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The construction of a berm shed, a sustainable and aesthetically pleasing storage solution, involves a unique process that utilizes natural building techniques and earth-sheltering principles. First, the building site is prepared using earthworks, shaping the surrounding land to create a berm, which is a raised bank of soil that will eventually cover a portion of the shed's sloping roof. Round wood timber framing is a common technique employed in berm shed construction, utilizing logs sourced from the property instead of commercially produced dimensional lumber. These logs are carefully selected and placed to form the structural framework of the shed, including the walls and roof supports. Once the timber frame is erected, a moisture barrier, such as billboard material or layers of poly sheeting and newspaper, is installed over the logs to protect them from the elements. Finally, soil is carefully layered on top of the moisture barrier, creating the berm and providing insulation, thermal mass, and a natural aesthetic. The construction process prioritizes using natural, locally sourced materials and minimizing the use of energy-intensive and potentially toxic commercial products, aligning with permaculture principles of sustainability and self-sufficiency.

"Pooless," a term often associated with permaculture and natural living, encourages ditching conventional shampoos and soaps for healthier hair, reduced chemical exposure, and a more sustainable lifestyle. This shift to natural hair care involves an adjustment period as the scalp rebalances its sebum production. However, feedback reveals a range of positive outcomes, making the transition worthwhile. Many individuals report achieving a natural balance, resulting in less oily hair and less frequent washing. Some experience improvements in hair texture, noticing increased volume and curl. The vinegar rinse, following a baking soda wash, is crucial for smoothing the hair cuticle and detangling, contributing to a healthier and more manageable mane. Beyond the aesthetic benefits, some users report a decrease in scalp problems, including dandruff and itchiness, potentially due to the absence of harsh chemicals. Others have even noted unexpected benefits like migraine relief, suggesting a potential connection between overall health and a more natural approach to personal care. "Poolessness" aligns with permaculture's principles of minimizing chemical usage and embracing natural processes, empowering individuals to take control of their health and reduce their environmental impact.

SKIP, which stands for Skills to Inherit Property, is a permaculture-based program designed to connect aspiring homesteaders with aging landowners seeking successors for their properties. The program consists of over a thousand practical projects, referred to as "Badge Bits" (BBs), encompassing various aspects of sustainable living, such as gardening, natural building, animal care, and food preservation. Participants, known as "Skippers," complete these BBs, documenting their progress with pictures and videos to demonstrate their skills and dedication. As Skippers gain experience, they progress through levels of certification, starting with PEP1 (Permaculture Experience according to Paul) and culminating in PEP4, representing a significant level of expertise. "Otis," a fictional character in the SKIP program, represents the numerous landowners seeking worthy individuals to inherit their properties. The program aims to create a bridge between these Otises and Skippers, offering a pathway for Skippers to "skip the rat race" and acquire land while providing Otises with peace of mind knowing their homesteads will be in capable hands. SKIP emphasizes practical skills and real-world experience, fostering a sense of accomplishment and self-sufficiency among participants.

The willow feeder system, a "freaky-cheap" and sustainable approach to human waste management, was developed by permaculture expert Paul Wheaton as an alternative to conventional septic systems and sewage treatment plants. The system emphasizes a closed-loop cycle, transforming human waste, or "poop", into valuable fertilizer, termed "willow candy". Unlike composting toilets, willow feeders utilize a dry environment created within sealed garbage cans to mummify the waste, preventing composting and the potential spread of pathogens. A small amount of sawdust is added to each can, primarily for aesthetic purposes. This dry process also preserves valuable carbon and nitrogen, which are often lost to the atmosphere during hot composting. After two years of aging, the pathogen-free "willow candy" can be safely applied as fertilizer to "poop beasts" — trees like willow, cottonwood, poplar, and bamboo — which can handle the high nutrient content without being harmed. This system turns human waste into a valuable resource, promoting sustainable gardening practices.

A dry outhouse, a simple and sustainable alternative to conventional flush toilets and septic systems, is frequently discussed within permaculture circles as a means of minimizing environmental impact and maximizing resource utilization. This type of outhouse is characterized by a pit dug into the ground, strategically located on a higher elevation point to encourage water runoff and maintain dryness. Key design elements for a successful dry outhouse include a "no pee" policy, the use of ample sawdust for odor control and composting, and urine diversion mechanisms, particularly important for accommodating female anatomy. While concerns about groundwater contamination exist, proper placement, construction, and the incorporation of heavy-feeding trees or plants like willows in a "tree bog" system can mitigate these risks. Furthermore, the integration of a urine separator can significantly reduce the volume and toxicity of waste, facilitating easier composting and nutrient recycling. The dry outhouse, particularly when combined with urine diversion and careful management, offers a cost-effective and environmentally sound approach to sanitation, aligning with permaculture principles of resource conservation and closed-loop systems.