Which is better: biomedical engineering or computer science engineering?
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I suggest Computer Science engineering, as it is now leading branch in the technical world. Huge opportunities, best career options were available in CSE. When compared to Biomedical, it is far better, because many software companies emerging and lot of human power needed. So, choose software stream.
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Biomedical Engineering and Computer Science Engineering, both are very popular courses these days. However, there is no particular advantage or disadvantage of any of the above courses. Thus, I would suggest you that read in detail about both the courses check the syllabus of both and most importantly pursue the course you are interested and ready to work on. Also, biology is a compulsory subject for biomedical engineering.
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Hi,
Biomedical engineering& Computer Science engineering both are very popular courses these days. However, there is no particular advantage or disadvantage of any of the above courses. Thus, I would suggest you that read in detail about both the courses check the syllabus of both and most importantly pursue the course you are interested and ready to work on. Also, biology is a compulsory subject for biomedical engineering. -
B.Tech in Bio-Medical Engineering (B.Tech BME) and B.Tech in Computer Science both the courses has good future prospectus. Only matter is your interest and passion. Another things if you have ability to seat long ours on computer then better choose Computer Engineering. Yes, for Bio-Medical course you need to have Biology one of the subject in intermediate.
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After BTech BME you can apply for PG courses like M.Tech in Biotechnology and Chemical Engineering or M.Tech in Bioinformatics and Biomedical Engineering to get specialised knowledge of the field. You can also take up an MBA degree in Healthcare Management if you have interest in managerial roles in the healthcare administration. Specialized PG diplomas and certifications in Clinical Engineering, Clinical Diagnostics or Medical Physics are a few other good options for short term, skill focused courses.
If you have an inclination towards research and innovation in the BME field, a PhD in Biomedical Engineering could give you micro-level
Biomedical Engineering graduates can work in both hospitals and industries. In the hospital setting you can work as a clinical engineer looking after the management and maintenance of medical devices and equipment, a biomedical equipment technician for servicing and upgrading hospital equipment, a medical imaging specialist for operating and maintaining medical imaging equipment or a clinical specialist for surgical procedures involving devices like pacemakers.
Talking about the industrial setting, you can look forward to job roles like manufacturing engineer, product development engineer, bioinstrumentation engineer, regulatory affairs
The average Biomedical Engineering course fees in India are somewhere around INR 3 Lacs to INR 12 lakh, which differ on the basis of the course level and the college offering the course; whether it is a government college or private college; the college ranking and reputation; infrastructure; college location; and placements.
You can find the detailed Biomedical Engineering fee structure for your preferred course at the respective college websites for better clarity. The fee structure is a combination of tuition fee, college application fee, hostel fee, semester exam fee, lab work fee, caution money, student welfare fund and other misce
Yes, colleges do provide placements to BTech in BME graduates at the end of the course duration, with top recruiters visiting the college campuses either via the college placement drives or annual placement fairs to hire talented students who could bring innovation and a fresh approach to the field of healthcare and medicine. They extend healthy salaries to skilled students who possess the right skill set and knowledge.
BTech Biomedical Engineering syllabus introduces students to multiple important topics like Bioelectronics, where one could think of inserting a chip underneath their skin that would constantly read the vitals of the entire body, and Biomaterials, where students will study how different foreign substances react with the human body and what is biocompatible with it. Furthermore, Computational Biology is also there which teaches students to effectively analyze the data, such as the X-ray scan report, and Medical Imaging, to use the information received through images to detect injuries or other health problems.
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