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Stringing nettles are capable of doing nearly everything that hemp can do and usually better. They are a tasty edible that loses its sting when cooked for at least 30 seconds.

The willow feeder system is a sustainable and "freaky-cheap" method of managing human waste, developed by permaculture innovator Paul Wheaton as an alternative to traditional septic systems and sewage treatment plants. This innovative system transforms human waste into a nutrient-rich fertilizer, called "willow candy," through a process of mummification. Instead of composting the waste, as in composting toilets, the willow feeder system relies on a dry environment within sealed garbage cans to prevent decomposition and the survival of pathogens. A small amount of sawdust is added to the cans, primarily for aesthetics. After two years of aging, the "willow candy" becomes pathogen-free and can be safely used as fertilizer. This material, rich in carbon and nitrogen, is particularly beneficial for "poop beasts," a term used to describe trees like willow, cottonwood, poplar, and bamboo, which can tolerate and thrive on the high nutrient levels. By turning human waste into a valuable resource for growing these beneficial plants, the willow feeder system embodies the core principles of permaculture, promoting a closed-loop cycle that minimizes waste and environmental impact.

"HUSP," an acronym for "Horticulture of the United States of Pocahontas," is a term coined by Paul Wheaton to represent a hypothetical agricultural system practiced in a fictional nation called the United States of Pocahontas (USP). In this imagined scenario, Pocahontas emerges as a strategic leader, thwarting European colonization and leading to the formation of the USP. This fictional nation's agricultural practices are characterized by a deep respect for the Earth, rejecting environmentally harmful methods like plowing and the use of petroleum-based fertilizers and pesticides. Instead, they embrace sustainable techniques akin to permaculture and traditional Indigenous knowledge, leading to superior food production, enhanced public health, and a thriving "health tourism" industry. Wheaton utilizes HUSP as a thought experiment, inspiring innovation and pushing the boundaries of contemporary permaculture. He proposes a real-world project involving a 2,000-acre plot divided into smaller sections where practitioners of permaculture, biodynamic farming, and native plant cultivation can experiment and share knowledge, collectively striving to "rediscover" the principles of HUSP and advance sustainable agriculture. This project emphasizes the importance of collaboration and government non-interference to foster creative solutions for a future where food production harmonizes with nature.

WOFATI, an acronym coined by Paul Wheaton, stands for Woodland Oehler Freaky-cheap Annualized Thermal Inertia. It defines a type of earth-sheltered, passive building that blends affordability with energy efficiency. Inspired by the work of Mike Oehler, a pioneer of earth-sheltered building, WOFATI designs use locally sourced, natural materials, such as wood and earth, to minimize both cost and environmental impact. Central to the WOFATI concept is Annualized Thermal Inertia, which utilizes the surrounding earth as a thermal mass to moderate temperatures year-round. This means that the building stays warm in the winter by storing heat from the summer, and cool in the summer by retaining the coolness of the winter, greatly reducing the need for artificial heating and cooling. WOFATI structures typically have a large gable roof on the downhill side, and at least 35% of the uphill wall is made of glass or other light-transmitting material to maximize passive solar gain. WOFATI buildings are ideally situated on or near a woodland, emphasizing a harmonious integration with nature. Allerton Abbey, the first WOFATI, along with Wofati 0.8, are examples of this building style and can be found at Wheaton Labs.

Hugelkultur is a permaculture technique that can be described as "soil on wood". It involves burying wood, including logs, branches, and twigs, to build raised garden beds. This technique, which can be small or as large as a kilometer, creates a beneficial environment for plants. As the wood decays, it provides nutrients to the soil and improves drainage and aeration. It also becomes "a sponge to hold water," reducing or eliminating the need for irrigation. Using wood that would otherwise be discarded for hugelkultur is an environmentally sustainable way to improve soil health and grow food