Biotechnology is based on biological science and is especially used in agriculture, food science, and medicine. United Nations Convention on Biological Diversity defines biotechnology as:

  • Any technological application that uses biological systems, living organisms, or derivatives thereof, to make or modify products or processes for specific use.
  • Biotechnology is often used to refer to genetic engineering technology of the 21st century; however the term encompasses a wider range and history of procedures for modifying biological organisms according to the needs of humanity, going back to the initial modifications of native plants into improved food crops through artificial selection and hybridization.
  • Bioengineering is the science upon which all biotechnological applications are based.
  • With the development of new approaches and modern techniques, traditional biotechnology industries are also acquiring new horizons enabling them to improve the quality of their products and increase the productivity of their systems.

Biotechnology has applications in various  areas, including health care (medical), crop production and agriculture, nonfood (industrial) uses of crops and other products (e.g. biodegradable plastics, vegetable oil, biofuels), and environmental uses.


To become a leading center of excellence in the technical education of Electronics & Communication Engineering and create competent professionals in thrust areas for the development of the society and nation.


  • To educate the students with state-of-the-art technologies through an innovative teaching-learning process.
  • To enable the graduates to develop the skills required to solve complex real time problems using tools and techniques of Electronics & Communication Engineering practice
  • To develop the spirit of innovation and creativity by collaborating with industries and research establishments to fulfil the needs of society.
  • To practice high standards of human values, professional ethics and accountability.
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Programme Educational Objectives (PEOs)

  • Have a sound foundation required to develop hardware & software solutions necessary for analysis, design and implementation of modern Electronics & Communication Engineering systems.
  • Develop effective communication skills and interpersonal behaviour to become a cooperative team member and an able leader.
  • Inculcate the habit of life-long learning needed for higher studies and research and continue to develop new methodologies and technologies.
  • Provide quality and worthy service towards their profession with societal and ethical values.

Programme Outcomes (POs)

  • Apply the knowledge of mathematics, science and fundamentals of Electronics & Communication Engineering to solve engineering problems.
  • Identify, formulate and analyse complex problems in the field of Electronics & Communication Engineering using first principles of mathematics, natural sciences and engineering.
  • Design and develop system components and processes to meet desired needs within realistic constraints such as economic, environmental, social, political, ethical, manufacturing, and sustainability.
  • Design and conduct experiments using research based knowledge and analyse and interpret data to provide valid conclusions.
  • Use the concepts, techniques and modern engineering tools necessary for prediction, modelling and design of an engineering system.
  • Understand and assess the issues related to society, safety, health and culture and the consequent responsibilities of professional engineering practice.
  • Demonstrate the understanding and knowledge of the impact of engineering solutions in societal and environmental context in order to have sustainable development.
  • Understand and apply ethical principles and responsibilities towards professional engineering practice.
  • Understand individual and team responsibilities to be able to become a member or leader in diverse and multidisciplinary teams.
  • Design and prepare reports and deliver effective presentations by learning oral, verbal and written communication skills to be able to communicate effectively on engineering activities with the engineering community and society at large.
  • Understand the engineering and management principles and apply them to manage projects in multidisciplinary environments.
  • Recognize the need for and engage in life-long learning in the context of technological change.

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