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TR

OPEN FIELD VEGETABLE PRODUCTION

Course
PSCT304 - OPEN FIELD VEGETABLE PRODUCTION
Department
Plant Production and Technology - English - Undergraduate
Course Type
Course
Status
Required
Language
English
Credit
3
ECTS
5
T+P+L
2 + 0 + 2
Course Coordinator(s)
-
Prerequisite
-
Keywords

Course Description

The aim of the course is to introduce students to a wide range of warm and cool season vegetable crops such as tomato, cucumber, pepper and broccoli, cabbage, carrot, cauliflower, coriander, celery, lettuce, onion, garlic, pea, radish, spinach and their production methods. The course will allow students to apply basic vegetable growing principles to optimize plant responses to environmental and nutritional conditions. In this scope, Solanacae, Cucurbitaceae, Cruciferae, Leguminosae, Alliaceae, Compositae, Chenopodiaceae, Umbelliflorae, Portulacae will be contained. As outcomes of this course, students will be learned to explain the origins, systematics, biological, agronomic, ecological and physiyological characteristics of vegetable species, gain the growing ability of different vegetable species, ability to establish different vegetable species plantation, maintaining the activities, solve the problems.

OPEN FIELD VEGETABLE PRODUCTION

Evaluation Tools (Active Term)

No evaluation items have been defined.

Course outcomes

  1. 01 After completing this course the students will be able to:
  2. 02 Explain (3) the origins, systematics, biological, agronomic, ecological and physiyological characteristics of vegetable species
  3. 03 Implement (4) the growing ability of different vegetable species
  4. 04 Construct (4) different vegetable species plantation
  5. 05 Observe (4) growing of vegetables
  6. 06 Solve (3) problems interested in production
  7. 07 SOLO AVERAGE: 3.60

Course Syllabus

Week Topic
Week 1 Solanaceae Family
Week 2 Solanaceae Family
Week 3 Cucurbitaceae Family
Week 4 Cucurbitaceae Family
Week 5 Cruciferae(Brassicaceae )Family
Week 6 Cruciferae Family
Week 7 Leguminaceae Family
Week 8 MIDTERM EXAM
Week 9 Leguminaceae Family
Week 10 Alliaceae Family
Week 11 Compositae Family
Week 12 Chenopodiaceae Family
Week 13 Umbelliflorae Family
Week 14 Portulecaceae Family
Week 15 Portucaceae Family

Reference Books & Course Materials

  1. 01 Vegetable Production Training manual, AVRDC, 1990, Taiwan
  2. 02 Vegetable Crops, Dennis R. Decoteeau, 2000, Practice-Hall International Ltd., London
  3. 03 Principle of Vegetable Crop Production, William Collins Sons.1985, 250p.
  4. 04 Vegetable Production and Practised, Gregory E. Welbaum, 2015, 486p.USA

Learning Outcomes

  1. L01 After completing this course the students will be able to:
  2. L02 Explain (3) the origins, systematics, biological, agronomic, ecological and physiyological characteristics of vegetable species SOLO 3
  3. L03 Implement (4) the growing ability of different vegetable species SOLO 4
  4. L04 Construct (4) different vegetable species plantation SOLO 4
  5. L05 Observe (4) growing of vegetables SOLO 0
  6. L06 Solve (3) problems interested in production SOLO 3
  7. L07 SOLO AVERAGE: 3.60

Program Outcomes

  1. P01 Knowledge of mathematics, natural sciences, basic engineering, computer-based computation, and topics specific to the relevant engineering discipline.
  2. P02 Ability to apply knowledge of mathematics, natural sciences, basic engineering, computer-based computation, and topics specific to the relevant engineering discipline to the solution of complex engineering problems.
  3. P03 Ability to define complex engineering problems by using knowledge of basic sciences, mathematics, and engineering, while considering the relevant United Nations Sustainable Development Goals (SDGs) related to the problem addressed.
  4. P04 Ability to formulate complex engineering problems using knowledge of basic sciences, mathematics, and engineering, while considering the relevant United Nations Sustainable Development Goals (SDGs) associated with the problem addressed.
  5. P05 Ability to analyse and solve complex engineering problems using knowledge of basic sciences, mathematics, and engineering, while considering the relevant United Nations Sustainable Development Goals (SDGs) associated with the problem addressed.
  6. P06 Ability to design creative solutions to complex engineering problems.
  7. P07 Ability to design complex systems, processes, devices, or products in a way that meets present and future needs while considering realistic constraints and conditions.
  8. P08 Ability to select and use appropriate techniques and resources—including estimation and modelling—for the analysis and solution of complex engineering problems, while being aware of their limitations.
  9. P09 Ability to select and use modern engineering and computational tools—including estimation and modelling—for the analysis and solution of complex engineering problems, while being aware of their limitations.
  10. P10 Ability to conduct literature research and use appropriate research methods for the investigation of complex engineering problems.
  11. P11 Ability to design experiments for the investigation of complex engineering problems.
  12. P12 Ability to conduct experiments, collect data, analyse results, and interpret findings for the investigation of complex engineering problems.
  13. P13 Knowledge of the impacts of engineering practices on society, health and safety, the economy, sustainability, and the environment within the framework of the United Nations Sustainable Development Goals (SDGs).
  14. P14 Awareness of the legal implications of engineering solutions within the framework of the United Nations Sustainable Development Goals (SDGs).
  15. P15 Knowledge of ethical responsibility and adherence to the principles of professional engineering conduct.
  16. P16 Awareness of acting impartially without discrimination in any matter and of being inclusive of diversity.
  17. P17 Ability to work effectively as an individual.
  18. P18 Ability to work effectively as a team member or leader in intra-disciplinary teams (face-to-face, remote, or hybrid).
  19. P19 Ability to work effectively as a team member or leader in multidisciplinary teams (face-to-face, remote, or hybrid).
  20. P20 Ability to communicate effectively in spoken form on technical matters, taking into account the diverse characteristics of the target audience (such as education, language, and profession).
  21. P21 Ability to communicate effectively in written form on technical matters, taking into account the diverse characteristics of the target audience (such as education, language, and profession).
  22. P22 Knowledge of professional practices such as project management and economic feasibility analysis.
  23. P23 Awareness of entrepreneurship and innovation.
  24. P24 Ability for independent and lifelong learning.
  25. P25 Ability to adapt to new and emerging technologies.
  26. P26 Lifelong learning ability that includes the capacity to think critically about technological changes.

Po-Lo Matrix

LO P01 P02 P03 P04 P05 P06 P07 P08 P09 P10 P11 P12 P13 P14 P15 P16 P17 P18 P19 P20 P21 P22 P23 P24 P25 P26 Average
L01 - - - - - - - - - - - - - - - - - - - - - - - - - - -
L02 - - - - - - - - - - - - - - - - - - - - - - - - - - -
L03 - - - - - - - - - - - - - - - - - - - - - - - - - - -
L04 - - - - - - - - - - - - - - - - - - - - - - - - - - -
L05 - - - - - - - - - - - - - - - - - - - - - - - - - - -
L06 - - - - - - - - - - - - - - - - - - - - - - - - - - -
L07 - - - - - - - - - - - - - - - - - - - - - - - - - - -