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Articles 1 - 10 of 10
Full-Text Articles in Life Sciences
Curriculum Development Of Agricultural Educators In South Dakota, Mercedes Lemke
Curriculum Development Of Agricultural Educators In South Dakota, Mercedes Lemke
Electronic Theses and Dissertations
Curriculum development is an essential component of teaching. Understanding how agriculture education teachers utilize, develop, and adapt content to curriculum can benefit teachers to spend less time on curriculum development. Recognizing the way agriculture education teachers use content in curriculum implementation will allow curriculum developers to create materials that can effectively be used by teachers. This study also looked at the affects of how COVID19 pandemic affected the way teachers locate and develop curriculum. The purpose of this study was to evaluate the way agriculture education instructor’s usage of content for curriculum development, implementation decisions and the affects of the …
Small Gas Engines Interactive Notebook, P. Troy White
Small Gas Engines Interactive Notebook, P. Troy White
STEM & Agricultural Education Curriculum Resources
A Small Gas Engines interactive notebook to help prepare students for the Briggs & Stratton Master Service Technician Exam 1.
Teaching Natural And Artificial Selection In Production Agriculture, Madhav P. Nepal, Clayton W. Scott
Teaching Natural And Artificial Selection In Production Agriculture, Madhav P. Nepal, Clayton W. Scott
iLEARN Teaching Resources
In this lesson, students will learn how natural selection and artificial selection impact both production agriculture and biological sciences. A natural selection is a mechanism that favors heritable traits that increase species survival and reproduction. Artificial selection is a selective breeding, where humans select for desirable traits in agricultural products.
Sustainable Agriculture Lesson For Middle School Classrooms, Sara Colombe, Madhav P. Nepal, Jennifer Mclaughlin, Matthew L. Miller, Larry B. Browning, P. Troy White
Sustainable Agriculture Lesson For Middle School Classrooms, Sara Colombe, Madhav P. Nepal, Jennifer Mclaughlin, Matthew L. Miller, Larry B. Browning, P. Troy White
iLEARN Teaching Resources
In this lesson, students will learn about sustainability, where farmers/agriculturists can meet the needs of food, fiber, and fuel for the growing population. Students learn about growing population, its growth rate, major food source, sustainability barrel, potential ripple effects of positive impacts as well as the food waste and its effects.
Using Drones For Precision Agriculture, Jiyul Chang, Madhav P. Nepal
Using Drones For Precision Agriculture, Jiyul Chang, Madhav P. Nepal
iLEARN Teaching Resources
In this teaching module, students will learn what Precision Agriculture is and how to apply drone into Precision Agriculture practices. To use data (images) taken by drone, students will learn the basic theory of Remote Sensing. Using images, students learn how to make NDVI (Normalized Difference Vegetation Index) maps and how to apply drone (remote sensing technique) in agriculture.
Using Publicly Available Genbank Data To Teach Plant Phylogeny In High School Classrooms, Madhav P. Nepal, Ethan J. Andersen
Using Publicly Available Genbank Data To Teach Plant Phylogeny In High School Classrooms, Madhav P. Nepal, Ethan J. Andersen
iLEARN Teaching Resources
In this teaching module, students will learn about NCBI GenBank, search for DNA/protein sequences from multiple plant species of a gene that encodes Rubisco enzyme, construct and interpret a phylogenetic tree, and discuss traits that allowed plants to adapt their life on land.
Understanding Greenhouse Gases, Julie M. Mueller, Laura Edwards, Madhav P. Nepal, Larry B. Browning, Matthew L. Miller, P. Troy White
Understanding Greenhouse Gases, Julie M. Mueller, Laura Edwards, Madhav P. Nepal, Larry B. Browning, Matthew L. Miller, P. Troy White
iLEARN Teaching Resources
Students will conduct hands-on experiments to see how greenhouse gases interact with the Earth’s atmosphere and how greenhouse gases affect temperature. This lesson introduces National Geographic’s Geo-Inquiry Process, where students will identify a Geo-inquiry question, collect data, and create a project around the answer to their question. Students will then present their findings to their peers and evaluate their Geo-Inquiry process.
Climate Change Within A Biome, Tyone Kruse, Lisa Forcier, Madhav P. Nepal, Larry B. Browning, Matthew L. Miller, P. Troy White
Climate Change Within A Biome, Tyone Kruse, Lisa Forcier, Madhav P. Nepal, Larry B. Browning, Matthew L. Miller, P. Troy White
iLEARN Teaching Resources
In this iLEARN lesson, students will investigate impacts of climate change on the native plants and animals, as well as the fisheries, agriculture, and forestry, within a biome of their choosing, and then develop and refine a solution for one of the impacts resulting from the climate change.
Parliamentary Procedure Interactive Notebook, Amie Carter, P. Troy White, Laura Hasselquist, Madhav Nepal
Parliamentary Procedure Interactive Notebook, Amie Carter, P. Troy White, Laura Hasselquist, Madhav Nepal
STEM & Agricultural Education Curriculum Resources
These resources were developed as an undergraduate student research experience. During the summer and fall of 2018, the Agricultural Education faculty in the Department of Teaching, Learning & Leadership recruited teachers and students to pilot and suggest revisions to these resources and to report their effectiveness in promoting engagement and learning of Parliamentary Procedure.
This item contains three downloadable files. Student and teacher notebooks are designed to be printed on 8.5"x14" pages in booklet format. The cutouts are on standards letter size paper.
Introduction To Integrated Crop-Livestock Systems, P. Troy White
Introduction To Integrated Crop-Livestock Systems, P. Troy White
STEM & Agricultural Education Curriculum Resources
This presentation is an introductory lesson on integration of crop-livestock systems in the United States. The lesson includes national Agriculture, Food, and Natural Resources Standards, objectives, and a student project. This lesson is intended to be inquiry-based, and as such only foundational information is presented. Students are expected to take the introductory information and fins specific information needed to sold the problem posed at the beginning of the presentation. It is expected that at a minimum this lesson will take three 50-minute class periods and could take longer based on teacher preferences.