MGR Medical University MSc Medical Physics FAQs
Ques. What subjects are covered in the MSc Medical Physics programme at TNMGRMU colleges?
Ans. The curriculum covers radiation physics fundamentals, diagnostic imaging physics including X-ray, CT, MRI, and ultrasound, nuclear medicine physics, radiation dosimetry, radiobiology, and radiation protection. Second-year coursework typically includes radiotherapy physics, quality assurance of medical equipment, and a research dissertation. Students receive hands-on practical training in radiotherapy treatment planning, dosimetry measurements, and imaging equipment calibration in affiliated hospital departments throughout the programme.
Ques. What career options are available after MSc Medical Physics from a TNMGRMU college?
Ans. Graduates work as medical physicists and clinical physicists in hospitals, cancer treatment centres, nuclear medicine departments, and diagnostic imaging facilities across India. Roles include radiation safety officer, treatment planning physicist, and quality assurance physicist. Some graduates pursue Board of Medical Physics (BMP) certification for enhanced recognition or proceed to PhD in medical physics for academic and research careers. Government and private hospital physics departments both regularly recruit MSc Medical Physics graduates.
Ques. Is national certification required to practise as a medical physicist in India?
Ans. Yes, practising as a clinical medical physicist in radiotherapy or operating nuclear medicine instruments requires Atomic Energy Regulatory Board (AERB) competency certification or Board of Medical Physics (BMP) recognition in India. The MSc from TNMGRMU qualifies candidates for entry-level positions, and they can then pursue AERB or BMP certification. Candidates planning to work in radiotherapy physics should begin the certification process early as it involves additional examination and supervised practice requirements.
Ques. How are MSc Medical Physics students trained practically at TNMGRMU institutions?
Ans. Practical training takes place in the affiliated hospital’s radiotherapy unit, diagnostic radiology department, and nuclear medicine facility under the supervision of qualified medical physicists. Students learn equipment calibration, dosimetry measurements, treatment planning, and radiation safety protocols. The depth of training varies by institution, so prospective applicants are advised to verify that the affiliated college has functional radiotherapy equipment and a qualified medical physics faculty before applying for admission.
Ques. Can a BSc Physics graduate apply for MSc Medical Physics at TNMGRMU directly?
Ans. Yes, a BSc Physics or BSc Applied Physics graduate with a minimum of 50% aggregate marks is eligible to apply for MSc Medical Physics at TNMGRMU-affiliated institutions. The programme is designed to take physics graduates and provide the medical context needed for healthcare roles. Candidates with BSc Nuclear Medicine Technology or Allied Health Sciences with physics components are also typically eligible under TNMGRMU norms.
Ques. How does MSc Medical Physics from TNMGRMU compare to a regular MSc Physics degree?
Ans. MSc Medical Physics is a specialised programme that replaces theoretical physics research with applied physics topics relevant to healthcare, such as radiation therapy, diagnostic imaging, dosimetry, and radiobiology. Graduates enter the medical sector rather than pure science research. In contrast, a regular MSc Physics follows a broader theoretical and applied physics curriculum aimed at academia, research institutes, or engineering industries. Medical Physics offers a more focused and niche career path in hospitals and healthcare technology.







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