Bachelor of Engineering(Chemical Engineering)(Honours)/Bachelor of Pharmaceutical Sciences

Melbourne City, Bundoora (Melbourne)

 

INTAKE: Jul & Feb

Program Overview

The Bachelor of Engineering (Chemical Engineering) (Honours) / Bachelor of Pharmaceutical Sciences program at RMIT University offers students a unique interdisciplinary education that combines the principles of chemical engineering with the specialized knowledge of pharmaceutical sciences. This program equips graduates with the skills and expertise to work at the intersection of engineering and pharmaceuticals, contributing to the development, production, and regulation of pharmaceutical products.

Curriculum: The curriculum of the Bachelor of Engineering (Chemical Engineering) (Honours) / Bachelor of Pharmaceutical Sciences program is designed to provide students with a solid foundation in both chemical engineering and pharmaceutical sciences. Courses cover a range of topics including chemical process engineering, pharmaceutical chemistry, drug formulation, pharmacology, and pharmaceutical regulation. Students engage in hands-on laboratory work, design projects, and industry placements, gaining practical experience in pharmaceutical manufacturing processes, quality control, and regulatory compliance. Elective courses allow students to tailor their studies to their interests, whether in areas such as drug delivery systems, pharmaceutical analysis, or bioprocess engineering.

Research Focus: RMIT University has a strong research focus in both chemical engineering and pharmaceutical sciences, with faculty members engaged in innovative research projects that address important challenges in drug development, formulation, delivery, and manufacturing. Research areas include drug design and discovery, nanomedicine, pharmaceutical biotechnology, process optimization, and pharmaceutical quality assurance. Students enrolled in the Bachelor of Engineering (Chemical Engineering) (Honours) / Bachelor of Pharmaceutical Sciences program have the opportunity to participate in research projects, collaborate with faculty members on research initiatives, and gain valuable research skills through their own research projects or thesis work.

Industry Engagement: RMIT University maintains close ties with the pharmaceutical industry, ensuring that the Bachelor of Engineering (Chemical Engineering) (Honours) / Bachelor of Pharmaceutical Sciences program remains relevant and responsive to industry needs. Industry engagement activities include guest lectures from industry experts, industry-sponsored projects, and internships or work placements in pharmaceutical companies, contract research organizations, or regulatory agencies. These industry collaborations provide students with valuable insights into pharmaceutical manufacturing processes, quality control practices, and regulatory requirements, as well as networking opportunities with professionals in the pharmaceutical field.

Global Perspective: With its diverse student body and global outlook, RMIT University offers students in the Bachelor of Engineering (Chemical Engineering) (Honours) / Bachelor of Pharmaceutical Sciences program a multicultural learning environment that fosters cross-cultural understanding and global awareness. The program incorporates global perspectives into its curriculum, addressing international regulations, standards, and practices in pharmaceutical manufacturing and distribution. Additionally, RMIT offers opportunities for international exchange programs, collaborative research projects with international partners, and overseas study tours, enabling students to gain international experience, expand their horizons, and develop a global perspective that is essential for success in the global pharmaceutical industry.

Pollster Education

Location

Melbourne City, Bundoora (Melbourne)

Pollster Education

Score

IELTS 6.5

Pollster Education

Tuition Fee

AUD 40248

Undergraduate Entry Requirements

Academic Qualifications: Applicants for undergraduate programs typically require a minimum academic achievement of 65% or above in their previous academic qualifications.

English Language Proficiency:

  • IELTS: Overall band score of 6.0 or 6.5 with a minimum of 5.5 in each component.
  • TOEFL: Overall score of 79 with a minimum of 12 in each section.
  • PTE (Pearson Test of English): Overall score of 58 with a minimum of 50 in each section.

Students must provide:

  • academic marksheets & transcripts
  • letters of recommendation
  • a personal statement - SOP
  • passport
  • other supporting documents as required by the university.

It's important to note that entry requirements can vary by program and may change over time. Additionally, some programs may have additional requirements, such as interviews, portfolios, or work experience.

RMIT University offers a range of scholarships to international students to support their educational journey. These scholarships are designed to recognize academic excellence, leadership potential, and contributions to the community.

Vice-Chancellor's International Scholarship: This prestigious scholarship is awarded to high-achieving international students and covers a percentage of their tuition fees.

Destination Australia Scholarship: This scholarship is for students studying in regional Australia, including some RMIT campuses, and provides financial support to eligible international students.

Science Engineering Health Scholarship: Specifically for students enrolling in science, engineering, or health programs, this scholarship is awarded to those who demonstrate academic merit.

Cultural Visions Scholarship: This scholarship is designed to support students from diverse cultural backgrounds and aims to foster inclusivity and diversity within the university community.

Sports Scholarship: RMIT also offers scholarships to outstanding athletes, supporting them in balancing their sports commitments with their academic pursuits.

Graduates of the Bachelor of Engineering (Chemical Engineering) (Honours) / Bachelor of Pharmaceutical Sciences program at RMIT University possess a unique skill set that opens up diverse career opportunities in the pharmaceutical and chemical industries. 

Pharmaceutical Process Engineer: Graduates can pursue careers as pharmaceutical process engineers, where they apply their knowledge of chemical engineering principles to the design, optimization, and scale-up of pharmaceutical manufacturing processes. Pharmaceutical process engineers work in pharmaceutical companies, ensuring that drug manufacturing processes are efficient, cost-effective, and compliant with regulatory standards. They may be involved in process development, equipment selection, process validation, and continuous improvement initiatives, contributing to the production of high-quality pharmaceutical products.

Drug Formulation Scientist: Another career path for graduates is drug formulation scientist, where they focus on the development and optimization of drug formulations for pharmaceutical products. Drug formulation scientists work in research and development (R&D) departments of pharmaceutical companies, conducting experiments, analyzing data, and designing formulations that optimize drug delivery, stability, and bioavailability. They may specialize in areas such as solid dosage forms, liquid formulations, or novel drug delivery systems, contributing to the development of safe, effective, and patient-friendly pharmaceutical products.

Quality Assurance Specialist: Graduates may work as quality assurance specialists, ensuring that pharmaceutical products meet regulatory requirements and quality standards throughout the manufacturing process. Quality assurance specialists develop and implement quality control systems, perform audits and inspections, and review documentation to ensure compliance with Good Manufacturing Practice (GMP) regulations and industry standards. They play a crucial role in maintaining product quality, safety, and efficacy, protecting public health, and safeguarding the reputation of pharmaceutical companies.

Regulatory Affairs Manager: For graduates interested in regulatory affairs and compliance, careers as regulatory affairs managers may be suitable. Regulatory affairs managers work in pharmaceutical companies or regulatory agencies, ensuring that pharmaceutical products comply with regulatory requirements and obtain marketing approval from regulatory authorities. They prepare and submit regulatory filings, interact with regulatory agencies, and monitor changes in regulations and guidelines to ensure compliance throughout the product lifecycle. Regulatory affairs managers also provide strategic advice and support to internal stakeholders on regulatory matters, facilitating the timely and successful commercialization of pharmaceutical products.

Bioprocess Engineer: Graduates may pursue careers as bioprocess engineers, specializing in the production of biopharmaceuticals such as vaccines, antibodies, or recombinant proteins using biological systems. Bioprocess engineers work in biotechnology companies, designing and optimizing bioprocesses, upstream and downstream processing techniques, and purification methods to maximize product yield, quality, and efficiency. They may be involved in cell culture, fermentation, chromatography, filtration, and process validation, contributing to the development and production of biopharmaceutical products for therapeutic or diagnostic purposes.

Research Scientist: Some graduates may choose to pursue careers as research scientists, conducting innovative research in pharmaceutical sciences, chemical engineering, or related fields. Research scientists work in academic institutions, research institutes, or pharmaceutical companies, investigating new drugs, drug delivery systems, or manufacturing processes to address unmet medical needs and advance scientific knowledge. They design experiments, analyze data, publish research findings, and contribute to the development of intellectual property such as patents and publications, making significant contributions to scientific discovery and innovation.


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