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@420Baddie
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White hairs are growing. I see at least 10 bud sites. Had issues with thrips, but used diatomaceous earth to get rid of them.
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unfortunately I broke a branch during the lst session 25/11 😥 👍Orange Bud Autoflowering Seeds AIRE POTS CULTURE ( VRAIMENT sativa) Orange Bud is a Sativa-dominant hybrid that will give you the burst of energy you need to get your day started. Instead of grabbing the orange juice in the morning, opt for Orange Bud instead as it's the perfect wake-and-bake strain. As its name suggests, Orange Bud will produce big beautiful buds covered with orange hairs. https://marshydro.eu/collections/ts-series/products/ts-1000/ https://marshydro.eu/products/100x100x180cm-grow-tent/
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@gr3g4l
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Al ser la variedad con más predominancia sativa de las tres que habian estas fueron cortadas un poco antes de tiempo y los tricomas en su mayoria eran todo cristalinos, apenas habian unos pocos lechosos o ámbar y muchos de color morado xd. No obstante una vez pasados los dias huele bién, sabe bién y buen efecto. No sabria describir el sabor pero tiende a Kush. fácil de cultivar y como pudo verse hace o puede hacer unas bonitas porras.
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Cold StoneDankery🍦 🛢️蜂 HAPPY 710 蜂🛢️
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Α,α (alpha) and Ω,ω(omega) Here we grow again. LAST GROW. 344g+280g+445g+255g=1324g dry bud. Yielding 1,324 grams of dry cannabis using a 600W light in a 4x4 tent is exceptionally efficient. This breaks down to roughly 2.21 grams per watt, far exceeding the standard indoor benchmark of 1.0 g/W and outperforming elite professional targets (1.5–2.0 g/W). For carbon and energy efficiency, this output drastically lowers the carbon cost per gram compared to typical indoor grows. Achieving 1,324 grams (47.2 ounces) of dry cannabis from a 600W light in a 4x4 tent is exceptional, yielding roughly 2.21 grams per watt. This is an elite-tier result that reflects world-class photosynthetic conversion, highly optimized canopy light distribution, dialled-in CO2 supplementation, and precise environmental control. Growing 1.3kg of dry in a 2x2 with 1 plant is just being silly and not understanding how carbon and energy conversion works towards mass. Took 6 years and 10,000+ Hours to break the 2 grams-per-watt barrier not exactly 600W, in honesty, though—even with modern, high-efficiency LEDs—is an incredible feat that requires hitting the absolute genetic ceiling of the cultivar and maintaining flawless environmental parameters for the space. Photosynthesis is the literal conversion of light energy (photons) into chemical energy (carbohydrates). Leaf temperature, driven by radiation from fixtures and mitigated by latent heat of vaporization (transpiration), dictates metabolic rates. If your room's thermal dynamics are off, enzyme activity inside the plant stalls, grinding growth to a halt. Anyone else pretending to have done so with nothing but Plagron nutrients at 75F is telling porkie pies *cough*, otherwise known as a liar, liar with a bum that's on fire, but it seems that's the new norm these days on GD. *cough cough*. Using copper and zinc plates in the plant medium to form a natural earth battery to assist with Electrochemical Reactance. The moist soil acts as an electrolyte, while zinc serves as the anode and copper as the cathode. Zinc is a highly reactive metal and oxidizes, losing electrons into the soil. These electrons travel through an external wire to the copper plate. The moisture and dissolved salts in your plant medium allow charged ions to move freely between the plates, completing the circuit and generating a small direct current (usually between 0.8 and 1.1 volts). This micro-current subtly alters/the Electrical Conductivity (EC), allowing more effective breaking apart of chemical bonds in the soil (electrolysis), making soil nutrients like phosphorus, calcium, and potassium more accessible to roots. Buried the zinc plates around the sides of the plant pot's root zone and the copper plate in the middle. Ran an insulated copper wire above ground to connect the zinc plate to the copper plate, creating a closed loop. Making sure the soil remains perfectly moist and contains everything it needs; entirely distilled water or bone-dry medium will prevent ion exchange and block the current. Leave that up to the rhizosphere. Currently testing new parameters for a couple of weeks. Seeing what she can do with a new and upgraded ducting closed loop and double the water capacity. Also added 6kg of inoculated biochar along with a slew of small improvements. Keeping an eye on. Zinc toxicity vs. consumption, given how sacrificial zinc is. Want to make sure the biochar stabilizes first. A Synganic closed-loop bioengineering-logic grow room merges synthetic inputs (precision minerals/chelated nutrients) with an organic living soil matrix (microbial life/bio-stimulants), managed via automated, data-driven automation. Master Operating Procedure (MOP): The system balances a sterile environment with a thriving, dynamic rhizosphere, merging the biological resilience of living organic soil with the high-precision chemical control of modern Controlled Environment Agriculture (CEA). Synganic blends a biologically active living soil or microbe-rich substrate with targeted, low-dose mineral or synthetic fertigation to optimize both metabolic yield and secondary metabolite expression (terpenes/flavonoids). What else is alive! Eisenia fetida (Red Wigglers) will continuously process organic matter into plant-available nutrients and aerate the media. Stratiolaelaps scimitus (Hypoaspis mites) provides excellent biological control against fungus gnats and pupating thrips. Armadillidium vulgare (Pillbugs) excel at breaking down tough, woody organic matter and toxic heavy metals. New "Closed-Loop Sealing" Isolates the internal microclimate from external weather, vectors, and pests. Air is scrubbed 264nm UV-C, recirculated, and enriched rather than openly exhausted. Operational Parameters (MOP Framework). Microbes act as biological buffers for the mineral inputs, preventing salt toxicity and ensuring continuous nutrient availability. Precise management of Vapour Pressure Deficit (VPD) day and night to force optimal stomatal conductance without stressing the biological media. Strict clean-room protocols prevent pathogen intrusion while maintaining non-sterile, highly active beneficial bacteria and fungi populations in the root zone. Looking at a grow room as a closed-loop system changes everything. You aren't "growing a plant"; you are managing a mass and energy balance equation where the plant is a biological transducer. Every watt of light introduces sensible heat. Every drop of water turns into latent heat via transpiration. When a deficiency appears, a grower flushes or adds a bottle of "magic" additive. A master looks at the HVAC duty cycle, realizes the dew point spiked, the stomata closed, and calcium transport stalled due to lack of transpiration, not lack of nutrients. Protocol-driven logic can be automated, replicated, and optimized. Legacy growing and anecdotal habits fail the moment the room moisture volume changes. ADD CALMAG! Comprehensive Substrate Composition: Because why not. 1. Substrate Base & Aeration Media Expanded Clay Aggregates (Hydroton Pebbles) Coir Chunks & Horticultural Coco Coir Sphagnum Peat Moss Horticultural Perlite Horticultural Vermiculite Horticultural Pumice Volcanic Basalt Rock 2. Mineral Amendments & Soil Conditioners Agricultural Gypsum (Calcium Sulfate) Wollastonite (Calcium Silicate) Dolomitic Limestone (Calcium Magnesium Carbonate) Basalt Rock Dust (Trace Mineralizer) Azomite (Micronutrient-Rich Volcanic Ash) Glauconite (Greensand) Crushed Seashells (Calcium Carbonate Source) Pyrolyzed Carbon Feedstocks (Biochar & Horticultural Charcoal) Shungite (Carbonaceous Mineraloid) 3. Organic Nutrient Amendments Steamed Bone Meal (High Phosphorus) Dehydrated Blood Meal (High Nitrogen) Fish Bone Meal (Phosphorus & Trace Calcium) Cold-Processed Kelp Meal (Ascophyllum nodosum) Dehydrated Moringa Oleifera Powder (Botanical Nutrient) Spirulina Powder (Arthrospira platensis / Cyanobacteria Nutrient) Marine Crustacean Biomass (Shrimp & Crab Chitin) 4. Biological Inoculants & Organic Acids Mycorrhizal Fungi Inoculant (Endomycorrhizae / Ectomycorrhizae) Vermicompost (Premium Worm Castings) Humic & Fulvic Acids (Concentrated Humates) Soil-Plant-Atmosphere Continuum (SPAC): An ecological concept referring to the pathway of water moving from the soil, through the plant, and into the atmosphere. Humidity of the air dictates the moisture in the medium, which dictates the rate of pull from the terracotta stakes 15 in total. Terracotta (unglazed, low-fired clay) is highly porous, acting as a breathable, permeable membrane that transports water based on the moisture gradient between the potting medium (soil) and the surrounding air. White terracotta and brown terracotta often have different pore sizes and overall porosity, primarily driven by differences in clay composition, impurities, and firing temperatures. While both are considered porous, brown terracotta often has higher iron content and impurities that behave as fluxes, affecting how the pores form during firing, while white terracotta is generally derived from more refined clays, with smaller pores making it more suited to pure water. This mechanism is driven by capillary action and evaporation. When the surrounding soil is dry, the terracotta acts as a wick, pulling water out of the pot and into the soil. If the soil is very saturated, the terracotta absorbs water from the soil and allows it to evaporate from its outer surface, increasing the drying rate of the soil. Terracotta tends to keep the potting mix at an optimal saturation point, wicking up more water when the outside surface evaporates water into the air. The greater the difference in moisture between the soil and the outside air, the faster the water transfers through the ceramic. In low humidity and hot weather, the evaporation rate from the terracotta surface is high, creating a rapid drying effect. Newer terracotta pots often have a denser, lighter-toned structure that is less porous than traditional, red-orange terracotta, slowing down the moisture transfer rate. Over time, dissolved salts from fertilizer or tap water build up and block the pores, reducing the permeability of the clay. Water is all that is used or needed, thanks to the biochar and the massive storage bank of nutrients. Just waiting until something creeps up. Clay pot irrigation (Ollas), an ancient farming practice, utilizes this property by burying unglazed jars in the soil, allowing water to slowly seep into the surrounding soil only when the soil dries out. Remember to clean terracotta stakes in mild acid after each grow. Submerge the stakes in a solution of 1 part distilled white vinegar to 3 or 4 parts water. Let the stakes soak for 20 to 30 minutes. You will hear a fizzing sound as the acid reacts with and dissolves the mineral salts. Use a stiff-bristled brush or an old toothbrush to scrub away the loosened residue. Rinse the stake thoroughly in clean water to wash away any leftover vinegar. BOOM good for next grow! Indigenous Amazonians created, or at least significantly enhanced, the fertile, dark soil known as Terra Preta de Índio (Portuguese for "Indian Black Earth") by incorporating biochar and other organic materials into the soil. This anthropogenic (human-made) soil technique, which dates back roughly 2,500 to 8,000 years, allowed ancient civilizations to flourish in regions with naturally poor, acidic, and nutrient-poor tropical soils. Electrical Conductivity refers to how easily a material or solution allows electrons or ions to flow continuously when an electrical potential is applied. Electrochemical Reactance is the opposition to alternating current (AC) caused specifically by the temporary storage of energy in electric or magnetic fields, rather than energy being lost as heat. Reactance does not directly alter a material's intrinsic electrical conductivity. Instead, it dictates how the system stores and releases energy over time, which creates a temporary barrier to current flow in AC circuits. Together with resistance, reactance makes up total impedance. Electrical impedance (the combination of resistance and reactance) in the rhizosphere dictates how easily ions and water move into plant roots, directly impacting the Electron Transport Rate (ETR). High impedance restricts ion mobility, leading to nutrient deficiencies that decrease ETR and stunt overall plant growth. Electrolysis in the rhizosphere can reduce the direct ATP energy cost for a plant by electrochemically altering soil chemistry, changing pH gradients, and splitting or reducing compounds so that nutrients become easier to absorb or break down. Electrolysis uses an external electrical voltage to drive chemical reactions (like splitting water or reducing ions). This external electricity performs thermodynamic work on the soil solution. Rather than directly fueling plant enzymatic machinery or lowering biological ATP synthesis costs inside root cells, electrochemical reactions alter surrounding nutrient forms (e.g., changing pH, altering redox states, or breaking tight mineral bonds). By electrochemically making mineral ions more mobile or bioavailable, the plant may spend less root exudate carbon or membrane-transport ATP trying to scavenge locked nutrients, though the plant's baseline respiration and ATP costs for active uptake still apply. Laws of math are conceptual, laws of math are universal, the laws of math are invariant, and the laws of math are exceptionless. The laws of mathematics are the foundational rules that govern structure, quantity, space, and change. Unlike the laws of physics, which describe how our specific universe behaves, mathematical laws are absolute truths independent of physical reality. Think of electricity like highway traffic to easily understand the difference between the movement, the road, and the speed. •Electron Flow is the traffic (the cars moving). •Electrical Conductivity is the highway (how wide and smooth the road is). •Electron Transport Rate (ETR) is the speedometer (how many cars pass by per second). 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. 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. ATP (adenosine triphosphate) is the primary energy carrier in cells, including plant cells. It powers various cellular activities like nutrient uptake, protein synthesis, and cell division. Without ATP, the plant's metabolic machinery would grind to a halt, regardless of the presence of nutrients, oxygen, or carbon. Nutrients, like nitrogen, phosphorus, and potassium, are essential for building plant tissues and various molecules. They are incorporated into proteins, nucleic acids, and other vital compounds. While crucial, their uptake and utilization rely on ATP-driven processes. Oxygen is vital for cellular respiration, a process that generates ATP. While plants can produce ATP through photosynthesis, oxygen is essential for maximizing ATP production in mitochondria through oxidative phosphorylation. Carbon is the backbone of all organic molecules, including carbohydrates synthesized during photosynthesis. It's the fundamental building block of plant structures and fuels. However, its incorporation into organic molecules is also ATP-dependent. We don't grow we facilitate energy conversion. Everything is energy. Energy is represented by numbers. Numbers are frozen music. Music is moving sacred geometry of the Uni-verse.
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@Reyden
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Continua il tragitto verso metà della fioritura e ieri sono state sciacquate solo con acqua a ph neutro. The Sin è la pianta più alta di tutte con foglie più strette presentando caratteristiche più Sativa..quando entro nel box sento odori buonissimi 🤤 da rimanere lì ore per cercare di catturare più possibile ogni sfumatura della sua fragranza 💜non resta altro che aspettare 🌱👌
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Week 3, check Had to battle fungusgnats again:( thought i had em all. So did a h202 3% 33/66 mix with water and flushed again-_- I also added a 1000 predatory Mites in the ballpark and nematodes. I also picked 2 new toys up microscope videorecorder 50/500x and a IR temp reader. Chasing the perfect VPD Rock on Growmies
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The buds are getting fat and tasty. Looking at the plant the harvest won't be the best but hopefully the smoke will be nice 🙏☘️😀
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@Kcnvp
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Dates aren't lining up well since I didn't document the germination process . From now on each new post will start with what day the plants are on e.g "Day 20" Day 46 They have grown a lot since last week event though I've neglected them a little. They're showing signs of what I believe to be a nitrogen and phosphorus deficiency. Maybe some cal-mag too. I let them dry back too far a couple times in the past week. I probably should've transplanted sooner, but here we are! Transplanted into 5 gallon plastic pots with extra drainage holes drilled into the bottom. I have not been good recently with taking pictures and note keeping. My process for transplanting was the same as the 1 gallon process. I mixed together FFHF potting soil with roughly 15% worm castings, and roughly a 3-4 cups of perlite. Gently removing the plants from the 1 gallon pot; I used a water bottle to wet the root mass with some de-chlorinated tap water ph'd to 6.5. I then evenly distributed a heaping tablespoon of Xtreme Gardening Mykos Mycorrhizae over the moistened root mass. Into the middle of pre filled 5 gallon pot, I added a little more Mykos before inserting the plant into it's new home. I added more soil mixture and lightly packed them in. Then I watered 1.5L of plain de-chlorinated tap water ph'd to 6.5. No defoliation, I'm letting them bounce back after transplanting. In hindsight they definitely needed a feeding of nutrient solution and an increase in volume watered as well. Whoops.
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3 topping done, transplantation done 27 days behind She have this week to recover and prepare plant to pre flowering
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All feeds with nutes use either a whole ratio or combination of "Veg Mix" and "Bloom Mix"concentrates DILUTED in water until a total ppm of add in is reached using a (Total Dissolved Solids)TDS Meter measured in PPM (parts per million). The "Veg Mix" concentrate will eventually be added in smaller ratios and "Bloom Mix" concentrate what will eventually replace the "Veg Mix" concentrate entirely with the ppm and ratios listed when I feed. Veg mix recipe is on week 3. Bloom Mix recipe is on week 5. Day 77/7 PPFD is between 470 and 700 again with little vertical growth after all the HST/LST over last few days. I used 15 minutes of UV mid day with 15 minutes (30 total) IR before and after main light timers. VPD was better today with 73F/55%RH/40%ILV Turning off the humidifier was the key this time. All in all she looks fine for the day, I am hoping to get the new tent up tomorrow and will see if I can get her to fully stretch out again to allow each cola enough space to bulk with light and wind Day 78/8 Tent conditions improved today because I was able to fix the sizing issue - I now have a Spider Farmer Pro-Grade Grow Tent, 48"x48"x80" VPD is harder to get the humidity down in so I may have to put in a second de-humidifier or open another vent port, currently I have a 6" ILV pulling against a 4" open air vent hole. I would have tinkered with it a bit more but I was getting close to lights out so I left it. VPD for most of the day was 74F/55%RH/40%ILV in the Mars Hydro Tent. I current have 68F/65%RH/40%ILV for overnight. Lights are about the same as yesterday with 80% power I am getting 470 to 700 ppfd from 42" from soil to light and since the plant is about 20" that gives her about 22" leaves to light. Im currently using the same 2x4 Bloom Plus LED light centered in the tent but I have another 2x4 Bloom Plus scheduled for delivery on Monday or Tuesday. - She had 20 minutes of UV and 30 minutes total of IR (15/15) I am hoping this allows her to spread out and receive full light/air on each cola - So I also placed 2 more fans in the tent at plant level to help circulate the air better. Day 79/9 PPFD was little changed since yesterday as was vertical growth (I think she's trying to spread back out again.) - ppfd was between 480 and 710 with 25 minutes of UV and 30 of IR (18/18) VPD was a struggle to get under 60 - I now have 2 de-humidifiers in teh tent witht the ILV set to kick up anytime she hits 62%RH. Mostly though I was able to get it down to 55 to 61 - Temps are easier to control with 4 fans and the ILV triggers. Day 80/10 VPD was 74 to 77F today with humidity still pushing 62% with 2 humidifiers today when the tent was closed. Otherwise I was able to reduce the humidity to 35 to 45% with the door open long enough (in MN fall with temps are around 30s) So I had my door open for a bit today because I installed my second Bloom Plus XP2500 LED lights today and had to reroute most of the wires. PPFD after completion ranged from 550 at lowest to 750 - I only did 20 minutes of UV since yesterday was her first day at 20. I also increased the IR to 30/30 with 15 before and after lights on/off - so a total of 1 hr total at lights on/off Feels dry so I plan to feed tomorrow morning with about 3 gallons of 6.3ph de-chlorinated tap water feed in a 10:90 ratio of Veg/Bloom mix Day 81/11 I fed her today with 3 gallons of 6.4ph de-chlorinated tap water with a 25:75 ratio of Veg/Bloom mix at 500ppm. Runoff showed a ph of 6.5 and 1750 ppm. VPD was more stable today after I opened another open air vent hole on another side of the side. 76F/55%RH with ILV on auto when needed. PPFD ranged from 550 to 750 again with the lights at about 42 and she's now 34x28wide x22 tall, so about 20 inches from lights. Still only hit her with 20minutes of UV and an hour of IR with 30/30 at main light schedule with 15/15 before and after. Day 83/13 Almost two weeks since flip. Turning the lights down yesterday seemed to help, little to no new burn progression on those identified yesterday and new growth with no new burn. Will continue to monitor. Nute transfer seems to also slowed progression with the leaves only turning brown where they yellowed before and little to no new yellowing. VPD doing better as well - I turned the heat down just slightly so now avg temps are about 73 - 75F and humidity under 59%RH with the OLV set to auto for limit controls PPFD most unchanged after I started the day with a little LST on the center cola that was getting ahead of the rest. I also released teh last branch being tied - now all colas are simply help by the tomato rings. Once it was leveled PPFD was 750 at highest and about 550 for the lowest.
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No problems just steady grow haven't added any extra nutrients
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@DevilsBud
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New week for the purple berry Kush There doing great like every bean coming from @spliffseeds 👌🏻 Will be updating Tru the week
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11/30 - 12/5: The bigger Zenzations has the beginnings of a small apex flower. Both Zenzations continue to look great, but the big story is the turn around the Black Jacks have made. They've tripled in height in 2 weeks and have nice, long lower branching. Both Gorilla Girls are stretching well now and have huge fan leaves, so I think they've still got some stretching to do. I dialed back the lights to 13 hours of daylight on the 4th. 12/6: I fed them today.
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Nov 22nd - Day 36 - FLUSHED - Flushed plants as worried about lockout - I swear I am now getting a small hint of the cheese small but it may be in my head - More trimming and LSTing Nov 23rd - Day 37 - Switched to the HPS - Installed HPS during the off period to make sure bulb was not hot - Not essentially need but some sites/growers suggest even for autos to switch from MH to HPS during flowering as it may increase trichome production Nov 25th - Day 39 - Feeding time - Added more bloom to this batch as it is for the flowering stage and i am hoping to encourage big buds - Very dry conditions may need to invest in a humidifier for the next grow
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🌸 Week 10 – Gorilla Cookies Auto Pheno Hunt Another week has passed, and the girls continue to impress with their flower development. 🌸🔥 The canopy is filling out nicely, and every pheno is putting more energy into building bigger, denser buds. It's exciting to see how each phenotype is expressing its own unique characteristics as flowering progresses. 📈 Current observations: Bud development has been excellent across all six phenos. We performed another lollipopping session and removed additional fan leaves to improve light penetration and airflow around the buds. The canopy is much more open now, allowing the lower flower sites to receive more direct light. Pheno #6 continues to surprise me. Even though it was the slowest plant in the beginning, it is now steadily developing its flowers and catching up nicely. Pheno #4 is already showing a very unique terpene profile. It has an incredibly sweet aroma with strong Kush-like notes, making it one of the most exciting phenos so far. 📊 Current environment: Temperature: 31°C Relative Humidity: 63% VPD: ~1.66 kPa SANlight fixture at maximum height Light intensity: 90% 🌿 Looking ahead: The plants are now entering one of the most exciting stages of the grow. Over the next few weeks, the flowers should continue to swell, resin production will increase, and the terpene profiles will become even more pronounced. I'm really looking forward to seeing which phenotype delivers the best combination of structure, aroma, and overall flower quality. 💬 Which pheno would you keep as a mother based on what you've seen so far?
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@Wastent91
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Allora, come avete potuto vedere con i vostri occhi, i questa ragazza ha avuto un sacco di problemi fin dall inizio, ha avuto stress da calore, stress da condizioni non stabili come avrei voluto di umidità /temperatura, ma nel complesso è uscita una ganja, un prodotto automedicante davvero interessante, da sperimentare prossimamente con attenzioni migliori! Purtroppo non ero abituato a gestire così tante oaintae in uno spazio così ridotto , al prossimo ciclo manderò in fioritura una settimana prima, altrimenti mi ritroverò con dei mostri un bel po' difficili da gestire in una box come la mia , ma devo dire che sono rimasto davvero sorpreso dei risultati che sono riuscito a raggiungere, merito della mia sconfinata passione per questa meravigliosa pianta magica, e anche grazie a voi che mi seguite! Ne vedrete delle belle prossimamente! Un buon 420 a tutti voi!, fumate e state tranquilli! 💪😸😽💨
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@Noobie457
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Going pretty well could someone tell me how it’s looking