Plant GrowthLaajuus (5 cr)
Code: 9A00DC08
Objective
The student is able to explain the main factors of plant growth as well as the role of plants in carbon sequestration. The student can also describe basic anatomic, organologic and physiological concepts of plants.
The student is able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage. The student is able to determine the key factors affecting the machine's work efficiency.
Content
Plant Morphology; plant-based structures and their functions.
Plant Anatomy; a plant cell and tissues.
Plant Physiology; photosynthesis, water and plant nutrients.
Principles and objectives as well as machinery of seeding, tillage and fertilization
Assessment criteria, satisfactory (1)
Students are able to study the basics of the period. The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the role of plants in carbon sequestration. They mainly know the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, good (3)
Students are able to study course things well. ,
The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration
Students know well the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, excellent (5)
Students are able to course things well and know how to apply them in practice.
The student is able to explain the plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration.
They are able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Materials
Heinonen et al. (eds.). Maa, viljely ja ympäristö (appl. parts). WSOY.
Pankakoski 1997. Puutarhurin kasvioppi tai
Fagerstedt ym. 2008. Kasvioppi, siemenestä satoon
Tiainen ym. 2005. Maatilatalouden teknologia
Enrollment
22.04.2024 - 04.09.2024
Timing
21.10.2024 - 18.12.2024
Credits
5 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Natural Resources, Agriculture and Rural Enterprises
Teachers
- Anu Latva-Reinikka
- Anna Tall
- Jori Lahti
Student groups
-
AGRO24Bachelor of Natural Resources, Agriculture and Rural Enterprises
Objective
The student is able to explain the main factors of plant growth as well as the role of plants in carbon sequestration. The student can also describe basic anatomic, organologic and physiological concepts of plants.
The student is able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage. The student is able to determine the key factors affecting the machine's work efficiency.
Content
Plant Morphology; plant-based structures and their functions.
Plant Anatomy; a plant cell and tissues.
Plant Physiology; photosynthesis, water and plant nutrients.
Principles and objectives as well as machinery of seeding, tillage and fertilization
Materials
Material in moodle and
- Heinonen et al. (eds.). Maa, viljely ja ympäristö (appl. parts). WSOY.
Biology:Part 1. Material in Moodle
Pankakoski 1997. Puutarhurin kasvioppi or
Fagerstedt ym. 2008. Kasvioppi, siemenestä satoon
Drainage: Material in moodle and
Heinonen (toim.) Maa, viljely ja ympäristö, Luku 3 Vesitalous WSOY
Saavalainen (toim.) 1981. Salaojittajan käsikirja, osa 1a. Suomen olosuhteet kuivatusta silmällä pitäen. Salaojituksenkannatusyhdistys
Elomaa ym. 1988. Sää ja maatalous. Maaseutukeskusten liitto.
Pajula ja Triipponen (toim.) Selvitys Suomen kastelutilanteesta. Suomen ympäristö 629.
Saatavuus: http://tiny.cc/t73ikx
(tai Sadetusopas 1979 Maatalouskeskusten liitto.)
Saatavuus: http://tiny.cc/n13ikx
Pajula ja Järvenpää (toim.), 2007 Maankuivatuksen ja kastelun suunnittelu. Suomen ympäristökeskuksen raportteja 23/2007, 187 s. Julkaisu on saatavana vain verkkojulkaisuna.
Saatavuus: https://helda.helsinki.fi/bitstream/handle/10138/39840/SYKEra_23_2007.pdf sequence=1
Peltomaa 1999. Salaojien kunnossapito-opas (myös verkko-julkaisu), Salaojakeskus, Salaojituksen tukisäätiö ja Tekninen korkeakoulu.
Saatavuus: http://tiny.cc/m93ikx
Maan vesi ja ravinnetalous. Ojitus, kastelu ympäristö. (soveltuvin osin).
Saatavuus: http://tiny.cc/6c4ikx
Teaching methods
Lectures: 50 %, practicals 20 %, Assignments and independent study: 30 % which are associated with the course contents and information students have acquired on a given topic, practical problem-solving, and an exam.
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Students are able to study the basics of the period. The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the role of plants in carbon sequestration. They mainly know the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, good (3)
Students are able to study course things well. ,
The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration
Students know well the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, excellent (5)
Students are able to course things well and know how to apply them in practice.
The student is able to explain the plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration.
They are able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Enrollment
22.04.2024 - 04.09.2024
Timing
26.08.2024 - 18.12.2024
Credits
5 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Natural Resources, Agriculture and Rural Enterprises
Teachers
- Anu Latva-Reinikka
- Anna Tall
- Jori Lahti
Scheduling groups
- Avoin AMK (Ei koske tutkinto-opiskelijaa) (Size: 50. Open UAS: 50.)
Student groups
-
MAGRO24Bachelor of Natural Resources
Education groups
- Open UAS (Doesn't apply to degree student)
Objective
The student is able to explain the main factors of plant growth as well as the role of plants in carbon sequestration. The student can also describe basic anatomic, organologic and physiological concepts of plants.
The student is able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage. The student is able to determine the key factors affecting the machine's work efficiency.
Content
Plant Morphology; plant-based structures and their functions.
Plant Anatomy; a plant cell and tissues.
Plant Physiology; photosynthesis, water and plant nutrients.
Principles and objectives as well as machinery of seeding, tillage and fertilization
Materials
Material in moodle and
- Heinonen et al. (eds.). Maa, viljely ja ympäristö (appl. parts). WSOY.
Biology:Part 1. Material in Moodle
Pankakoski 1997. Puutarhurin kasvioppi or
Fagerstedt ym. 2008. Kasvioppi, siemenestä satoon
Drainage: Material in moodle and
Heinonen (toim.) Maa, viljely ja ympäristö, Luku 3 Vesitalous WSOY
Saavalainen (toim.) 1981. Salaojittajan käsikirja, osa 1a. Suomen olosuhteet kuivatusta silmällä pitäen. Salaojituksenkannatusyhdistys
Elomaa ym. 1988. Sää ja maatalous. Maaseutukeskusten liitto.
Pajula ja Triipponen (toim.) Selvitys Suomen kastelutilanteesta. Suomen ympäristö 629.
Saatavuus: http://tiny.cc/t73ikx
(tai Sadetusopas 1979 Maatalouskeskusten liitto.)
Saatavuus: http://tiny.cc/n13ikx
Pajula ja Järvenpää (toim.), 2007 Maankuivatuksen ja kastelun suunnittelu. Suomen ympäristökeskuksen raportteja 23/2007, 187 s. Julkaisu on saatavana vain verkkojulkaisuna.
Saatavuus: https://helda.helsinki.fi/bitstream/handle/10138/39840/SYKEra_23_2007.pdf sequence=1
Peltomaa 1999. Salaojien kunnossapito-opas (myös verkko-julkaisu), Salaojakeskus, Salaojituksen tukisäätiö ja Tekninen korkeakoulu.
Saatavuus: http://tiny.cc/m93ikx
Maan vesi ja ravinnetalous. Ojitus, kastelu ympäristö. (soveltuvin osin).
Saatavuus: http://tiny.cc/6c4ikx
Teaching methods
Lectures: 50 %, practicals 20 %, Assignments and independent study: 30 % which are associated with the course contents and information students have acquired on a given topic, practical problem-solving, and an exam.
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Students are able to study the basics of the period. The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the role of plants in carbon sequestration. They mainly know the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, good (3)
Students are able to study course things well. ,
The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration
Students know well the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, excellent (5)
Students are able to course things well and know how to apply them in practice.
The student is able to explain the plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration.
They are able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Enrollment
17.04.2023 - 11.10.2023
Timing
23.10.2023 - 17.12.2023
Credits
5 op
Virtual proportion (cr)
1 op
Teaching languages
- Finnish
Seats
1 - 60
Degree programmes
- Bachelor of Natural Resources, Agriculture and Rural Enterprises
Teachers
- Anu Latva-Reinikka
- Anna Tall
- Jori Lahti
Scheduling groups
- Pienryhmä 1 (Size: 20. Open UAS: 0.)
- Pienryhmä 2 (Size: 20. Open UAS: 0.)
Student groups
-
AGRO23Bachelor of Natural Resources, Agriculture and Rural Enterprises
-
AGRO23ABachelor of Natural Resources, Agriculture and Rural Enterprises
-
AGRO23BBachelor of Natural Resources, Agriculture and Rural Enterprises
Education groups
- Small group 1
- Small group 2
Objective
The student is able to explain the main factors of plant growth as well as the role of plants in carbon sequestration. The student can also describe basic anatomic, organologic and physiological concepts of plants.
The student is able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage. The student is able to determine the key factors affecting the machine's work efficiency.
Content
Plant Morphology; plant-based structures and their functions.
Plant Anatomy; a plant cell and tissues.
Plant Physiology; photosynthesis, water and plant nutrients.
Principles and objectives as well as machinery of seeding, tillage and fertilization
Materials
Material in moodle and
- Heinonen et al. (eds.). Maa, viljely ja ympäristö (appl. parts). WSOY.
Biology:Part 1. Material in Moodle
Pankakoski 1997. Puutarhurin kasvioppi or
Fagerstedt ym. 2008. Kasvioppi, siemenestä satoon
Drainage: Material in moodle and
Heinonen (toim.) Maa, viljely ja ympäristö, Luku 3 Vesitalous WSOY
Saavalainen (toim.) 1981. Salaojittajan käsikirja, osa 1a. Suomen olosuhteet kuivatusta silmällä pitäen. Salaojituksenkannatusyhdistys
Elomaa ym. 1988. Sää ja maatalous. Maaseutukeskusten liitto.
Pajula ja Triipponen (toim.) Selvitys Suomen kastelutilanteesta. Suomen ympäristö 629.
Saatavuus: http://tiny.cc/t73ikx
(tai Sadetusopas 1979 Maatalouskeskusten liitto.)
Saatavuus: http://tiny.cc/n13ikx
Pajula ja Järvenpää (toim.), 2007 Maankuivatuksen ja kastelun suunnittelu. Suomen ympäristökeskuksen raportteja 23/2007, 187 s. Julkaisu on saatavana vain verkkojulkaisuna.
Saatavuus: https://helda.helsinki.fi/bitstream/handle/10138/39840/SYKEra_23_2007.pdf sequence=1
Peltomaa 1999. Salaojien kunnossapito-opas (myös verkko-julkaisu), Salaojakeskus, Salaojituksen tukisäätiö ja Tekninen korkeakoulu.
Saatavuus: http://tiny.cc/m93ikx
Maan vesi ja ravinnetalous. Ojitus, kastelu ympäristö. (soveltuvin osin).
Saatavuus: http://tiny.cc/6c4ikx
Teaching methods
Lectures: 50 %, practicals 20 %, Assignments and independent study: 30 % which are associated with the course contents and information students have acquired on a given topic, practical problem-solving, and an exam.
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Students are able to study the basics of the period. The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the role of plants in carbon sequestration. They mainly know the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, good (3)
Students are able to study course things well. ,
The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration
Students know well the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, excellent (5)
Students are able to course things well and know how to apply them in practice.
The student is able to explain the plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration.
They are able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Enrollment
17.04.2023 - 06.09.2023
Timing
04.09.2023 - 17.12.2023
Credits
5 op
Virtual proportion (cr)
2 op
Teaching languages
- Finnish
Seats
1 - 30
Degree programmes
- Bachelor of Natural Resources, Agriculture and Rural Enterprises
Teachers
- Anu Latva-Reinikka
- Anna Tall
- Jori Lahti
Student groups
-
MAGRO23Bachelor of Natural Resources
Objective
The student is able to explain the main factors of plant growth as well as the role of plants in carbon sequestration. The student can also describe basic anatomic, organologic and physiological concepts of plants.
The student is able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage. The student is able to determine the key factors affecting the machine's work efficiency.
Content
Plant Morphology; plant-based structures and their functions.
Plant Anatomy; a plant cell and tissues.
Plant Physiology; photosynthesis, water and plant nutrients.
Principles and objectives as well as machinery of seeding, tillage and fertilization
Materials
Material in moodle and
- Heinonen et al. (eds.). Maa, viljely ja ympäristö (appl. parts). WSOY.
Biology:Part 1. Material in Moodle
Pankakoski 1997. Puutarhurin kasvioppi or
Fagerstedt ym. 2008. Kasvioppi, siemenestä satoon
Drainage: Material in moodle and
Heinonen (toim.) Maa, viljely ja ympäristö, Luku 3 Vesitalous WSOY
Saavalainen (toim.) 1981. Salaojittajan käsikirja, osa 1a. Suomen olosuhteet kuivatusta silmällä pitäen. Salaojituksenkannatusyhdistys
Elomaa ym. 1988. Sää ja maatalous. Maaseutukeskusten liitto.
Pajula ja Triipponen (toim.) Selvitys Suomen kastelutilanteesta. Suomen ympäristö 629.
Saatavuus: http://tiny.cc/t73ikx
(tai Sadetusopas 1979 Maatalouskeskusten liitto.)
Saatavuus: http://tiny.cc/n13ikx
Pajula ja Järvenpää (toim.), 2007 Maankuivatuksen ja kastelun suunnittelu. Suomen ympäristökeskuksen raportteja 23/2007, 187 s. Julkaisu on saatavana vain verkkojulkaisuna.
Saatavuus: https://helda.helsinki.fi/bitstream/handle/10138/39840/SYKEra_23_2007.pdf sequence=1
Peltomaa 1999. Salaojien kunnossapito-opas (myös verkko-julkaisu), Salaojakeskus, Salaojituksen tukisäätiö ja Tekninen korkeakoulu.
Saatavuus: http://tiny.cc/m93ikx
Maan vesi ja ravinnetalous. Ojitus, kastelu ympäristö. (soveltuvin osin).
Saatavuus: http://tiny.cc/6c4ikx
Teaching methods
Lectures: 50 %, practicals 20 %, Assignments and independent study: 30 % which are associated with the course contents and information students have acquired on a given topic, practical problem-solving, and an exam.
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Students are able to study the basics of the period. The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the role of plants in carbon sequestration. They mainly know the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, good (3)
Students are able to study course things well. ,
The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration
Students know well the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, excellent (5)
Students are able to course things well and know how to apply them in practice.
The student is able to explain the plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration.
They are able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Enrollment
16.04.2022 - 12.10.2023
Timing
24.10.2022 - 31.12.2022
Credits
5 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Natural Resources, Agriculture and Rural Enterprises
Teachers
- Anu Latva-Reinikka
- Anna Tall
- Jori Lahti
Student groups
-
AGRO22A
Objective
The student is able to explain the main factors of plant growth as well as the role of plants in carbon sequestration. The student can also describe basic anatomic, organologic and physiological concepts of plants.
The student is able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage. The student is able to determine the key factors affecting the machine's work efficiency.
Content
Plant Morphology; plant-based structures and their functions.
Plant Anatomy; a plant cell and tissues.
Plant Physiology; photosynthesis, water and plant nutrients.
Principles and objectives as well as machinery of seeding, tillage and fertilization
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Students are able to study the basics of the period. The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the role of plants in carbon sequestration. They mainly know the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, good (3)
Students are able to study course things well. ,
The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration
Students know well the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, excellent (5)
Students are able to course things well and know how to apply them in practice.
The student is able to explain the plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration.
They are able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Enrollment
16.04.2022 - 12.10.2023
Timing
24.10.2022 - 31.12.2022
Credits
5 op
Teaching languages
- Finnish
Degree programmes
- Bachelor of Natural Resources, Agriculture and Rural Enterprises
Teachers
- Anu Latva-Reinikka
- Anna Tall
- Jori Lahti
Student groups
-
AGRO22B
Objective
The student is able to explain the main factors of plant growth as well as the role of plants in carbon sequestration. The student can also describe basic anatomic, organologic and physiological concepts of plants.
The student is able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage. The student is able to determine the key factors affecting the machine's work efficiency.
Content
Plant Morphology; plant-based structures and their functions.
Plant Anatomy; a plant cell and tissues.
Plant Physiology; photosynthesis, water and plant nutrients.
Principles and objectives as well as machinery of seeding, tillage and fertilization
Evaluation scale
1-5
Assessment criteria, satisfactory (1)
Students are able to study the basics of the period. The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the role of plants in carbon sequestration. They mainly know the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, good (3)
Students are able to study course things well. ,
The student knows plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration
Students know well the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.
Assessment criteria, excellent (5)
Students are able to course things well and know how to apply them in practice.
The student is able to explain the plant factors such as plant growth, photosynthesis, water and nutrient uptake and reproduction. The student is able to explain the functioning of plants in carbon sequestration.
They are able to describe the structure and operation of machines and equipment used for seeding, fertilization and tillage, and are able to determine the key factors affecting the machine's work efficiency.