Open Access. Powered by Scholars. Published by Universities.®
- Discipline
- Keyword
-
- Agricultural Education (4)
- Middle School STEM (4)
- Urban Gardening (4)
- Crop Yield (2)
- Agronomic STEM (1)
-
- Climate (1)
- Earth Science (1)
- Engineering (1)
- Epigentic Variation (1)
- Genetic Engineering (1)
- Genotypes (1)
- Mathematical Modeling (1)
- Natural Resources (1)
- Phenotypes (1)
- Plant Biology (1)
- Plant Growth (1)
- Plant Life Cycle (1)
- Punnett Squares (1)
- Selective Breeding (1)
- Soil Composition (1)
- Soil Fertility (1)
- Soil Nutrients (1)
- Soil Porosity (1)
- Soil Testing (1)
- Soil Texture (1)
- Water Resources (1)
- Water Table (1)
- Weather (1)
- Publication
- Publication Type
Articles 1 - 7 of 7
Full-Text Articles in Agricultural Education
Sustainable Living At Imsa, Vignesh Tiruvannamalai, Zuyu Liu
Sustainable Living At Imsa, Vignesh Tiruvannamalai, Zuyu Liu
Goal 4: Intrapersonal Intelligence Narrative
Students will collect any recyclable materials they have discarded to create wing decorations in conjunction with everyone in the wing and learn about sustainability, including statistics and lifestyle guidance.
Water Management, Imsa Fusion
Water Management, Imsa Fusion
An Epidemiological Approach to Addressing Food Insecurity
Objectives:
- Develop a technique to measure the porosity of soil.
- Explain how a high water table can reduce crop yields.
- Design and test a drainage tiling system.
Row Spacing Models, Imsa Fusion
Row Spacing Models, Imsa Fusion
An Epidemiological Approach to Addressing Food Insecurity
Objectives:
- Identify multiple row spacing models used by soybean farmers and determine how these planting arrangements impact crop yield.
- Explore how row spacing influences the amount of access that a plant has to the natural resources it needs to grow.
- Recommend a row spacing model that considers overall yield, economic efficiency, and potential environmental threats for a hypothetical farmer.
Soil Science, Imsa Fusion
Soil Science, Imsa Fusion
An Epidemiological Approach to Addressing Food Insecurity
Objectives:
- Understand that soil is composed of inorganic and organic solid material, water, and air.·Investigate the properties of the inorganic solid components of soil: sand, silt, and clay.
- Recognize that varying proportions of sand, silt, and clay in a soil impact the soil’s ability to hold and transmit water. Experimentally determine the soil texture of a local soil sample.
- Determine the chemical composition of a local soil sample for pH, nitrate, phosphorus, and potassium levels.
- Analyze a given soil’s ability to support crops such as corn, soybeans, wheat, and oats.
- Provide recommendations for amending a given soil to support the …
Biological Variation, Imsa Fusion
Biological Variation, Imsa Fusion
An Epidemiological Approach to Addressing Food Insecurity
Objectives:
- Identify different phenotypes of corn (maize) kernels.
- Use ratios and sampling to determine which of two different ears of corn is most likely to have produced a given sample of kernels.
- Use Punnett Squares to determine the genotypes of the “parents” that produced the different kernel samples.
- Compare and contrast traditional selective breeding techniques with genetically engineering a desired trait in corn.
- Model the regulation of gene expression in a hypothetical cell.
- Discuss the potential role that epigentic variation may play in improving corn crops of the future.
Smart Vertical Farm System (Svfs), Sarasit Sirawattanakul
Smart Vertical Farm System (Svfs), Sarasit Sirawattanakul
The International Student Science Fair 2018
The unremitting trends of increasing population, urbanization, diminishing water supply, and continuing climate change have contributed to declining stocks of arable land per person. Land available for farming is shrinking, and the demand for food is growing. All of these lead to food insecurity. For the first version of Smart Vertical Farm System is designed to increase food productions by an automatic system. It built with shelves which support soil and hydroponic system, stacked vertically. The system first shovels the soil in the tray and sews the seeds. There is also additional watering system. The hydroponic parts are on the …
Smart Vertical Farm System (Svfs), Sarasit Sirawattanakul
Smart Vertical Farm System (Svfs), Sarasit Sirawattanakul
The International Student Science Fair 2018
The unremitting trends of increasing population, urbanization, diminishing water supply, and continuing climate change have contributed to declining stocks of arable land per person. Land available for farming is shrinking, and the demand for food is growing. All of these lead to food insecurity. For the first version of Smart Vertical Farm System is designed to increase food productions by an automatic system. It built with shelves which support soil and hydroponic system, stacked vertically. The system first shovels the soil in the tray and sews the seeds. There is also additional watering system. The hydroponic parts are on the …