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@Naujas
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79 days!!!!! and the harvest is already harvested :) The whole growth until week 6 went very well, then the girl got a little worse, (I think it's my mistake, which I described in previous weeks), but besides all that she managed to ripen perfectly, matured stiff flowers, full of shiny sticky trichomes with a very, very sweet aroma ;) 210 gr of wet buds, I also collected a lot of sugar leaves from which I will make bubble hash :) I can't wait to taste it :) this is my first trip with Sweetseeds Looking at the flowers I understand that I will definitely repeat it :) I will leave more feedback after the smoke review:) good luck to everyone.
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@EyeMKing
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I've had success in the past with transplanting autos from solo cups to their final pots as long as I dont allow the roots to reach the bottom before transplanting.
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3. Woche Alle wurden mittlerweile 2x getoppt, jetzt dürfen sie sich erstmal erholen und dann schau ich ein paar Tagen nomma nach 😊
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Remember that, however you are played, or by whom, your soul is in your keeping alone. Even though those who presume to play you be kings or men of power, when you stand before God, you cannot say, 'But I was told by others to do thus,' or that virtue was not convenient at the time. This will not suffice. Remember that. Day:18 84°F and 65% RH (VPD) for the vegetative stage. Approximately 1.15kPa(assuming leaf temperature is about 2°F cooler than the air), which falls right into the ideal vegetative sweet spot (0.8kPa to 1.2kPa). At 1.15kPa, plants can draw water and nutrients efficiently without risking stress or wilting. It keeps the leaf pores (stomata) open, allowing for ideal carbon dioxide intake and maximizing vegetative growth. VPD is determined by the leaf's temperature, not just the ambient air. Because leaves usually run 1° to 3°F cooler than room air under bright grow lights, my actual VPD will be slightly lower, closer to the 1.0kPa mark. As she transitions from vegetative growth to flowering, one can gradually lower the humidity (to around 45–60%) and drop temperatures slightly to prevent disease from settling inside dense buds when they appear. Night:6 At 70°F and 60% relative humidity, Vapor Pressure Deficit (VPD) is 0.86 kPa. This is right on the cusp of whats optimal for the vegetative stage. During the nighttime, plants generally close their stomata and undergo cellular respiration rather than photosynthesis. Transpiration slows to a near stop, making VPD less critical at night than during the day. However, maintaining a nighttime VPD between 0.8 and 1.0 kPa is highly beneficial in that it ensures the air is dry enough to prevent powdery mildew or bud rot, but moist enough to keep the plant from undergoing unnecessary stress. This range keeps the environment comfortable for cellular processes and prevents large atmospheric swings. Keeping it all flowing. (Not pushing them yet, these are photoperiods) The optimal soil (root zone) temperature for cellular root respiration and nutrient uptake in cannabis is between 68F & 72F This narrow range balances biological energy production (cellular respiration) with the dissolved oxygen levels in the soil, maximizing plant growth and health. Warmer soils hold significantly less dissolved oxygen. When soil temperature exceeds 74F oxygen depletion occurs, inhibiting cellular respiration almost entirely, At 68-72F root cells generate optimal adenosine triphosphate (ATP) via respiration to power root-tip elongation and the active transport of water and nutrients. Too Hot (Above 78F) Root respiration increases, demanding more oxygen, while the water's oxygen-carrying capacity drops. This creates a prime environment for anaerobic pathogens and Pythium (root rot). Too Cold (Below 60F) Root metabolism and cellular respiration slow to a crawl. This severely impairs nutrient and water absorption, leading to yellowing, wilting, and phosphorus deficiencies. A lot depends on whether it's automatic or photoperiod; with photoperiod, there is not as much of a need to push "hard" as the real countdown only begins once the flower is initiated. Automatics, on the other hand, the chronological "clock" begins ticking the moment the seed germinates. It is of critical importance that the seedling growth gets off to the races, understanding that early growth is like compound interest, which will pay off come harvest. This reality is why getting autoflowers "off to the races" early on yields such exponential benefits. The "compound interest" is directly related to the surface area of the leaves. Larger, faster-growing seedlings process more light and build bigger root networks early on, which translates into an explosion of vertical and lateral growth during their short vegetative window. The margins for error are so thin with autoflowers; this early-stage momentum depends on several critical practices. Seedlings exposed to increased atmospheric CO2 levels early in life will develop at an increased rate. To effectively "extend" or optimize the capacity of Photosystem II (PSII) for increased photosynthetic efficiency. In standard oxygenic photosynthesis, Photosystem II (PSII) is naturally limited to the red-light spectrum, peaking at 680nm. Extending its light-harvesting capacity past 700nm into the far-red region requires bypassing the natural limits of standard chlorophyll a. Adding 730 nm (far-red) LEDs alongside standard red/blue lights has been shown to increase canopy photosynthesis by 20–30% in several crops by acting synergistically with shorter wavelengths. However, the limitation is that excessive, pure IR/Far-red light (without accompanying red light) can trigger the "shade avoidance response," causing plants to grow tall, weak, and spindly rather than robust. Utilizing infrared light (specifically the 700-750 nm far-red range) is a viable method to boost photosynthetic efficiency. It acts as a bridge to allow PSII to utilize a broader spectrum of light, breaking the traditional 700 nm barrier. UVR8-mediated signaling (often in conjunction with CRY proteins) triggers protective mechanisms that maintain the stability of the photosynthetic apparatus (including LHCII and reaction center proteins), thus ensuring that the efficiency of Photosystem II remains higher in UV-B-exposed plants compared to plants lacking this receptor. ΦPSII indictates the rate of electron transfer from water to plastoquinone, which drives the production of ATP and NADPH. There is a close link between ΦPSII and the true rate of CO2 fixation (Φ*co2). ETR stands for Electron Transport Rate. It measures the speed at which electrons are moved through the thylakoid membranes in a plant's chloroplasts during the light-dependent reactions of photosynthesis. Infrared light (particularly Near-Infrared or NIR) improves cellular energy by interacting directly with the electron transport chain (ETC) in mitochondria. This process boosts adenosine triphosphate production, which acts as a metabolic coefficient multiplier by accelerating enzyme activity dramatically. Extend then multiply. Far-Red photons interact with plant photoreceptors to accelerate the plant’s biological "clock" or trigger a shade-avoidance response. Autoflowers don't use the plant's biological clock, although the IR will initiate a shade avoidance and make them stretchy. You can just add equal measures of 660nm-680nm to negate the shade avoidance effect. Replacing nights' "darkness" with a combination of IR+ and 660nm. Because autoflowers don't require a dark period to flower, many growers just blast them with light. 18/6 24/0. However, this ignores the plant's metabolic rhythms, where daytime photosynthesis (light reactions) must be perfectly balanced with nighttime carbon fixation and assimilation (Calvin cycle) to avoid bottlenecking plant development. Cellular respiration is a 24/7 process, but it can only function while the plant has the free oxidative capacity to do so. A 100% photosynthetically active leaf cannot perform cellular respiration. The viral trend of defoliation of every leaf that isn't "getting enough light" is of great detriment overall, putting 100% of the cellular respiratory "workload" and responsibility on the 0/4/6 hours of darkness in sub-optimal conditions for enzymatic activity. Photosynthesis captures nearly 100% of the initial energy as carbon, while cellular respiration is the process that unlocks 90% of that captured energy into usable ATP so the plant can use it. Respiration is considered roughly 30% to 40% efficient. It captures enough of the potential energy in glucose to synthesize around 30 to 38 ATP molecules per glucose molecule. The remaining 60% to 70% of the energy in the sugar is not captured in ATP; instead, it naturally escapes into the environment as heat, which helps regulate plant temperature. In plants, the primary enzymes of the Electron Transport Chain (ETC) and the ATP synthase complexes are typically adapted to function optimally in warmer temperatures (roughly 25°C to 35°C depending on the specific plant strain). As temperatures rise within this physiological range, molecular collisions increase, speeding up respiration and ATP production. The cannabis plant has a branched respiratory pathway. During heat or cold stress, plants activate Alternative Oxidase (AOX). AOX burns sugars to dissipate energy as heat rather than coupling it to ATP production. This pathway actually functions optimally at elevated temperatures to help protect the cell from the damaging build-up of Reactive Oxygen Species (ROS) during heat stress. Enzyme activity generally scales with heat; there is a strict biological limit. If canopy temperatures in a grow room exceed 40°C, the enzymes and their supporting lipid membranes lose stability. Not saying you need to go crazy, just optimize nights the same as we optimize days. Phosphorus is the driving force behind early seedling development. It acts as the "energy hub" of the plant, directly driving cell division, robust root growth, and the creation of DNA. Without an adequate, easily accessible supply early on, the plant's overall growth potential and final yield can suffer permanently. E=MC2 looks like a simple multiplication problem; it describes a fundamental physical truth: mass and energy are the same thing. The equation doesn't just calculate a value; it reveals that mass is effectively "congealed" energy. Energy is just numbers. Energy isn't a physical "substance" you can hold or touch. It is essentially an abstract, calculated number that we assign to a system to predict how it will change, interact, or move. A numerical label we attach to matter to track how it behaves. Because the universe runs on laws of symmetry (specifically, that the laws of physics don't change over time), a single global number must be conserved. We call that number "energy". We don't grow; we facilitate energy conversion. How well a seedling grows is essentially down to how much knowledge one can acquire to increase the level of conversion to occur. Applying knowledge effectively requires intuition, which comes from hands-on experience. A seasoned stoner learns to read subtle signs—like a slight change in leaf turgor (stiffness), subtle color shifts, or the specific texture of the soil—before a textbook diagnosis can be made. Ultimately, growing is the application of botanical science blended with active observation. Knowledge dictates your potential, but adaptability and attentiveness to the plant's immediate environment determine your results. 1.618 nature mathematically optimizes quantum energy transfer and light absorption efficiency within the photosynthetic machinery, as it naturally dictates energy scaling hierarchies and resonance dynamics. External vibration or electromagnetic wave that perfectly matches a plant's natural frequency directly influences plant growth. Low-frequency sound waves and targeted electromagnetic fields stimulate cellular processes and boost photosynthetic efficiency Does it produce better yields? How long is a piece of string? As long as you cut it. But isssss the juice worth the squeeze? The quantum framework of the IVM seems to think so. Good enough for the quantum firmware, good enough for the DNA software. Genetics are not dictated; they are expressed; the rate of that expression is dictated by the environment in which growth occurs. Quantum Coherence in Photosynthesis occurs When a photon of sunlight strikes a leaf, the energy it carries must travel to a reaction center to be converted into chemical energy. This process operates at nearly 100% efficiency. If the energy moved in a traditional "bunching" or random hopping manner, a large portion of it would be lost as heat. Instead, plants utilize quantum superposition. The energy particle (exciton) doesn't just take one path; it exists in a wave state and explores multiple pathways simultaneously. It essentially "chooses" the most efficient route to the reaction center simultaneously. Research shows that molecular vibrations and the specific network arrangements of chlorophyll molecules (like the naturally evolved Chlorophyll A & B ratios) actively protect against energy overflow, optimizing light capture across different light intensities. Enzymes are the biological catalysts that speed up chemical reactions within a plant's cells, allowing them to grow, metabolize, and repair. Rather than relying solely on the classical kinetic energy of molecules colliding, plants use quantum tunneling. Subatomic particles like electrons and protons (hydrogen ions) can literally "teleport" through energy barriers that they normally wouldn’t have the energy to climb over. This makes vital metabolic reactions happen far faster than classical physics could ever explain. Chloryphyll b has peak absorption at 460nm (Blue) and at 647nm(Red). If we take the blue peak wavelength 460nm and a UV-B, UVR8 peak absorption wavelength 285nm, Tryptophan-285 (W285) Sensing protein. 460/285=1.618 Φ If we take chlorypyhll b's Red absorption peak 647nm and a UV-A of 400nm, we get 647/400=1.618 Φ. "Structure of light". The cryptochrome photoreceptor (CRY) is a UV-A/blue light receptor that shares this dual sensitivity with several other biological structures and functions, including significant sequence similarity and a common evolutionary ancestor with DNA photolyase enzymes. These are light-activated enzymes that use blue/UV-A light to repair DNA damage caused by UV-B radiation in plants. Synergistic. But Shhh, it's a secret. Effective quantum efficiency of photosystem II, often denoted as ΦPSII, represents the proportion of light absorbed by Photosystem II (ΦPSII) that is actually used in photosynthetic electron transport. It is a key indicator of how efficiently a plant is using light for photosynthesis, as opposed to losing it as heat or fluorescence. ΦPSII (effective quantum yield of photosystem II) functions primarily as a "multiplier" (a coefficient of efficiency) rather than an additive factor when estimating the overall photosynthetic electron transport rate (ETR). Multipliers are considered far more beneficial than additions because they generate exponential growth, leverage existing resources to their full potential, and create sustainable, self-multiplying capacity, rather than just incremental, linear increases. This fascinating observation is rooted in the intersection of subatomic geometry, fractal scaling, and quantum dynamics. In specific molecular arrangements—such as in conjugated polymer networks or biomolecular architectures—the Golden Ratio (PHI) naturally dictates energy scaling hierarchies and resonance dynamics. Mathematically tied to the fine-structure constant, which defines the strength of the electromagnetic interaction. The Golden Ratio can be mapped geometrically as the Golden Angle (137.5 degrees) in atomic structures, linking the charge of the electron to fundamental quantum constants like Planck's constant. Electromagnetic. The Golden Angle (137.5): This angle is derived from the Golden Ratio (1.618). It is the smaller of two angles created when a circle is divided such that the ratio of the arcs equals the Golden Ratio.
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The cookies have officially went into flowering and started a little bit and four but I documented it this week for sure. I’m trying to let everything catch up before I end up lollipop the bottom of my plant but so far so good. It’s looking very healthy. I did incorporate, bud candy into my nutrition, but everything‘s going well.
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Big girls dont cry did a bit of defoliation today on them, after taking the pics
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Things are starting to frost up now , smell is so strong 💪🏽 swelling is going well too had a slight issue but all fixed and back to it we go
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@RelaeX
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Week 20: Flowering Week 3 – Lollipopping, Climate Control & Heavy Water Intake 🌸🌸 Relax! Hey, it's Week 20—Flowering Week 3 is officially underway! We are entering the final stretch of the stretch phase, and the canopy is looking dense, lush, and super active. The Screen of Green (ScrOG) net, which was installed at the start of Week 18, is doing an amazing job keeping everything level and evenly spread out across the tent. Environment & Climate Adjustment 🌡️💧 With the massive canopy and high transpiration, humidity started spiking. To keep the environment safe and prevent any mold risks in this critical phase, we installed a dedicated A/C unit with a dehumidification function. Day Temperatures: Ranging steadily between 21 °C and 27 °C. Relative Humidity: Kept under control between 54 % and 78 %. Plant Training & Maintenance ✂️ Lollipopping & Defoliation: This week, we performed a thorough lower-canopy trim (Lollipopping) in the main tent. Removing the weak lower growth ensures the plants divert 100% of their energy to the top sites. Combined with regular defoliation, airflow through the ScrOG net is top-tier. Canopy Height: Total plant height is sitting right around 1.40 m (including our 30–35 cm pots). Light Distance: The lights are dialed in at roughly 40 cm from the canopy. Strains Progress 🌿 High Society: Absolute monster growth! It has reached impressive height and filled its section of the ScrOG screen completely. Zupernova: Catching up nicely, building compact and dense bud sites across the screen. Side Tent (Mothers): In the neighboring tent, the two mother plants are chilling under reduced light, growing slowly and steadily at a manageable pace. Feeding & Watering 💧 Water consumption has surged massively this week—the plants are drinking non-stop! Total Volume: We are currently going through roughly 100 Liters of plain water per week, plus an additional 20 to 40 Liters (2–4 10L watering cans) mixed with nutrients. pH & Stability: After a short temporary fix with citric acid (which drifted up to pH 7.5 after settling), we are back to a rock-solid, stable setup using phosphoric acid to keep our water dialed in at a steady pH 6.5. Nutrient Mix: The flowering tents are receiving Hesi Bloom Complex, Root Complex, and SuperFit to keep up with the heavy demand during this key phase. Everything is primed for the buds to stack up over the coming weeks! Stay tuned and see you all next week! 🚀
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Gracias al equipo de MSNL Seeds, Marshydro, XpertNutrients y Trolmaster sin ellos esto no sería posible. 💐🍁RS11: RS11 es uno de nuestros nuevos híbridos 50/50 perfectamente equilibrados. Creamos RS11 cruzando Pink Guava x OZK x Sunset Sherbet con la intención de crear una variedad que ofrezca medidas iguales de efectos edificantes y relajantes. Aclamada como una de las variedades más sabrosas del mercado, su sabor agrio y dulce a bayas viene con un potente rango de THC del 27% al 31%. 💡TS-3000 + TS-1000: se usaran dos de las lámparas de la serie TS de Marshydro, para cubrir todas las necesidades de las plantas durante el ciclo de cultivo, uso las dos lámparas en floracion para llegar a toda la carpa de 1.50 x 1.50 x 1.80. https://marshydro.eu/products/mars-hydro-ts-3000-led-grow-light/ 🏠 : Marshydro 1.50 x 1.50 x 1.80, carpa 100% estanca con ventanas laterales para llegar a todos los lugares durante el grow https://marshydro.eu/products/diy-150x150x200cm-grow-tent-kit 🌬️💨 Marshydro 6inch + filtro carbon para evitar olores indeseables. https://marshydro.eu/products/ifresh-smart-6inch-filter-kits/ 🍣🍦🌴 Xpert Nutrients es una empresa especializada en la producción y comercialización de fertilizantes líquidos y tierras, que garantizan excelentes cosechas y un crecimiento activo para sus plantas durante todas las fases de cultivo. Consigue aqui tus Nutrientes: https://xpertnutrients.com/es/shop/ 💻 Trolmaster Tent-X TCS-1 como controlador de luz, optimiza tu cultivo con la última tecnología del mercado, desde donde puedes controlar todos los parametros. https://www.trolmaster.com/Products/Details/TCS-1 📆 Semana 3: Muy buena semana, he aplicado un riego solamente con agua de manantial para reducir la cantidad de sales acumuladas en el sustrato y se ha notado una mejoria . Creo que le quedan unas dos semanas por estirar, parece que va a ser una buena cosecha. Se mantiene un buen control del cuarto de cultivo gracias a @marshydro y @trolmaster. Mantengo las dosis de 1/3 de nutrientes recomendados por el fabricante. Potencia del foco 80%
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Recovery from pruning n 2nd topping. Waiting for 3 weeks for 3rd topping. Planning to transfer the plant for flowering
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@Bncgrower
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Harvested yesterday, truly strong smell, cultivation was absolutely perfect from start to finish. Very happy with the result, anxious for the drying and curing process! Thank you for following along.. 🤜🤛🌱🌿🌲
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@BUZIMAN
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Tout ce passe bien, elles continuent à prendre en volume, la Gelonade continue de consommer a max d’eau, la Milky Way a l’air elle d’en avoir de moins en moins besoin. Ça commence à sentir bon 🍋
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@I_and_I
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New light installed, twice as powerful as before but still a cheap light I've yet to learn fully Like the first batch of seeds to germinate, I again get a strange 'quad' seedling, 4 embryo leaves, then attempts to grow it's first 4 leaves instead of 2 also, growth is severely stunted in both seedlings to start with 4 embryo leaves after seed popped
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Day 1: Popped. Temp: 75º RH: 82% + PPFD: 250 Day 2: Temp: 75º RH: 82% + PPFD: 250 Day 3: Roots showing through the bottom of the rapid rooter. Dusted roots with Tryfecta Myco Supreme (FoxFarms) and transplanted to 3 gallon pot w/ProMix HP. Temp: 75º RH: 78% + PPFD: 300 Day 4: 5-10ml ph 6.2 water feed. Temp: 75º RH: 75% + PPFD: 300 Day 5: Showing second set of leaves. Temp: 75º RH: 75% PPFD: 300 Day 6: Temp 75º RH: 75% PPFD: 300 Day 7: Temp 75º RH: 72% PPFD: 300 Both + Speed Autos are falling a little behind this first week which I find a little surprising given the name.We'll see how they do in week 2. Will continue to mist spray a few times a day for the next week with maybe one more 5-10ml ph 6.2 water feed.
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Song of the week : ------- Day 43 - The 3 ladies are doing good under the neon and I can see the first pistils on each one. I also removed the 2 first nodes of each of them to have more energy for the upper nodes and prevent popcorn buds. The spaces between the nodes is pretty huge because of the light penetration : not very deep with this kind of lights. I was supposed to do an outdoor grow like I always do but a friend give me a 150w Hps kit only use one time so I'll maybe give it a try but just for 6 hours a day ( 12h out 6h in) to have a full 18h schedule and see the differences -------- Day 44 - I made a short video to show you the girls in they 60x60cm tent with they turbo neon and no airflow (And a white fly invasion ). The roots system looks strong and the roots you can see on video are not thin, I put it on the last Mr.B's feeding and the multiple transplants I did before the final pot 👉 Myth Buster : Autos can be transplant multiple time so no need to put them straight in their final pot if you now how to handle a transplant without breaking the roots 👍😁 ------- Day 47 - 22.11 - Today they received 1/1.5L of Mega Crop at 1.5Ec to boost them a bit and next week they will be outside during 12h then inside during 6h under a 150w Hps 🦎 ------- Day 48 - I put the 150w Hps inside the tent today and I hang it at 30 cm from the top of the plant which is way too high but I'll hang it lower tomorow. I also will start the indoor/outdoor switch tomorow so the Hps will only be on during 6 hours a day ✌️ I'm pretty impressed by how strong their are growing under only 110w , for a low light wattage veg it's pretty cool 😁
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@ReefsDad
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So please don"t trip out on this. I know my conditions are not accurate or my nutrient amounts. Lost my notebook with all my notes on this grow. All I have are the pics which I'll post. The dates of the pics may not correspond with the weeks in the diary. Kids, make sure you keep up to date if you are going to keep a diary online and keep a written one. I definitely learned my lesson. Several weeks of notes on 5 different strains lost. Well enjoy the pics at least.