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@lozaa111
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Day 31 veg… Some these girls are looking mutated 🤨 I have really low humidity which i will correct with a Humidifier tomorrow… What are these mutants coming from is it heat stress ??? And also the spots on my girls ? I have been on holiday for a few days so made a pre mixed feed for the girls for my freind to water… Im not aure if the badly mutated plants are worth pulling or growing out still?? Anybody got experience with them ?? Could it be down to really low humidity Girls will be getting transplanted tomorrow.. Check my other cuttings diary Temp 25 day 19 night Humidity high 45 low 20
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@IQuSX
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Hi, topman! So, I think it’s strain was really good, how his F1 family! But, Titan F1 - so good the same! See you in next weeks report and harvest report. >>
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WEEK 5 SETUP - ROOT ZONES Optimizing cannabis performance requires balancing a strict temperature gradient between a cool root zone (68°F–72°F) to maximize dissolved oxygen and active nutrient transport, and a warm canopy (77°F–95°F) to accelerate photosynthetic enzyme activity and electron transport rates. There is a critical anatomical temperature gradient required for optimal cannabis metabolism: The Root Zone (68°F–72°F): Must be kept cool to maximize dissolved oxygen, preventing root rot (Pythium) and ensuring active transport ATP powers root elongation. The Metabolic Sweet Spot (77°F–95°F): The primary Electron Transport Chain (ETC) enzymes and ATP synthase complexes in the foliage require these warmer temperatures to maximize molecular collisions, accelerating respiration and carbon fixation. The Destruction Threshold (104°F): Enzymes and lipid membranes denature, causing structural metabolic collapse. Active transpiration constantly pulls dissolved O2 down through the top of the substrate like a piston. At night, the top-down pump completely stops. When transpiration shuts down after dark, the root zone can quickly become stagnant and oxygen-depleted because the mechanical "pump" is off, while the roots still need to breathe. Having a hole in the middle of the 100 gallon, in which all the air intake in an indoor grow tent comes up through the middle of the pot rather than open side panels, and having tent exhaust connected to RH allows cellular respiration to enact the exhaust, which creates a negative pressure differential that will act as a pump at night similar to daytime, but with a different mechanism. By routing your intake exclusively through a central hole in the pot and linking the exhaust to a Relative Humidity (RH) controller, you are effectively replacing the daytime transpiration-driven pull with a nighttime vapor-driven physical pull. Because the side intake vents are sealed, the tent is forced to draw its replacement air directly up through the center of your massive pot. This actively pulls stagnant, CO2-heavy air out of the root zone and replaces it with fresh, oxygenated room air. UVC 264nm duct sealed with HEPA filters to prevent contamination of pathogens. Constant airflow of 0.2m/s underside of the elevated pot to prevent potential runoff stagnation. Polystyrene insulation to prevent core desiccation, HVAC climate-matched intake, inline UVC/HEPA filtration, and constant underside air velocity are successfully engineered around every major failure point. Because cellular respiration spikes RH in waves, ensure your exhaust controller has a tight deadband (e.g., +/- 2-4% RH). This prevents the fan from "hunting" (short-cycling on and off too rapidly), which would cause erratic pressure shifts in the root zone. Using large-sized Hydroton (expanded clay) pebbles fill a 12-to-14-inch diameter middle cavity in the pot solves the air channeling problem entirely. By replacing a dense substrate core with a highly porous, structural aggregate, it creates a dedicated internal air plenum. This ensures that the negative pressure differential acts uniformly across the entire vertical column of the root zone. Often referred to as a sub-surface aeration plenum or negative-pressure root system. By using negative pressure to pull or push conditioned air through a Hydroton (expanded clay pebble) plenum, this setup optimizes the root zone microclimate while preventing the typical gas stratification found in traditional containers. The 12-to-14-inch Hydroton layer acts as a high-porosity distribution vault. Because Hydroton has massive interstitial spacing, air can move through it with minimal resistance before diffusing into the denser substrate above. Instead of air channeling up a single path, the system forces the conditioned air to spread outward and upward evenly across the entire radius of the root mass. Roots actively consume Oxygen and respire Carbon Dioxide (CO₂). In standard pots, heavy CO₂ and excess Nitrogen can settle at the bottom, creating an anaerobic "dead zone." This negative pressure actively pulls those heavy gases out, replacing them with oxygen-rich, HVAC-conditioned air. Roots that penetrate the polystyrene/mesh barrier into the Hydroton core will experience incredible growth due to the hyper-oxygenated environment. However, because of the high nighttime airflow, the surfaces of the Hydroton will dry rapidly after irrigation. This will create a localized, self-regulating air-pruning zone, forcing the plant to explode with dense, lateral feeder-root branching just outside the core. Turns one's massive pot into a bi-directional, lung-like matrix. Equipped to destroy all limits set before it with nearly zero points of failure. With these safeguards implemented, the root zone environment achieves an unprecedented level of equilibrium. The plant drives the system. High transpiration creates a powerful top-down pull, dragging oxygenated moisture through the upper profile. The HVAC and HEPA/UVC intake runs passively or under low static pressure to maintain ideal ambient baselines. Transpiration ceases(Photosynthesis), and metabolic cellular respiration triggers a spike in relative humidity. The RH controller instantly fires the exhaust fan. The negative pressure vacuum instantly engages the clean, conditioned cohesive air column. Fresh air sweeps through the sealed duct on the underside of the buffer zone(pot), enters the 12-to-14-inch Hydroton plenum, and diffuses radially outward through the HVAC-controlled substrate. Stagnant CO₂ and nitrogen are actively evacuated. This setup prevents root rot, boosts oxygen levels at the root zone, and accelerates plant growth by ensuring the root system always breathes fresh air. Polystyrene keeps the core from drying out prematurely, the physical barrier keeps the media from migrating into the plenum, and the climate-controlled intake ensures the root zone never drops below its metabolic sweet spot. In standard growing systems, a root zone of this massive scale always runs into a diminishing return curve: the larger the pot, the easier it is to create cold, stagnant, anaerobic dead zones in the deep interior. This design completely smashes that ceiling. By turning the absolute center of the mass into the cleanest, highest-flowing, most oxygen-rich zone in the entire garden, it allows the root system to expand exponentially without ever hitting a wall. One is giving the plant the ultimate foundation to maximize its genetic potential, pushing growth rates, nutrient uptake, and overall vitality to their absolute limits. Also allows intake while catching all CO2 generation in the bottom half of the tent, kicking it up into the canopy every morning, even all around with 360 distribution, zero dead spots. Sub-surface aeration and magneto-electroculture matrix: a highly sophisticated, closed-loop engineering framework that perfectly bridges plant physiology with fluid dynamics and electromagnetic physics. By turning a traditional container into a bi-directional pneumatic lung, the design successfully bypasses the biological stagnation limits of massive root zones while leveraging micro-Lorentz forces to enhance nutrient mobility. Integrating a massive copper rod with an iron core (an electromagnet core) directly down the central axis of the Hydroton plenum—and driving a magnetoelectric field at the base using a neodymium magnet—shifts setup from a basic galvanic circuit to a specialized magneto-electroculture matrix. Running the earth battery's DC current through a highly conductive copper casing insulated around a ferromagnetic iron core transforms the central air column into an inductive broadcast tower for the rhizosphere. Just big enough to fill the massive root zones but not enough to leave the 4x4 tent. The physics and structural safety of this addition alter the system's dynamics in a couple of ways. Copper is an excellent electrical conductor but is non-magnetic. By wrapping the high-permeability iron core inside that copper column, you focus and amplify any magnetic flux lines generated by the circulating micro-currents. ⚠️ Extreme Handling Hazards ⚠️ 38 mm OD x 19 mm ID x 6 mm N52. ⚠️ Extreme Handling Hazards ⚠️ ⚠️Keep it well away from pacemakers, credit cards, mechanical watches, and sensitive magnetic sensors.⚠️ There is a permanent neodymium magnet at the base of this core, inducing an electrical current; this creates a localized electromagnetic actuator. Because it sits at the bottom of the plenum (where HEPA/UVC filtered intake air enters), the air moving up the column passes through a dense, structured magnetic gradient. As HVAC-conditioned water droplets and dissolved nutrient ions flow outward from the Hydroton plenum into the biochar, they cut perpendicularly through this magnetic field. This exerts a micro-Lorentz force on the free ions, altering their kinetic trajectories and potentially boosting ion mobility through the substrate's high-impedance boundaries. The central rod is sealed in a non-conductive jacket below the soil to allow the magnetic field to pass through while physically isolating the raw metal from moisture. Iron cores radically increase magnetic field strength, but they also introduce electrical resistance. If the current from the earth battery hits a bottleneck in the central rod, that energy transforms into heat. Given the root zone has a strict oxygen threshold above 75°F, use a digital multimeter to verify the central rod is not acting as a heating element. Copper is highly toxic to plant roots in elevated atomic concentrations. Because the central plenum experiences a massive, nightly rush of high-humidity air driven by the pneumatic exhaust lung, an unsealed copper rod will oxidize rapidly. This creates copper carbonate or copper sulfate runoff that will toxicify the hydroton pruning zone. Luckily, we don't top water in that zone. Roots exhibit magnetotropism (growth responses to magnetic alignment). A constant, hyper-intense magnetic field can distort root elongation or cause root tips to prematurely deviate from their lateral path toward the biochar. Ensure input voltage stays strictly in the micro-current range to keep the magnetic flux lines subtle and non-disruptive. The permanent magnetic field has a profound, measurable effect on the surrounding rhizosphere. Placed right in the middle of the massive 100-gallon pot, the 38 mm neodymium magnet acts as a powerful bio-magnetic anchor. Because the magnet is completely sealed and safe from corrosion, its magnetic lines of force will constantly radiate into the soil matrix. In plant biology and soil science, this triggers several notable physical and biological shifts. Water molecules are diamagnetic (weakly repelled by magnetic fields). When water moves through the soil near the magnet—whether from watering or root suction—the strong permanent magnetic field temporarily loosens the hydrogen bonds between water clusters. It breaks larger water groupings into smaller, highly uniform clusters. This "magnetized water" moves through soil capillaries more fluidly, lowering surface tension and allowing the roots and surrounding microbes to absorb moisture and dissolved ions much more efficiently. The field stimulates soil enzymes like phosphatase, which unlocks bound phosphorus in the soil and turns it into a bioavailable form for the plant. Many beneficial Plant Growth-Promoting Rhizobacteria (PGPR), including nitrogen-fixing strains, are magnetically sensitive and show increased activity and modular clustering under a magnetic field. The field strengthens the communication networks among soil microbes, which actively boosts the plant's natural tolerance to environmental stressors like salt or drought. Roots exhibit a subtle trait known as magnetotropism. Plant cells use internal electrical gradients to guide growth and transport nutrients. The permanent magnetic field alters the transport kinetics across cell membranes, influencing auxin (growth hormone) distribution. As roots grow into the middle zone of the 100-gallon pot, they will likely develop denser branch networks and thicker root hairs to maximize surface area contact. Magnetic field strength drops off drastically with distance. A 38 mm neodymium magnet exerts a massive effect on the soil within a 10–20 cm (4–8 inch) radius around it. In the 100-gallon pot, it will not drastically affect the outer edges of the soil, making it a perfectly sized "core zone". The roots must grow relatively close to the center to interact with the high-flux zone of the field. Once they do, 432. Explosion. Those faint, clean yellow tips with zero browning, crispiness, or structural curling are not a sign of disease; they are a system-level operational signal from a plant running at maximum physical capacity. The system uses a 1.34 kPa leaf VPD, an N52 bio-magnetic anchor, and an active earth battery; the plant's water and mineral translocation is running at an incredibly high velocity. When a cannabis plant experiences zero osmotic shock but displays clean yellow margins at the extreme tips, it points to one of two high-performance phenomena: 1. The Terminal Mineral Lag (The Gilded Edge). Aggressive transpiration stream is pulling mobile nutrients (like Nitrogen and Potassium) up the vascular xylem effortlessly. However, calcium, boron, and certain trace elements are heavy, slow-moving, and immobile. Because the Electron Transport Rate (ETR) is firing so fast under the multi-fixture matrix, the leaf cells are multiplying and expanding at an exponential rate. The faint yellow tips represent the absolute furthest point from the root zone—the terminal ends of the leaf template. The slow-moving, structural minerals are experiencing a minor distribution lag trying to reach the very end of the leaf grid before the light-dependent reactions demand them. 2. Early Photo-Regulatory Nudging (Incipient NPQ)At 84°F and 60% RH, your stomata are completely open. If your 14-fixture light matrix is pushing a high PPFD, the chloroplasts at the very tips of the leaves—which receive the most uniform light and highest wind velocity—are operating at 100% saturation. The faint yellowing means the plant has initiated Non-Photochemical Quenching (NPQ) at its furthest boundary. It is temporarily slowing down chlorophyll production right at the tip to dissipate excess photon energy as heat, protecting the rest of the leaf blade from building up harmful Reactive Oxygen Species (ROS). By incorporating marine crustacean biomass (shrimp and crab chitin) into the substrate catalyzed by the N52 magnetic anchor and an earth battery, this engineers a highly advanced biochemical trigger. In standard agriculture, elicitors are used topically to simulate pest pressure. In this system, chitin functions as a continuous, molecular sub-surface signal. When this organic polymer interacts with the super-fluid, magnetized water, it unlocks a powerful bio-energetic loop that forces the plant to maximize terpene synthesis without experiencing actual tissue damage. Raw chitin is a dense, insoluble polymer made of long chains of N-acetylglucosamine. In a typical organic soil, breaking down this structure takes months. However, your root zone features active soil electrolysis and magnetically restructured water: The Micro-Solvation Process: Water molecules passing through the 10–20 cm high-flux N52 magnetic gradient undergo diamagnetic restructuring. Their hydrogen bonds loosen, lowering surface tension and turning the moisture into a superfluid. This highly fluid water penetrates the crystalline structure of the crustacean biomass much faster than standard irrigation water. Enzymatic Acceleration: The earth battery's direct-current micro-voltage alters localized redox states, increasing the metabolic speed of beneficial Plant Growth-Promoting Rhizobacteria (PGPR). These microbes rapidly produce chitinase enzymes, cleaving the dense chitin chains into low-molecular-weight, highly bioavailable chito-oligosaccharides.
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Tangie'matic showed me that she was in it for the long haul right from the start. This was my first time topping an autoflower and I wasn't sure how it was going to turn out - but each time she took on stress, she pushed back even stronger. I topped her once at the 5th node, and then used some low stress training to create this beautiful canopy. She really grew like a dream! Partway through flower I had to move my grow tent from my second-floor bedroom to my not quite warm enough basement. I had assumed that the heat from the grow lights would have compensated, but it didn't take me long to realize how wrong I was. This poor plant had her reservoir and atmospheric temperatures dropped with no warning. She held in there while I figured out how to get the environment closer to desirable and less feeling like a frozen tundra. In the mish mash of environmental flux, some of her buds began to foxtail. This was my first time seeing this happen; so despite the fact that it's not desirable, seeing foxtailing happen with my own buds for the first time was actually kind of cool. After the environmental woes were corrected, she stacked even more. Her buds nice and dense with a citrus fragrance complimented by some subtle skunky undertones. Before harvest I changed out her reservoir and gave her a 4 day flush along with 48 hours of darkness. When I opened the tent on harvest day I was punched in the face with a beautiful fragrance of mandarin that instantly lifted the corners of my mouth into a sweet smile of satisfaction. I cut her down and hung her to dry in my climate controlled closet holding a perfect 69.8°F and 55% RH. Six days later her buds were ready for the jars. Her dry buds gave me 8.8oz/250g of quality bud and an additional 2.9oz/82g of popcorn buds. Just being in jars for 24 hours has REALLY brought out even a stronger citrus aroma that is just a true pleasure to take in. Will update with more after the cure and first smoke experience. ✌️💜🌱0000
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Both S.A.D. are now also in pre-flowering. They are now starting to grow strongly in height. Everything is growing as I had imagined :-)
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@MrPipi
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doing great. we can see, Lance is a little behind, but he´s the one who got some issues in the first 2 weeks.
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@BB_UK
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She’s a total beast! Gave her a little defol to remove some fan leaves blocking light to the lowers, also removed her from the block she was standing on as it wasn’t necessary anymore because she reached height. Now to see some flowers develop! 😊
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Week 2 begins for Green Crack and LSD. Both ladies are looking happy and I increased their feed by 1 liter each. Thanks for stopping by growfessors 👽 tune in next week for another episode of growfessor theatre.
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Welcome to the Zamnesia Spring Cup 🏆 Hi everyone 🤗. This week she gave an extreme boost after topping :-), so I defenetively do it again completely top 😍. Last week it was a bit dark from the Monster Bud Mix 😅, but this week it turned back into posetive, the new shoots all have a perfect leaf green 👍. I think I will give her another 3-4 weeks of vegi phase that it will be a real bush 😍. I wish you all a nice week, stay healthy 🙏🏻, and let it grow 🌱 The Strain Runtz is available at www.Zamnesia.com ☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼 Zamnesia Spring Cup 🏆🏆🏆 Type: Runtz ☝️🏼 Genetics: Zkittlez x Gelato 👍 Vega lamp: 2 x Todogrow Led Quantum Board 100 W 💡 Bloom Lamp : 2 x Todogrow Led Cxb 3590 COB 3500 K 205 W 💡💡☝️🏼 Soil : Canna Bio ☝️🏼 Nutrients : Monster Bud Mix ☝️🏼🌱 Water: Osmosis water mixed with normal water (24 hours stale that the chlorine evaporates) to 0.2 EC. Add Cal / Mag to 0.4 Ec Ph with Organic Ph - to 6.0 - 6.3 💦💧
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@EyeMKing
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As week 2 comes to an end 4 of the 5 have shown great growth 1 is behind (#5) but it also has a mutation and has a few 4 leafers on it. #3 is shorter and has wider leaves.
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This plant has CRAZY stacking on it. It hasn't grown up as much as it has branched out. This is a strain I'm growing to treat symptoms of MS, so with the stacking it may turn into a mom plant for cloning, but we'll see. It's received some feedings of liquid seaweed, black strap molasses, and URB in R/O water.
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Nourri a l'eau uniquement.
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@Zuppler
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Week 11 - Sixth Week of Flower The Donutz tent has officially entered the “sit back, water, and enjoy” phase. With all the hard work done, it’s now a matter of letting the plants do their thing and watching the magic unfold. Key Updates: Steady Growth: The buds are stacking up nicely, with the purple phenos becoming even more vibrant and the other plants continuing to bulk up. Even the thinner phenos are starting to show signs of filling out as they settle deeper into the flowering phase. Stable Routine: Watering with reverse osmosis (RO) water remains consistent, and the tent environment is running smoothly with no changes needed. Observations: The trichomes are sparkling more each day, covering the buds and sugar leaves with a frosty layer. The aroma is intensifying, filling the space with a sweet, rich fragrance that’s impossible to ignore. The canopy looks uniform and healthy, a testament to the early defoliation and training work. Next Steps: Simply monitor the plants, ensuring they stay hydrated and happy. Enjoy the show as the buds continue to develop and the trichomes ripen. The Donutz are cruising toward the finish line, and the Florida Gang vibes are at an all-time high. It’s all about patience and appreciation now — the hard work is paying off!
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@Xabii
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First seed did pop but didn't do much after that. Second seed did good.
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@VeeDro203
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Candy candy. One has a very strong cherry nose from the cherry pie cross. The sister has a more runts nose on it and sweet. Some cherry The Wolf is giving a Chem smell. Items my nose like mint menthol. Vix or something. I like it!!
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🌱 Week 3 – Gorilla Cookies Auto Pheno Hunt Another week down and the differences between the phenos are becoming more obvious every day 👀🔥 The environment stayed very stable this week with temperatures, humidity, and VPD remaining consistent. Because all plants are growing under the exact same conditions, it’s really interesting to see how differently each phenotype develops genetically. 📈 Current observations: Several phenos are already reaching close to 30 cm in height Meanwhile, some smaller phenos — especially Pheno #6 — are still around 13 cm Leaf structure and overall plant shape continue to vary a lot between phenos Growth vigor is clearly different from plant to plant now 💧 Feeding & maintenance: This week the plants received their first proper feeding with around 4 liters of nutrient water. Some phenos seem to react more sensitively to the nutrients, as a few plants are starting to show slight brown leaf tips, so I’ll keep a close eye on them over the next days 👀 I also removed more large fan leaves to improve light penetration and allow the lower branches to develop more evenly. 📊 Current environment: Temperature stable around 26°C Humidity staying between 63–65% VPD maintained around 1.3 kPa Light intensity remaining at 35% Now I’m really curious to see when the first flowering signs will appear 🌸🔥 💬 Which pheno would you pick so far?