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- Demario Brodrick | Forsee Fund
Demario Brodrick Passionate Engineering Student, Tuskegee University Demario is an engineering student attending Tuskegee University and is passionate about Mechanical Engineering. Demario has done multiple designs for devices. One such design is a machine to generate the young's modulus of material using impact testing. Mr. Broderick also assisted with the automation of the machine to promote high efficiency and utilized the software solid works to create a 3D model of the machine. FOLLOW
- Image Gallery | Forsee Fund
A Visual Story Journey With Forsee Go to link 1/2
- Fire Retardant Research | Forsee Fund
A research initiative is currently underway at Auburn University to explore innovative techniques for preserving lush, eco-friendly lawns that are drought-resistant and fire-resistant. If successful, this breakthrough would revolutionize landscaping practices Fire Retardant Research Fires can be a mile or more from your home, but in a minute or two, it can be at your home. Airborne burning materials can light fires a great distance away from the main body of fire. Forsee's research goal is to innovate fire-resistant material and to increase the resistance to heat to materials and plastics. Fire-resistant materials can slow fires and render more time for evacuations. Forsee LLC is excited to innovate a new line of fire-retardant products. Products range from processed Bio Based Organic Fiber mats, pellets, and powder. Our team has been working hard to develop products that can better improve the safety in communities in the event of a fire. Our products are made with innovative science and are designed to provide superior protection against flames and heat. We believe our research into heat defensive products will come onto the market, and we are confident they will meet society's needs! Explore our website to learn more about our research and how it can help improve safety in the event of a fire. Bio-Based Recyclable Polymers: Forsee Shingle testing with 3150°F Blowtorch Thermo-Plastic Polyurethane vs Thermo-Plastic Polyurethane Treated and Reinforced with Forsee Products Watch this comparison video of Thermoplastic Polyurethane and Thermoplastic Polyurethane treated with Forsee's technology. (Blowtorch temperatures 1,300 C (2,400 F, air). Recommended Videos Watch More Videos
- Zipporah Sowell | Forsee Fund
Zipporah Sowell Motivated Agriculture Student, Tuskegee University Zipporah Sowell is a sophomore Plant & Soil Science student at Tuskegee University. She has a variety of experience in the field, ranging from her work in plant identification to internships through the Carver Integrative Sustainability Center and the United States Department of Agriculture. She is a motivated agriculture student eager to advance her knowledge in botany and natural resource conservation. Her natural leadership skills and impeccable work ethic will be an asset to the Forsee LLC team as the company anticipates receiving the Black Ambition Prize . Follow
- Donate | Forsee Fund
Make a difference in helping save the earth from climate issues. Thank you for your interest in supporting Forsee's research on water conservation and fire prevention. By funding Forsee Fire-Resistant and Water-Conserving products, you can actively contribute to the prevention of fires that devastate homes and businesses. Your generous donations are greatly appreciated and will make a significant impact. Donate Now
- Contact | Forsee Fund
GET IN TOUCH We'd love to hear from you. Leave us a message and we'll be in touch shortly. Send Your message was sent successfully! Call: 1-334-799-4310
- Water Conservation Research | Forsee Fund
Explore the innovative water-conservative Afro hair product by Forsee, leading the way in water conservation research. Discover how sustainable practices are integrated into hair care. Join us in the mission for a greener future! Water Conservation Forsee team of agriculturists, engineers, and environmental scientists are changing the face of irrigation. A research initiative is currently underway at Auburn University to explore innovative techniques for preserving lush, eco-friendly lawns that are drought and fire-resistant. If successful, this breakthrough will revolutionize landscaping practices for both homeowners and businesses, ensuring a healthier, more sustainable approach to sod, turf, and lawn care. Click to enlarge image Forsee's Patented Research seeks to irrigate underground instead of above ground. Decreasing moisture evaporation and usage. Auburn Anti-leaching Project Forsee alongside Auburn University Research Facility is discovering that the use of organic polymers, a class of materials derived from natural substances, has shown great potential in preventing leaching, a process in which substances dissolve and escape from a solid material. In agriculture , leaching is the loss of water-soluble plant nutrients from the soil , due to rain and irrigation . Leaching is a natural environmental concern when it contributes to groundwater contamination . As water from rain, flooding , or other sources seeps into the ground, it can dissolve chemicals and carry them into the underground water supply. By leveraging the unique properties of Forsee's organic polymer solution, Forsee aim to develop innovative solutions that can effectively mitigate leaching and minimize its environmental impact. The plot shown on the far right is without Forsee product. Traditional sod (far left) and Forsee Sod (3 plots on the right) Discover More Discover a captivating collection of videos showcasing the innovation of Forsee products in nourishing and safeguarding turf, crops, and lawns against various hazards. Prepare to be enlightened! fire while promoting effective water conservation.




