Study Program Magistrate


1. Mastering knowledge:

a. Theories in the field of agricultural and biosystem engineering, to improve material, energy, or cost efficiency, at least in one aspect: agricultural production processes and biosystems, agricultural machinery, post-harvest handling, agricultural product processing, or renewable energy.

b. Theoretical concepts, in-depth design and testing methods for: processes, systems, or equipment in agricultural and biosystem engineering fields.

c. Technology application methods, at least in one of the fields: agricultural production processes and biosystems, agricultural machinery, post-harvest handling, agricultural product processing, or renewable energy.

d. Theories for managing projects, programs and activities in the field of agricultural engineering and biosystems

 

2. Have Abilities (Skills):

a. Identify, evaluate and formulate problems in the field of agricultural engineering and biosystems by means of scientific approaches and methods

b. Solving problems in the scope of natural resource management and agricultural production processes and biosystems through design, testing and evaluation, with an inter or multidisciplinary approach

c. Manage research and produce innovative and tested work in developing skills comprehensively in accordance with scientific ethics and norms of community life

d. Manage projects, programs and activities in the field of agricultural engineering and biosystems.

Vision

To become an internationally recognized and excellent study program in the implementation of education and the development of science and technology in the field of agricultural and biosystems engineering.

Mission

1. To provide high-quality master’s education in the field of agricultural and biosystems engineering.
2. To develop science and technology in the field of agricultural and biosystems engineering through research and publication.

Num Course Credit Precondition Semester Course Category
Code Name
1 PPS1692 National Scientific Publication 2(0-2) - 2 Final Year Project
2 PPS1692 National Scientific Publication 2(0-2) - 2 Final Year Project
3 TPB1501 Design and Testing 2(1-1) - 2 PPKU/Common Core Courses
4 TPB1501 Design and Testing 2(1-1) - 2 PPKU/Common Core Courses
5 TPB1602 Colloquium 1(1-0) - 2 Final Year Project
6 TPB1602 Colloquium 1(1-0) - 2 Final Year Project
7 TPB1603 Thesis Proposal 2(0-2) - 2 Final Year Project
8 TPB1603 Thesis Proposal 2(0-2) - 2 Final Year Project
9 TPB1605 Analysis and Evaluation on Agricultural and Biosystems Engineering Project 2(2-0) - 2 PPKU/Common Core Courses
10 TPB1605 Analysis and Evaluation on Agricultural and Biosystems Engineering Project 2(2-0) - 2 PPKU/Common Core Courses
11 TPB1606 Renewable Energy Conversion Analysis 2(2-0) - 2 PPKU/Common Core Courses
12 TPB1608 Thesis Exam 2(0-2) - 2 Final Year Project
13 TPB1608 Thesis Exam 2(0-2) - 2 Final Year Project
14 TPB1611 IOT based Automatic Control and Instrumentation 2(2-0) - 2 In-depth Courses
15 TPB1613 Ergonomics in Agricultural Machinery Design 2(2-0) - 2 In-depth Courses
16 TPB1613 Ergonomics in Agricultural Machinery Design 2(2-0) - 2 In-depth Courses
17 TPB1617 Computational Analysis of Fluid Dynamics and Solid Mechanics 3(2-1) - 2 In-depth Courses
18 TPB1617 Computational Analysis of Fluid Dynamics and Solid Mechanics 3(2-1) - 2 In-depth Courses
19 TPB1621 Drying Engineering 2(2-0) - 2 In-depth Courses
20 TPB1621 Drying Engineering 2(2-0) - 2 In-depth Courses
21 TPB1641 Transport Phenomena 2(2-0) - 2 In-depth Courses
22 TPB1642 Design of Thermal Systems 2(2-0) - 2 In-depth Courses
23 TPB1642 Design of Thermal Systems 2(2-0) - 2 In-depth Courses
24 TPB1642 Design of Thermal Systems 2(2-0) - 2 In-depth Courses
25 PPS1691 Thesis Seminar 1(0-1) - 4 Final Year Project
26 TPB1607 Thesis 6(0-6) - 4 Final Year Project
27 TPB1607 Thesis 6(0-6) - 4 Final Year Project

Belum ada data

To conduct education, research, and community service in the field of agricultural and biosystems engineering to improve agricultural efficiency and productivity through agricultural machinery, renewable energy, and agricultural automation.

• Agricultural Engineering Development: Includes agricultural machinery and equipment for cultivation, greenhouse planting techniques, agricultural information systems, and machine learning technologies for precision agriculture.

• Biosystems Management: Applies engineering principles to biological systems (agriculture, livestock, fisheries, and forestry) to support sustainability.

• Educational Focus: Develops technologies to improve efficiency in both on-farm (production) and off-farm (postharvest and agroindustry) activities.

• Industrial Application: Prepares experts capable of working in agricultural machinery industries, plantations, agroindustries, and research institutions.