Study Program of Doctoral in Agroindustrial Technology
The Study Program of Doctoral in Agroindustrial Technology aims to generate reliable and independent researchers who are able to develop and utilize natural resource potentials to empower Indonesian society and help to achieve long-term development goals in the field of higher education in the purpose of increasing the quantity and quality of teaching staffs and researchers with doctoral degrees of Agroindustrial Technology. The total credit students must take to accomplish Agroindustrial Technology Doctoral Study Program is 42 credits. This credit load consists of 12 credits of one-semester lecture and a dissertation of 30 credits.
Furthermore, the doctoral program is expected to generate graduates with the following competencies, which, according to Indonesian Qualifications Framework level 9, are:
- Believe in God Almighty and able to behave religiously.
- Upholding human value in carrying out duties based on religion, morals, and ethics.
- Contributing to the quality of life improvement in society, nation, state, and to the civilization progress based on Pancasila.
- Acting as citizens who are proud and love their homeland, having nationalism and responsibility for the state and nation.
- Respecting cultural diversity, views, religions, and beliefs, as well as the original opinions or findings of others.
- Cooperating and having social sensitivity and concern for the community and environment.
- Abide law and being disciplined in social and state life.
- Internalizing academic values, norms, and ethics.
- Behaving responsibly for their work according to their field independently.
- Â Internalizing the spirit of independence, fight, and entrepreneurship.
- Mastering concept and theory of Agroindustrial Technology science concerning the science of process technology, agroindustrial management, system engineering, and other related knowledge fields.
- Able to integrate concept and theory of Agroindustrial Technology science independently by the interdisciplinary, multidisciplinary, or transdisciplinary approach to the various professions.
- Mastering philosophy and theory of Agroindustrial Technology science by the field of process technology studies such as optimization techniques of the production process, performance analysis of tools, and machine and competitive new product development.
- Mastering the philosophy and theory of Agroindustrial Technology science by agroindustrial management studies such as production plan aspects, productivity analysis, and agroindustrial production unit performance.
- Mastering the philosophy and theory of Agroindustrial Technology science by system engineering field, such as supply chain analysis and agroindustrial system integration.
- Mastering the philosophy and theory of Agroindustrial Technologyscience by the field of Agricultural Cultivation Mechanical Engineering, Soil and Water Engineering, Agricultural Mechanization Systems and Management, Food Processing and Agricultural Products Engineering, Agricultural Energy and Electrification, Agricultural Environment and Buildings, and Agricultural Ergonomics and Electronics.
- Able to plan and develop sustainable agroindustrial downstream.
- Able to carry out innovation and its application to the agroindustrial system.
- Able to comprehensively plan and evaluate the quality system in the field of agroindustry.
- Able to analyze problems and develop a strategy of industrial policy from upstream to downstream aspects.
- Able to design and develop integrated agricultural machinery and equipment innovations in food agricultural product processing.
- Able to analyze and explore the application of waste treatment technology to achieve an environmentally friendly agroindustrial business.
- Able to design and develop a smart farming system based on the information technology and control system.
- Able to explore renewable energy to support the achievement of environmentally friendly agroindustry.
- Able to produce scientific works that are innovative, tested and original, and have novelty in Agroindustrial Technology science, particularly in technology, management, and system engineering science, and publish on a national and international scale.
- Able to produce scientific works which are innovative, tested and original and have novelty in the field of Agricultural Cultivation Mechanical Engineering, Soil and Water Engineering, Agricultural Mechanization Systems and Management, Food Processing and Agricultural Products Engineering, Agricultural Energy and Electrification, Agricultural Environment and Buildings and Agricultural Ergonomics and Electronics through independent research activity by interdisciplinary, multidisciplinary, transdisciplinary approach and able to be published on a national and international scale.
- Able to solve the problems and make a decision and strategic policy in the agro-industrial system’s scope to provide outcomes and impact on agroindustrial performance improvement, sustainability, and competitiveness.
- Able to plan, manage, lead, carry out, and develop the research roadmap in Agroindustrial Technology science, which is beneficial for the agro-industrial system’s stakeholders.