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Syllabus for Agricultural Engineering Study Program (TEP)

Al-Quran and Science. Life events, human events, earth events and the universe. Humans and Religion.

The status and function of humans, the goals and programs of human life, the role of religion in human life. Aqidah Islamiyya, outline of Islamic teachings.

Increasing understanding of the concept of faith in the Church, church life and society in the framework of developing personalattitudes of a Catholic scholar who can dedicate himself to the interests of the Indonesian people as an expression of his faith.

Developing the application of the basics of Christian faith to equip students so that they can grow as a person and a new creation in Jesus Christ. Increasing responsibility towards Allah through sensitivity to others and the environment. Thus, as an academic person, he can enter society with dedication based on service and for the honor and glory of Allah.

history of the development of Hinduism, the three basic frameworks of Hinduism, tatwa (philosophy), susila (ethics), yadya (ritual). Description of Wada, the basis of Hindu religious belief, five srada, the basis and purpose of human life, dharma sidharta, yoga clan chess, panca maha yadya, asram chess, and color chess.

The inception of Buddhism, epistomology, causality, the characteristics of life, karma rebirth of morality and ethics, nirvana, the ramifications and characteristics of each sect, metaphysics, divinity in Buddhism, the position of Buddhism in the realm of human knowledge, relevance Buddhism with modern times and the era of Indonesian development.

Education aims to develop knowledge and understanding and awareness of National Security Defense (HANKAMNAS) among students in the context of National Resilience (TANNAS), in addition to helping to cultivate and increase awareness of national discipline. For this reason, students are given an understanding and understanding of Introduction to Estimates, Archipelago Insights, National Defense and Political National Security Defense Strategy as a basis for understanding the Universal People's Security Defense system.

proficiency for oral and written communication, both active (speaking and writing) and passive (listening and reading). Techniques of communicating technical information to non-technical listeners, writing scientific reports, letters and memos, making formal and informal presentations

MPK4001 Islamic Religion 3

MPK4002 Catholic Religion 3

MPK4003 Protestant Christianity 3

MPK4004 Hinduism 3 The

MPK4005 Buddhism 3

MPK4006 Civic Education 3

TPF4013 English Language 2

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This course explains the meaning of functions, inverse functions, compositional functions, quadratic functions, exponential functions, functions logarithms, trigonometric functions, lines and series, limit, mathematical logic, Taylor series, Newton Rhapson.

This course contains mechanics which include unit systems, scalar / vector quantities, Newton's law, equilibrium. Liquid, which includes the properties of static liquid, flowing liquid, molecular phenomena, surface tension. Thermodynamics which includes heat and temperature, energy transformation, heat transformation. Modern physics which includes quantum theory, nuclear radiation.

This practicum discusses the law of archimdes, bouyanci law. And prove the law in an experiment. And there are experiments on electrical circuits to find out the value of Ohm (resistance), current, and voltage. Kurchoff's law is also applied to electrical circuits.

This course provides an introduction to the basic principles of organic chemistry, physical chemistry, and analytical chemistry. The topic to be studied is the understanding of substances, composition, structure of substances, elements and compounds. Atomic theory: Periodic arrangement and general properties, ionization potential. Solution and concentration pengertian means solution, a mixture of solute, solvent and solution. pH of the solution. Stokiometry: gravimetry.

This course studies the knowledge of organic cell constituents, cell structure and function, cell bioenergetics, cell division and growth, gene structure and function, structural functions and benefits (animals, plants, and microorganisms). Elemental cycle, ecology (biotic and abiotic) and biotechnology.

This course explains the basics of agricultural conditions in Indonesia, agricultural mechanization, agricultural mechanization objectives, coverage of agricultural mechanization fields, application of agricultural mechanization, and barriers to the application of energy sources in agriculture, harvesting, engineering. processing of agricultural products, processing of rice, storage, agricultural buildings, agricultural mechanization

Grammar, syntax, spelling, language logic, systematic writing of scientific papers. The use of standard terms, borrowings from foreign languages. Summary creation method.

This course provides the ability to understand Pancasila as the basis of the State in carrying out daily life.

Discussion: the foundation and goals of Pancasila and Citizenship Education, National Identity, History of

TPE4127 Basic Mathematics 2

TPE4131 Physics 3

TPE4131 Physics Practicum 1

TPF4121 Basic Chemistry 3

TPF4120 Biology 3

TPE4101 Introduction to Agricultural Technology 2

MPK4007 Indonesian Language 3

MPK4008 Pancasila 2

(3)

the Indonesian Nation's Struggle. UUD 1945, body and explanation of UUD 1945. Dynamics of implementation of UUD 1945. Pancasila as a system of philosophy and political ethics system. Pancasila as the State Ideology and in the context of the History of the Republic of Indonesia.

The concept of chemical bonds: definitions of chemical bonds, ionic, covalent, covalent coordinates, understanding of polarity, and so on. Reactions in organic molecules (substitution, elimination, esterification, etherification, hydrolysis, amidase, etc.). Other natural compounds (alkanes, alkenes, alkyne, alcohols, organic acids, esters, and ethers) include an explanation of their respective structures.

This coursethe basic theorems of calculus, area and volume of rotating objects, transcendent functions:

Logarithms, exponents and trigonometry, integration techniques, laplace transforms, principles of transformations and inversions, laws of linearity, transformations for derivative and integral functions, solving differential and integral equations. Prerequisite: TPE4127

This course provides the basics of statistics that will be used in planning designed and un-designed (descriptive) experiments, including skills in operating the computational program of the associated statistical package.

This course explains cultivation techniques for producing plants which include: Plant seeds and seeds, including superior seeds. Planting (in soil or non-soil planting media) includes spacing, crop rotation, and cropping patterns. Overall plant maintenance to support crop production. The role of climate in human, animal and plant life. Understanding and the scope of climatology in agriculture. Radiation as a source of energy and its benefits for plants and animals. Climate elements and mechanisms for variations in climate elements on the earth's surface (temperature, humidity, wind, clouds, evaporation, and rain).

Utilization of climate data in planning activities in the agricultural sector, designing agricultural buildings and irrigation. Management and interpretation of climate data. Introduction and interpretation of climate data. Introduction of climatic type classification methods. Understanding of soil. The function of soil for plant growth. Terms in soil science. Soil formation and classification. Introduction to physics, chemistry / fertility, and soil conversion. Soil maps and land evaluation.

Practicum discusses the basics of testing the physical properties of soil. Soil properties testing includes moisture content, density, soil density, and soil porosity. Testing is done using a simple testing method.

This course contains an introduction to computer hardware and software. Computer programming in Java and Visual Basic. Application of computers for statistical analysis, graphic creation, tabulation and scientific writing using several package programs, for problems in the field of agricultural engineering.

TPF4241 Organic Chemistry 3

TPE4246cove rs

Calculus 1 2

TPF4242 Statistics 3

TPE4299 Agricultural Sciences and Biosystem 2

TPE4299 Practicum of Agriculture and Biosystems 2

TPE4233 Computer Application 1

(4)

practicum is designed to explain the basics of programming language and coding. A detailed introduction to the function of each code. And applied directly for making simple applications using the functions that have been described.

This course provides knowledge of food commodities of vegetable origin (plant products) and animal origin (products and fisheries). The contents of the material include the following aspects: variety / race source, chemical composition and tissue structure, post harvest / post mortem physiology. Factors that affect tissue activity and permanent cell changes, chemical and physical damage and their effect on agricultural yields. Cooling treatment, freezing, controlled atmosphere storage of the quality of agricultural produce.

The subjects described in the thermodynamics course include basic concepts of thermodynamics, energy forms, systems, processes, and thermodynamic cycles, unit systems, pressure and temperature, properties of pure substances and characteristics of ideal gases, the law of thermodynamics I in closed systems , including heat, work, specific heat, internal energy, enthalpy and ideal gas specific heat, Law of Thermodynamics I of open systems (volume control), Law of Thermodynamics 2, thermal energy reservoirs, heat engines, engines refrigerators and heat pumps, perpetual-motion machines, Carnot cycles, Carnot principles, Carnot heat engines, Carnot coolers and heat pumps Prerequisite: TPE4131

This course contains the definition of vectors, vector operations, parallel coplanar force analysis, non-parallel and non-concurrent, coplanar force resultants, moments of a coplanar force. The definition of spatial force system, operating system of spatial force concurrent, parallel, non-concurrent and non-parallel, the moment of a spatial force system. Determination of equilibrium conditions, force balance, moment balance, applications in concurrent and non-parallel systems, point-by-point balance analysis, determination of the magnitude and type of force occurring on individual support beams, balance of concurrent, parallel, non-concurrent and non-parallel systems. General concept of first moment, centroid for single body and composition, moment of inertia of area and mass, mechanical properties of cross section, beam and cable, general concept of kinematics, trajectory, velocity, acceleration. Motion in straight lines and in curves. Constant acceleration and non-constant acceleration, General concepts of Kinetics, Newton's Laws I, II and III. Vector equations of the movement of scalar equations of shift, work, power, efficiency, kinetic energy of solid objects in motion, kinetic energy of solid objects in a rotating state

This course describes knowledge of the basic concepts of fluid mechanics, properties fluid and dimensional analysis of fluid equations. Dimensional and similitut analysis, fluid statics, fluid dynamics and the basics of flow in an ideal (closed) fluid pipe, both steady and unsteady and incompressible and compresible, the basics of open channel flow both uniform and non-uniform flow. The analysis of head or energy losses includes minor losses in closed and open flows, as well as the demand for pump power

TPE4233  Computer Application Practicum  1 The

TPE4207 Agricultural Materials Science 2

TPE4137 Thermodynamics 3

TPE4103 Statics and Dynamics 3

TPE4106 Fluid Mechanics 2

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and liquid power generation. Fundamentals of theory and applications of various fluid flow measurements.

Explains the basics of fluids. Proof of the buoyancy theory. Calculation of the friction force of water against the pipe in its path. Understand the bulkhead / limit for fluid flow to calculate the amount of discharge that can occur.

This course provides an explanation of the history, objectives, and technical drawing tools. Normalize the drawing paper size. Normalize letters and numbers. Various lines. Engineering geometry. Size indication. Projection and sketch drawing systems. Cross-sectional drawings and various kinds of shading. Threads, springs and gears.

Practicum learns the basics of drawing techniques using the autocad application. An understanding of the function of tools in the application to form objects. Application and application of tool functions are applied to create an agricultural object that will be displayed at a technical drawing exhibition.

This course contains passive and active components, analog electronics, basic semiconductors, diodes, transistors, ICs, op-amps, digital electronics, boolean algebra, logic gates, flip-flops, decoders and encoders, seven segment displays. . Overview of modern instrumentation techniques and digital electronic components and subsystems for integrating them into digital data acquisition and environmental measurement and processes. Emphasis on the use of laboratory equipment. Topics include instrument characteristics, signal conditioning, transducer theory, transducer theory and application, and digital data acquisition.

Describes the basic components of electronic components. The working principle of each component. As well as the basic concept of converting physical values ​​into digital values​​using electronic components or by using formulas. This practicum also tries to use electronic components in their respective functions.

Introduction, basic concepts of technical economics, cash flow, time value of money, interest, and interest formula, economic analysis of alternative options (value equivalents, selection of alternatives, BEP analysis, minimum cost analysis, replacement analysis). Investment analysis, public sector project feasibility, benefit-cost analysis.

This course provides learning techniques for solving complex derivatives such as derivatives for functions with two or more variables. Besides that, another material scope is multiple integrals which includes triple integrals at cartesian, cylindrical and spherical coordinates. The Laplace method is the third subject matter given in this course. Prerequisite: TPE4246

TPE4106  Fluid Mechanics Practicum  1

TPE4136 Technical Drawing 2

TPE4136  Technical Drawing Practicum  1

TPE4151 Environmental Measurement 2

TPE4151  Environmental Measurement Practicum  1

TPF4010  Engineering Economics  3

TPE4152 Calculus 2 3

(6)

This applied mathematics course provides students with an explanation of the mathematical formulation of the facts of reality in technical and applied theoretical approaches in the field of Agricultural Technology. Evaluate the accuracy and density of theoretical approaches with facts in the field. Methods of forming some relevant mathematical models in the field of Agricultural Technology.

Derivative functions, Educational Guidelines for the Faculty of Agricultural Technology 2016/2017 41 maximum and minimum functions (absolute, local), concave function, optimization problems, linked rates, drawing graphs of functions, anti-derivatives, definite integrals, basic theorems of calculus, transcendent functions: Logarithms, exponents and trigonometry, integration techniques. Basic theorems of calculus, area and volume of rotating objects, transcendent functions: Logarithms, exponents and trigonometry, integration techniques and Laplace transform

Prerequisite: TPE4246

This course provides knowledge about the strength of materials in relation to the loading and strength of agricultural machinery / equipment elements. Understanding the concept and calculation of stress, moment, torque, deflection, rivet and weld joints.

Prerequisite: TPE4103

This practicum is designed to enable the practitioner to understand the concept of testing the strength of a material. By applying several methods for testing. Use of Universal Machine Testing(UTM) measuring tensile strength, resistance strength, and ​bending​. UTM also shows the amount of load a material can accept, the elastic limit and so on. The testing method using the ​Brazilian Test is also carried out in this lab. Prerequisite: TPE4103

This course covers several subjects which include introduction to control systems, dynamic system mathematical models, basic control actions and industrial automatic controllers, transient response analysis and state fault analysis, analysis and design of control systems using conventional methods, Location and root analysis, response and frequency analysis, compensation and design techniques, analysis of the pointer function of the non-linear control system, analysis of control systems in space, design of control systems using the position of space method.

Prerequisite: TPE4151

This practicum is conducted as an introduction to simple coding on Arduino Uno, LCD settings, servo motors, and LM35. ​Prerequisite: TPE4151

This course provides knowledge of engineering materials which includes: general knowledge of engineering materials, atomic structure and bonding between atoms, solid crystal structure, mechanical properties of metals, dislocation and strengthening mechanisms, failure, phase transformation of metals. , metal alloys, ceramics, polymers, composites, corrosion and degradation of materials.

TPE4232 Applied Mathematics 2

TPE4206 Strength of Material 2

TPE4206  Strength of Material Practicum  1

TPE4236 Control System 2

TPE4236 Control System Practicum 1

TPE4249 Engineering Material Science 2

(7)

This course provides an understanding of heat transfer as a basis for technical knowledge in the field of agricultural technology, with a discussion of: unit-dimensions, conduction heat transfer mechanisms, convection and radiation. One-dimensional conduction heat analysis, heat analysis of homogeneous flat walls and perforated cylinders, flat wall composite objects and concentric cylinders, overall heat transfer rate of flat walls, perforated cylinders, solid cylinders and perforated balls. Analysis of convection heat transfer (Bil Nusselt), laminar flow in the pipe, Bil Nusselt in the circular tube input area, turbulent flow in the circuilar tube, empiric relationship, transfer heat flow in the pipe. Determination of the heat transfer coefficient of natural convection on vertical walls, interferometer in natural convection. Forced convection, a combination of natural and forced convection, fin and heat exchanger. Prerequisite:

TPE4137Heat

This practicum aims to observe the transfer of heat energy in a material, to measure the thermal conductivity of the material. The use of ​double pipe heat exchangers is carried out in order to make the practitioner better able to understand the basic concepts of heat transfer. The concept of conductivity coefficient is studied in this lab. Prerequisites: TPE4137

This course describes the classification of resources (mobile power) in agriculture, including the history of the development of the combustion motor. Application of thermodynamic principles to combustion engines. Design, construction and work systems of functional parts on both diesel and gasoline engines.

Evaluate the performance of the combustion motor.

Prerequisites: TPE4137

Power Practicum in Agriculture aims as a basic introduction to the components, functions, principles and working mechanisms of 2 wheel tractors and 4 wheel tractors. Then also about understanding the internal combustion system in the combustion motor and lubrication on the engine. Prerequisite:

TPE4137

Elements of K3 elements. Basic K3 safety. The aims and objectives of SMK3 / OHSAS 18001: 2007. SMK3 introduction and interpretation. SMK3 preparation method. Manage the performance of SMK3 in the workplace. Hazard identify & risk assessment. Implementation and certification of SMK3. The body's work system. The working system of the human mind. Human sensory system; the interaction of the human body with the environment. Body rhythm and work shifts. Work design principles based on the human body. Human - machine system. Handling of human physical burdens. Ergonomics applications;

physical aspects in ergonomics, biomechanics and applications. Cognitive aspects of ergonomics.

Ergonomics checklist. Ergonomics applications in the hospitality sector, agribusiness and industry.

Cognitive work analysis. Work analysis approach. Bad design related to cognitive ergonomics. Kansei engineering and its applications. ​Emotional design​. Mental workload measurement. Canoe method.

TPE4231 Heat Transfer 2

TPE4231 Heat Transfer Practicum 1

TPE4234 Power in Agriculture 1 2

TPE4234 Power Practicum in Agriculture 1 1

TPE4252 Ergonomics and Occupational Health and Safety

2

TPE4261 Food Physical Properties 2

(8)

This course contains the sources, varieties, structures and physiology of vegetable and animal products.

Application of momentum, heat transfer and mass in the food processing process; cooling, freezing and controlled atmosphere storage. Analysis of the selected operating units used in food processing.

Extrusion, dehydration, heat processing.

This course contains the concept of workshops and workmanship management for post-harvest systems, welding techniques including auto welding (carbide) and arc welding, welding of several types of metal, securing and fastening tools, fastening of tool and machine components including rivets, bolts, nuts, pegs. , screws, nails. Measurement, hand work, primary forming process, cutting and drilling, grinding and milling, assembly methods and workshop layout.

practicum is designed as an implementation of the field science that has been learned in designing a tool or machine, such as how to use welding, hand grinding, seated grinding, etc. In addition to the process of making tools, this practicum is also integrated with the engineering design that has been studied.

Definition of Business, Nature of Business, Types of Business Activities Role of the food business in the economy, Characteristics of the food business system, economic factors that affect the performance of the food business.

The subject matter of this course covers the processing of materials from harvest to semi-finished products and finished products. The process includes threshing, cleaning, drying, stripping, material handling, milling, size reduction. Food processing includes basic rheology, heating and cooling of foodstuffs.

Prerequisites: TPE 4231

This practicum includes the use of ​vaccum frying to extend shelf life. The storage effect test uses plastics that have different density values ​​to see the final physical properties of agricultural materials. Testing of drying techniques to increase shelf life. As well as the use of a pasteurization system to deactivate bacteria in milk.

Prerequisites: TPE 4231

This course provides a description of the differences between analytic and numerical methods, Theory of error calculation, Roots of non-linear equations and equations, Matrices and linear equations, Interpolation, Numerical Differentials, Numerical Integral, Solving of numerical solutions for differential equations and integral. Solving partial differential equations.

Prerequisite: TPE4246

TPE4141 Workshop Engineering 2

TPE4141 Workshop Engineering Practicum 1

TPI4011 Business Management 1

TPE4145 Food Processing Technique & Agricultural Products

2

TPE4145  Food Processing Technique & Agricultural

Products Practicum   1

TPE4148 Numerical Method 2

TPE4109 Machine Element Design 2

(9)

This course describes simple forces and stresses on engine parts. Couplings, brake bolts, gears, engine bearings, springs, engine tires, planning projects. Planning axles and pegs. Planning of chain, belt and gear transmission. Bearing planning.

Prerequisites: TPE4206

This course provides a description of alternative energy sources, biomass energy, wind energy, water energy, solar energy, energy conversion processes, conversion engines, transformers, circuit systems, combustion theory diagrams to value audits .

Introduction to the solar panel system, the efficiency obtained from the energy converted using solar panels. Discusses the concept of energy conversion that often occurs in everyday life. The manufacture of biodiesel using cocoa oil is carried out in this lab.

This course explains the definition and scope of agricultural buildings. Environment and development.

Measurement applications in buildings. Functional design of the building. Structural design of buildings.

This course provides knowledge and understanding of the definition of a food processing unit, non-food and technical basics in the field of agricultural technology (TP), with a discussion of: black box diagram philosophy, dimensional units, technical approach methods, basic - basics of momentum transfer, basics of thermodynamics and heat transfer, crystallization and mixing.

Prerequisite: 4231

This course contains the definitions and definitions of ethics and morals, code of ethics and professionalism. Implementation of professional code of ethics in an institution (including student ethics, lecturer ethics, education ethics, lecture ethics). Material on intelligence, personality, communication, and empathy in relation to professional ethics.

This course studies the characteristics of successful entrepreneurship (building dreams and pursuing ideals, motivating oneself, solving problems and running a business), intrapersonal skills (communication, leadership and entrepreneurial motivation), developing creativity and innovation in creating service products. superior. Entrepreneurial marketing (personal and cooperative), as well as entrepreneurial management (financial management, evaluation and business development).

This practicum teaches starting a business with a business group. Starting from the process of idea formation, product production, marketing, business reporting. Creating products that are unique so they can last over time.

TPE4006 Agricultural Electricity and 

Energy  2

TPE4006  Agricultural Electricity and Energy Practicum  1

TPE4142 Farm Building 2

TPE4119 Operational Unit  2

TPF4240 Professional Ethics 2

TPF4012 Agro-industrial

Entrepreneurship 2

TPF4012 Agro-industrial

Entrepreneurship Practicum 1

TPE4211 Design of Agricultural Tools and 

Machinaries 3

(10)

This course explains the notion of design and types of agricultural machinery and machinery, design principles, steps to design agricultural tools and machinery. Design of a cooling engine along with an explanation of the various cooling loads. The design of the drying machine, the design of the evaporator machine, the working method of the press machine, the hydraulic machine which includes the basic principles, working fluid, piston, cylinder cover, pipelines and hydraulic pumps. Machine tools and pneumatic control systems, mechanical machinery and mechanical machinery design and applications.

Prerequisite: TPE4109

This course provides an explanation of problem solving to optimize the various uses of limited resources with linear programming, using simplicity, duality and sensitivity and its application in special forms:

VAM, NMCR, VAM transportation problems, Stepping stone, MODI and case examples, excel application, transshipment and queuing theory.

This course has a subject covering primary soil processing tools and machines, secondary soil processing tools and machines, planting tools and machines, fertilization tools and machines, weed control tools and machines, pest control tools and machines and diseases, tools and machines for harvesting grains, corn, cotton and tubers, working capacity of agricultural tools and machinery, and the selection of agricultural tools and machinery. ​Prerequisites: TPE4234

Practicum is designed to study the tools and machines used for agricultural cultivation. Includes identification of tillage, weed extraction. Besides studying technology in agriculture, such as the operation of ​seed tables, transplants​, and tractors.

Prerequisites: TPE4234

This course contains the definition, scope of regional measurement in the field of agricultural engineering. Area measurement tools. The use of simple measuring instruments, editors, BTM and theodolites. Measuring altitude differences, creating situation maps, topography, editing, profiling and drawing. Map interpretation. Overview of computers as data processing tools.

Use of simple measuring instruments, cutters, BTM, and Theodolite. Measuring altitude differences, creating situation maps, topography, editing, profiling and drawing. Map interpretation.

This course explains the understanding of the scope, concepts, processes of system engineering.

Systems approach, systems analysis, systems modeling techniques, descriptive modeling techniques, numerical modeling techniques, decision support systems, systems engineering management, system life cycle, system engineering in inventory models, system design, system integration, seismatic measurement. Inventory theory for infinite and bounded systems. Optimization technique. Dynamic programming.

TPE4237 Operational Research 2

TPE4253 Agricultural Cultivation Tools and 

Machinaries 2

TPE4253  Agricultural Cultivation Tools and Machinaries Practicum   1

TPE4212 Land Surveying and

Mapping 2

TPE4212  Land Surveying and Mapping Practicum 1

TPE4251 System Engineering 2

UBU4007 Field Work Practice (PKL) 4

(11)

A form of field work practice is an internship in a government or private institution or agency or students doing their own agricultural cultivation practice with the help of a supervisor for a certain period of time.

Prerequisite: Have taken at least 80 credits

Community Service (PKM) is a community service activity in certain areas, carried out in groups, integrated between departments, coordinated at the Faculty level, prioritizing non-physical activities in agriculture, aims to help people to increase the level of knowledge and skills so that it is expected to improve their welfare. Real work lecture activities are divided into 4 activity stages, namely debriefing, implementation of activities on site, implementation reports and evaluation.

Prerequisite: Have taken at least 80 credits.

Project Thesis is a scientific essay based on the work results of the implementation of research (in the form of experiments or surveys) or scientific reports from work apprenticeship activities equipped with literature study, under the guidance of the Supervisor.

Prerequisite: Has taken at least 120 credits (proposal).

This course explains the basic concepts of packaging, storage, drying and cooling techniques. The basic concept of theory and practice of storage in agricultural product packaging. The elements determining the quality of storage (dry and cold). Properties of atmospheric water vapor on heating / cooling (Psychrometric and Mollier diagrams). Drying and cooling components in energy and mass balance.

Effect of cooling on agricultural products (fresh products, processed products). Cold damage to fresh produce (fruits).

In this course, we learn how to design experiments with various types of experimental designs such as CRD, RAK, Factorial, nested random and being able to perform experimental tests with non-parametric (Friedman, Wilson test and different tests: t test, LSD and DMRT ) and non experimental design, observation and data collection, interpretation of experimental analysis results.

This course provides an explanation of the understanding of soil and water preservation, the principles of water and wind erosion, erosion prevention methods, erosion control buildings, embankments and reservoirs, flood and sedimentation control.

Learn the basic concepts of soil and water conservation. Observing the slope of the land in order to apply a method that is suitable for the land, as well as taking soil samples to simulate erosion that occurs in the soil. Erosion control structures are described as response measures to avoid erosion or to minimize its likelihood.

This course provides an explanation of changes in soil mechanical behavior. As a result of agricultural equipment and vehicle wheels in the process of tillage and equipment traffic. Includes the occurrence of

UBU4002 Community Service (PKM) 4

UBU4001 Bachelor Thesis 6

TPE4149 Post-Harvest Technology 2

TPF4124 Experimental Design 2

TPE4197 Soil and Water Conservation 2

TPE4197  Soil and Water Conservation Practicum  1

TPE4115 Dynamics of Machine and Soil 2

(12)

stress, strain, deformation, compaction, failure (destruction), soil displacement, soil resilience, and the process of loosening. Effect of soil conditions on the performance of agricultural tools and wheels.

Includes the amount of traction, the amount of loading, the level of immersion of the wheels, the amount of slip, and fuel consumption. Analysis of the use of agricultural tools and machinery related to soil.

This practicum includes checking the physical properties of the soil using tools. The use of tools and discussion in this practicum can help the practitioner understand the treatment that must be done on agricultural land. As well as discussing the balance / center point of several tools for the ground.

The subject matter of the Mechanization of Plantation Crop Cultivation includes case studies of the mechanization of sugarcane cultivation, both in paddy fields and on dry land. The mechanization of oil palm cultivation starts from land planning, initial planting, maintenance, harvesting and mechanization of the manufacturing process.

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This course contains general definitions of irrigation and drainage, land leveling for irrigation, water measurement, irrigation water needs, irrigation water scheduling, irrigation efficiency, open channel water distribution, water distribution for closed channels, irrigation water quality, irrigation systems, understanding drainage for agriculture, drainage and water movement and drainage systems. The response of plants to changes in water in the soil and their correlation with the provision of nutrient elements. Water adsorption by roots and its processes in plant physiological systems. Water stress on plants.

Practicum is designed to study irrigation and drainage systems. The basic concept of flow rate is suitable to determine the amount needed in the world of agriculture. Experiment on water infiltration rate. The use and concept of types of drip irrigation and testing of water quality.

The design of a plant in the agro-industry sector starts from location considerations, processing selection, production capacity, material construction and material selection, multiple-scale experiments, flow diagrams, mass and energy balances, utilities, manufacturing hygiene, piping systems, WWTP, and studies. agroindustry unit design case.

This course provides an explanation of the basics of developing bio-production robots. Robot components; manipulators, end-effectors, sensors, traveling devices, control devices, and actuators.

Image acquisition, RGB signal method, introduction of algorithms for biological objects. Robots in bioproduction in a controlled environment. Robot for open area bio-production. Robots in the food industry. Prerequisite: TPE4236

TPE4115  Dynamics of Machine and Soil Practicum  1

TPE4199 Cultivation Mechanization Of

Plantation Crop 2

TPE4199  Cultivation Mechanization Of Plantation Crop

Practicum  1

TPE4112 Irrigation and Drainage 2

TPE4112  Irrigation and Drainage Practicum  1

TPE4251  Plant Design 3

TPE4226 Robotics in Bio-system  2

(13)

Prerequisite: TPE4236

This course contains definitions, pump classification, basic design, basic pump theory, specific speed, efficiency, performance curves and cavitation. Angle design and pump housing, testing, construction, pump installation in irrigation systems and cost calculations.

This course discusses an introduction in general to the process and application of drying and cooling in agriculture. Method of measuring moisture content, equilibrium moisture content, psychrometric chart.

Examples of psychrometric charts on drying, type of dryer by product and air flow. Natural and artificial cooling. Know the various refrigerators. The working principle of the refrigerator, the refrigerant cycle (coolant). Calculation of heat and efficiency of the cooling engine. Cooling Engineering application for post harvest and air conditioning. The cooling process and its effects on agricultural products (fresh products, processed products). Chilling damage to fresh produce (fruits). Freezing process. Estimated rate of freezing. Prerequisite: TPE4145

This course provides an explanation of soil as a medium for growing plants that need water, the response of plants to changes in water in the soil, including the provision of nutrient elements, the relationship between soil and plants. Water adsorption by roots and its processes in plant physiological systems, water stress in plants, the relationship between soil and plants, the influence of soil physical properties on plant growth.

Modeling and simulation engineering courses cover the discussion of building a system of equations in the form of mathematical equations that are derived based on the basic laws that apply or occur in a system. The modeling approach is carried out with 2 approaches, namely the macroscopic approach and the microscopic approach. The results of a modeling process are generally in the form of differential equations or linear and non-linear equations. The results of the completion of the model are then simulated in a computer program. Model validation is an important part of comparing the simulation results with the results of experiments conducted under the same conditions. Prerequisite: TPE4148

Prerequisite: TPE4148

This course includes: Classification and function of tractors as a power source or source of mobile power for agricultural enterprises. Power forwarding system from the motor to each power outlet on the tractor, namely the hydraulic system, drawbar and power take off (PTO); Measurement and evaluation of tractor drawbar performance; traction mechanics; tractor stability; and couplings.

Prerequisite: TPE4242

TPE62061  Robotics in Bio-system Practicum  1

TPE4216 Pumps and Compressors 2

TPE4008 Drying and Cooling Techniques 2

TPE4227 Relationship of Soil, Water and

Plant 2

TPE4228 Modelling and Simulation

Technique 2

TPE4228  Modelling and Simulation Technique Practicum  1

TPE4242 Power in Agriculture 2 2

TPE62068  Power in Agriculture 2 Practicum  1

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Prerequisite: TPE4242

The bioenergy course aims to introduce several aspects of bioenergy. The material includes introduction and bioenergy material. The introduction consists of national energy demand and energy supply, energy planning methodology and human needs, information on energy planning needs, energy sources and future energy needs. Bioenergy material consists of energy from biomass sources, biomass benefits, energy from biomass by direct combustion, pyrolysis, alcohol fermentation, anaerobic digestion, biogas technology, family biogas planning, community and institutional biogas planning, biodiesel technology.

TPE4239 Bioenergy Engineering 2

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