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One of the biggest issues facing producers today are the misconceptions surrounding some of the most fundamental practices of production, the use of sprayed pesticides, herbicides and fertilizers. Through the ubiquitous availability of news platforms, either through social media or through traditional internet sites, the average individual is being bombarded with information that comes from a flawed understanding of the basic principles of concentrations and appropriate application. Herbicides, such as glyphosate, are readily available for purchase in formulations for home use as well as commercial agricultural formulations. This lab will investigate the non-standardized formulations of at-home glyphosate products and application suggestions as opposed to the commercial agricultural products and practices. Special attention will be paid to the ideas of concentrations, dilutions, and application surface area for both types of application situations. Is the commercial consumer really using more than the at-home consumer when we do the math? We will also consider the question: what constitutes too much application?
Science • HS-LS2-6. Evaluate the claims, evidence, and reasoning that the complex interactions in ecosystems maintain relatively consistent number and types of organisms in stable conditions, but changing conditions may result in a new ecosystem. • HS-LS2-7. Design, evaluate, and refine a solution for reducing the impacts of human activities on the environment and biodiversity. • HS-LS2-1. Use mathematical and/or computational representations to support explanations of factors that affect carrying capacity of ecosystems at different scales. • HS-LS2-2. Use mathematical representations to support and revise explanations based on evidence about factors affecting biodiversity and populations in ecosystems of different scales. • HS-ETS1-1. Analyze a major global challenge to specific qualitative and quantitative criteria and constraints for solutions that account for societal needs and wants.
• Concentration PowerPoint • Student worksheets (pg. S1-2) • Scenario card (pg. T7) • Small plastic cups • Kool-Aid concentrate (ready mix- sugar added) • Kool-Aid concentrate (no sugar added) • Water • Scale • Plastic spoons
This lab looks specifically at manufacturer and U.S. Environmental Protection Agency recommended application rates of chemicals. No actual agricultural chemical is being utilized in the lab activity.
Length of Time for Preparation: 15 minutes Length of Time for Classroom Teaching: 30 minutes for demonstration and 30 minutes for calculations
All students have a background in creating solutions, if they have ever mixed a pitcher of lemonade, brewed tea, coffee, or even added in some flavoring to their water. When you use the word solution; however, it seems to make students feel intimidated by the vocabulary. The first activity is used to help students break through that barrier and look at solutions through their basic parts. The solute is a substance that is dissolved into another substance. The solvent is what does the dissolving. Sometimes it is helpful to think of salt water or Kool-Aid for students to understand the two different words. Salt and Kool-Aid are both solutes that can be dissolved into the solvent of the water. The result is a solution of salt water or Kool-Aid, respectively.
Many of the chemicals that are applied to the field during the life cycle of a single crop are found in solution form. Some of the solutions are very highly concentrated, meaning that there is a higher amount of solute that has been dissolved into the solution. Most of these concentrated solutions must then be diluted by adding additional solvents (often water) to decrease the concentrations of the solution before application. Manufacturers are required to provide specific mixing instructions so that consumers can properly create a safe solution for their own use whether at home or in commercial areas.
Glyphosate is one of the most controversial chemicals used in the agricultural world today. With much information floating through that is either simply not factual or biased, it is important to provide students with a complete understanding of how solutions of chemicals, such as glyphosate, are regulated in commercial application but are not regulated for home-use consumers.
A Kool-Aid demonstration
Ask students if they have every prepared a solution before.
Brainstorming
Create a list of where we would see solutions being prepared or used in the agricultural world. Challenge students to work together in small groups to come up with at least 10 different applications of solutions in agriculture. As students finish up, you can compile a class list. Transition by telling students them that today they are going to be talking about solutions that are used as chemical sprays for herbicides.
As you watch, focus students’ attention on how the solutions are mixed in the spraying tank but also on how the applicator is precisely applying the spray so that there is a control on how much spray is being used in one area.
Compare and Contrast
Home Use vs. Commercial Use
Using the scenario card provided, have students work through exactly how much of the active ingredient (solute), in this case glyphosate, is being sprayed per square foot of land for each scenario.
Teachers Tips
Teacher Resources
In a world where we are constantly trying to sustainably grow more crops on less land to support our growing world population, chemical application will remain an important tool for farmers to protect against damaging weeds and pests. Careers that are linked to this content could include chemical application specialists, agronomist, sales agents, lab technicians related to research and development, and, most importantly, farmers themselves.
To learn more about agriculture careers, visit https://agexplorer.ffa.org/.
Any educator electing to perform demonstrations is expected to follow NSTA Minimum Safety Practices and Regulations for Demonstrations, Experiments, and Workshops, which are available at https://static.nsta.org/pdfs/MinimumSafetyPracticesAndRegulations.pdf, as well as all school policies and rules and all state and federal laws, regulations, codes and professional standards. Educators are responsible for abiding appropriate legal standards and better professional practices under a duty of care to make laboratories and demonstrations in and out of the classroom as safe as possible. If in doubt, do not perform the demonstrations.
This lesson is the work product of the Kansas Corn Commission. Our lessons are written in collaboration with Kansas teachers for use in the classroom. Teachers may copy and share this curriculum. Use of this product for commercial or promotional use is prohibited without express permission of Kansas Corn.
As the need to produce more food with less resources grows, it is important that future generations have a better understanding of agriculture and how corn farming and agriculture fit into our daily lives. That’s why the Kansas Corn STEM program provides lessons to teach science through the lens of corn. We are committed to providing free materials and training to support educators.