The MSc Molecular Biotechnology program are tailored for graduates in biological and biosciences, offering specialized knowledge in the dynamic fields of molecular biology and biotechnology. This course delves into the rapidly evolving realm of bioscience, where breakthroughs in molecular biology have a profound impact on biotechnology. The curriculum focuses on the analysis and manipulation of genes and genomes, providing a solid foundation for advancements in various areas of biotechnology. Students will explore how these molecular techniques contribute to the development of innovative diagnostic methods, biological drugs, and enhanced enzymes and proteins. The course also covers the application of molecular biotechnology in creating new vaccines, synthetic antibodies, and improved crops, showcasing the wide-ranging impact of these technologies. With a blend of theoretical knowledge and practical skills, graduates of this program will be well-equipped to navigate and contribute to the ever-changing landscape of molecular biology and biotechnology. The course emphasizes the importance of staying abreast of the latest advancements in these fields, preparing students to make meaningful contributions to scientific research, biotechnological innovation, and other relevant industries. Overall, the MSc Molecular Biology and Biotechnology program provide a comprehensive and exciting platform for individuals seeking to excel in this transformative and influential area of bioscience.
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Graduation: 55% English for HSE/SSE: 70% or IELTS: 6.5 |
The University of Hertfordshire, founded in 1952, is one of the top public institutions in the United Kingdom. The institution has 32,000 students studying for 550 degrees over two campuses. Over 11,500 foreign students from more than 140 countries study at the university's UK campus. The campuses of the University of Hertfordshire are among the 20 safest in England.
Course Overview: The Master of Science in Molecular Biotechnology is a comprehensive program designed to provide students with a strong foundation in key areas such as genetics, applied biotechnology, genome science, and molecular cell biology. The course culminates in a research project that integrates theoretical knowledge with practical research methods.
Compulsory Modules:
Genetics and Protein Biology (30 Credits)
Applied Biotechnology (30 Credits)
Genome Science (30 Credits)
Research Project with Research Methods (60 Credits)
Molecular Cell Biology and Immunology (30 Credits)
Assessment: Assessment methods include written examinations, research project reports, presentations, and practical assessments. The Research Project with Research Methods serves as a significant component of the assessment, providing students with the opportunity to apply theoretical knowledge to a hands-on research project.
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