineering technologist, a career in high demand both locally and around the whole world. As a Chisholm student, you're going to be exposed to a wide assortment of technical issues, skill sets and industry trends, ensuring you're stand out from the audience if you are trying to find employment. Through this course, you are going to develop advanced skills in engineering practice, project direction, problem solving, programming concepts, engineering system design, engineering scientific fundamentals, instrumentation principles, fabricating systems and workplace training. After conclusion of this course, students can have a graduate standing like fabricating, products or systems development engineer.Alternatively, further studies are available for example Masters in Manufacturing (La Trobe University) or Masters in Engineering (RMIT). Chisholm's Bachelor of Engineering Technology is endorsed by the Institute of Engineers Australia. Interstate and local applicants are welcome to use but must satisfy up with the entrance requirements.
The Engineering Technology program at Chisholm Institute is designed to provide students with a comprehensive foundation in the principles and practices of engineering technology across various disciplines. This program aims to equip students with practical skills and theoretical knowledge essential for pursuing careers in diverse engineering fields such as mechanical, electrical, civil, and industrial engineering. Throughout the course, students engage in hands-on learning through workshops, lab sessions, and industry projects that simulate real-world engineering challenges. The curriculum covers core topics including engineering design, drafting, materials science, electrical circuits, fluid mechanics, and thermodynamics, ensuring a well-rounded understanding of key technical concepts.
Students also develop supplementary skills in project management, problem-solving, teamwork, and communication, which are vital for successful professional practice. The program emphasizes proficiency in using advanced engineering software, measurement and testing techniques, and safety standards relevant to the engineering industry. Through close collaboration with industry partners and practical internships, students gain valuable insights into current engineering practices and future industry trends. The course is suitable for individuals seeking to build a solid technical foundation, advance their existing skills, or transition into engineering roles. Upon completion, graduates are prepared to undertake further studies at higher levels or to enter the workforce as capable engineering technicians, supporting design, manufacturing, maintenance, and operational functions within engineering organizations. The Chisholm Engineering Technology program commits to fostering innovation, technical excellence, and lifelong learning to meet the evolving demands of the engineering sector.
Applicants without the necessary qualifications might be contemplated, where they are able to demonstrate equivalent industry experience that shows the appropriate amount of knowledge and devotion to the overarching principles of the course., Successful conclusion of a relevant Diploma/Advanced Diploma, Powerful completion of the Victorian Certificate of Education (VCE) or its equivalent with a minimum score of 25 at Mathematics, Physics and English.
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- ✔️ Flexible study schedule
- ✔️ Experienced teachers
- ✔️ Certificate upon completion
📘 Recommended for students with an IELTS level of 6.0 or below.
The Engineering Technology program at Chisholm Institute offers a range of financing options to support students throughout their studies. Prospective students can explore government subsidized funding options such as Victorian TAFE fee concessions and subsidies, which aim to reduce the financial burden for eligible learners. These subsidies typically cover a significant portion of tuition fees, making technical education more accessible for Australian residents meeting specific criteria, including age, residency status, and prior education levels. For students who do not qualify for government funding, full fee options are available, allowing learners to pay the tuition costs upfront or via payment plans. Chisholm Institute also provides opportunities for Commonwealth supported places, where students can access reduced fees through government assistance programs. Additionally, students can consider applying for VET Student Loans if eligible, which enable the deferral of tuition fees with the obligation to repay through the tax system once earning above a certain threshold. Scholarships and bursaries may also be available depending on the student's circumstances, academic performance, or specific fields of interest within engineering technology. Private loans and financial assistance from external providers are generally not endorsed by the Institute but may be considered by students seeking additional funding sources. The institute often facilitates early payment discounts and flexible payment arrangements to help manage financial commitments more effectively. Students are encouraged to contact Chisholm Institute's financial aid office or visit their official website for the most up-to-date information about eligibility criteria, application procedures, and deadlines related to financing options. By providing comprehensive financial support pathways, Chisholm aims to ensure that aspiring engineering technicians and technologists can pursue their career goals without undue financial hardship, fostering a diverse and skilled workforce in the engineering sector.
The Engineering Technology program at Chisholm Institute provides students with a comprehensive education in the fundamentals of engineering principles, technical skills, and hands-on practical experience. Designed to meet the demands of the modern engineering industry, this program prepares graduates for careers in various engineering disciplines, including mechanical, electrical, and civil engineering technology. The curriculum covers a wide range of subjects such as engineering drawing, computer-aided design (CAD), materials science, manufacturing processes, automation, and electronics. Students engage in both theoretical coursework and practical training through workshops, labs, and industry placements, ensuring they develop the technical proficiency and problem-solving abilities required in professional settings.
The program is typically delivered over two years of full-time study, with options for part-time study depending on individual circumstances. It emphasizes industry-relevant skills, fostering innovation, teamwork, and communication skills essential for success in the engineering sector. Throughout the course, students have access to state-of-the-art laboratories and equipment that simulate real-world engineering environments, allowing for experiential learning that bridges the gap between theory and practice. In addition, the program offers pathways for further education, such as articulation into bachelor’s degree programs, enabling graduates to advance their careers and deepen their expertise.
Chisholm Institute's strong industry partnerships provide students with opportunities for placement and internships, giving them valuable exposure to working professionals and current industry practices. The program also incorporates sustainability principles and modern engineering trends, preparing graduates to contribute responsibly to society and adapt to evolving technological landscapes. Upon successful completion, students receive an Australian Diploma of Engineering Technology, qualifying them for entry-level technical roles in engineering firms, manufacturing industries, construction companies, and infrastructure projects. Many graduates pursue careers as engineering technologists, draftspeople, or project assistants, supporting various engineering projects with technical expertise and innovative solutions. The program’s focus on practical skills complemented by theoretical knowledge ensures graduates are well-equipped to meet the challenges of today’s dynamic engineering environment.