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Sundae Driver- (Fruity Pebbles x Grape Pie) - The start of flower stage. .
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@Kirsten
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We're starting to make some progress, leaves are looking good. Gaining some decent height, not too much. I'm probably going to top her, so I'm keeping an eye on the optimal time to do that. This week, I did not water, as the soil was sufficiently hydrated. So not much to report here! Thank you for stopping by this week and hanging out! 😉💚✌️🍃😊
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11/7/2022: decided to lower my scrog net 2 inches. Was probably a little late, so I had to do some super cropping to get the plants under the net. A little concerned since they are autos, but the plants are all still very healthy, so hopefully thete won't be any issues. Watered with the coconut powder and added some BuildASoil BuildABloom for the first time today. Also dropped the humidity down to 55% now that flowers are starting to develop. Puts my VPD at about 1.45. 11/9/2022: watered about 1.3 liters each, with Fish Shit, Bio-Phos, ThermX 70, and coconut powder. The snapped branch and supper cropping seem to be doing well. Looks like all three plants are near the end of stretch. The Strawberry Gushers continues to stack, and a few hairs are starting to brown. The tricomes are starting to develop as well. She smells funky. Almost sweet and sour. Something really unique. Excited for it to continue to develop. The Newberry and Orange Bubblegum aren't smelling as much yet, but they are a week or two behind. The Newberry has a bit more of a musky smell, but pretty faint still. 11/12/2022: fed all three a compost tea yesterday and they loved it . Been praying all day. The Strawberry Gushers has a minor purple stem, so I thought the tea might help. This may just also be the genetics, since this strain tend to turn purple in late flower. Figured the tea couldn't hurt and the girls are all reacting positively. Otherwise, thay all remain healthy. 11/13/2022: made a sprouted seed tea today using corn and watered about 1.3 liters to each plant. Avg. VPD:1.45 PPFD: 700 DLI: 45
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Pheno 1: strong natural tart cherries with a slight candy Pheno 2: loud cherry candy Pheno 3: cherry fun dip Pheno 4: cherries mashed with earthiness Pheno 5: the strongest cherry pheno I’ve ever smelt. Just loud cherries in your face. I kept pheno 3 and 5. I pressed both into rosin and the terps were insane it smelt like I worked a double at the marischino cherry factory. The terps on 3 were cherries on the inhale with a candy fun dip exhale (absolutely up my alley). Pheno 5 was the most in your face cherry I’ve ever tasted. It was straight cherries throughout the inhale exhale with a slight tart/candy on the back end. I have found my cherry phenos for my future business. Thank you for riding this journey with me. Harvest results on my YouTube channel link in my bio!
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@TacoKart
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Almost ready for harvest! Watching the trichome production and keeping an eye out for cloudiness. Leaves are turning yellowish as the plants suck all the nutrients out to get nice a plump. Trimmed all the fan leaves off to prep for harvest. Switched to flushing, keeping the water between 5.8 and 6.2 pH and switched how we water slightly to make it easier. Will start harvest next week! I also recently went through all the weeks on the grow diary and redid and added a lot of pictures if you want to go back and take a look!
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Que pasa familia, vamos con la quinta semana de floración de estas Monster Maker feminizadas de Sweetseeds. Vamos al lío, las plantas se trasplantaron a macetas de 7 litros. El ph se controla en 6.5, la temperatura la tenemos entre 24/21 grados y la humedad ronda el 50%. El ciclo de crecimiento puse 12h de luz, el foco está al 100% de potencia. Tengo visitantes, trips que combatiremos con control biológico. Me gustaría estar más encima este cultivo pero la salud me está impidiendo un poco este 100% con el proyecto. - os dejo por aquí un CÓDIGO: Eldruida Descuento para la tienda de MARS HYDRO. https://www.mars-hydro.com Hasta aquí todo, Buenos humos 💨💨💨
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@Kushizlez
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Day 33-40 (May 24th-May 31st) (Day 34) I just found a herm branch on the tight blueberry pheno. It looks like a random pollen sack opened right above a lower branch. I removed the sack but I saw a small amount of dust fall onto one of the lower branches. I’m going to leave it to see if it will pollinate that small branch at all. I spent a good 5 minutes looking closely for bananas or claws but couldn’t find anymore. The main bud is clearly unaffected so I will just leave it unless it is visibly seeding itself. Too bad because I’m really excited for this plant. (Day 36) Not a lot has happened since I flushed them. Growth actually looks healthy and I don’t see any deficiencies on anything yet. (Day 37) Both of these badazz cheese phenos are picture perfect and easily hold up against Canadian and California quad grade. I might try to reveg them at the end and take some clones. They have this unique pungent, grassy, sour milk smell that is just wonderful. The density and bud structure is looking great too. This whole plant will probably take 3 minutes to trim if that. (Day 38) Just found a banana on the shitty blueberry pheno. This pheno is trash and I would honestly throw it away if it didn’t mess up the 3 perfect rows. It has almost no frost, no smell, is airy and has bad structure. I’ve actually never seen a plant with such little frost. Even outdoors. (Day 39) I think most of this tent will be done by day 60 but I will probably ride it out until day 70+. I don’t think the blueberries or the jacks will fill out very much either way but taking it too day 70 will ensure maximum production from each plant.
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@Cultivate
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Week 8 Looking absolutely huge😂 They’re so tall and wide . Lots of healthy green leaves and strong roots. I was worrying a lot about sex issues as when I did my research I found out they’re quite common to hermaphrodite. Was really worrying but all calyx’s have female signs (so far🙏🏻) so pray for me brothers&sisters.
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Info: Unfortunately, I had to find out that my account is used for fake pages in social media. I am only active here on growdiaries. I am not on facebook instagram twitter etc All accounts except this one are fake. Harvest day 72 since the time change to 12/12 hrs. Hey guys :-) Finally the time has come . The lady was harvested. After the trichomes have been checked (70% milky 30% amber) as always, it was left in complete darkness for 48 hours before it was neatly trimmed by hand. After trimming, she was put back in the drying tent on nets. There they are allowed to dry for the next 8-12 days at 62% humidity before they are put into the jar to ferment with 62% boveda packs. After about 4-6 weeks in the jar I will swap the 62% boveda pack for a 58% boveda pack where it can be ready for another 4-6 weeks to enjoy :-). As always, the remains of the leaves are used to make Ice o Lator and oil. Of course, as always, there is a final update during the fermentation process. Until then, I wish you all a lot of fun with this update. Stay healthy 🙏🏻 and let it grow 👍. You can buy this Strain and Nutrients at : https://greenhouseseeds.nl/ ☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼 Green House Seeds Company Cup Clone 🏆 Type: Wonder Pie ☝️🏼 Genetics: Wedding Cake x OG Kush 👍😍 Vega lamp: 2 x Todogrow Led Quantum Board 100 W 💡 Flower Lamp : 2 x Todogrow Led Cxb 3590 COB 3500 K 205 W 💡💡☝️🏼 Earth: Canna Coco ☝️🏼 Fertilizer: Bio Grow Feeding ( GHSC ) , Enhancer ( GHSC ) , Bio Bloom ( GHSC) ☝️🏼🌱 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 5.8
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She is frosty… 25 more days she getting the
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@TOTEM
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Still drying up from last week flush, so no ferts. Will start again next week as soon as the soil is ready to accept new water. I removed all the lower branches that couldn’t reach the light and I moved the ceramic heat lamps in the bottom of the grow box to help the drying process of the soil. But the big news is that she finally started flowering! And this was the last who still was stuck in pre-flowering phase 😃
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Edit: I just wanted to share a couple photos and a video that I took with my new WiFi microscope. Best $20 I’ve spent in a while. Ladies and gentlemen it’s the moment you’ve all been waiting for. Live from the Alaska arena IT’S TIIIIIIME! After 15 weeks in the 4x5 custom tent these ladies standing at 38 inches weighing in at a weight to be determined later are going to get chopped down by rear naked shearing this Sunday Sunday Sunday! We’ll sell you the whole seat but you’ll only need the edge!!!! On the real. These ladies have done their job. They’ve bulked up and gotten rock hard with mad trichomes on the sea of upper bud sites. I had a scare with a plant in a nearby tent that was rescued that was a hermie. ONE site right in front of the intake vent got it and was cut immediately. The rest of them were not affected. This strain is nearly impervious to everything from ph to whatever amount of nutrients you want to feed them in a hydroponic environment. I hit them with a massive 2100 ppm of flora series with fox farms beastie bloomz 0-50-30 in the end and never got the fade or burn. The nutrients have been cut out and it straight water for the duration. Friday starts 48 hours of darkness.
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Hi everyone 🤗. Everything is going great 👍. There are no defects or anything unusual :-). Today the Blue Cheese Pheno 1 became the first time rinsed, and now only gets 0.4 Ec water for the next 10 days ca :-). Everyone else needs a while. otherwise there is not much to report this week. I wish you all a nice week, stay healthy 🙏🏻 and let it grow 🌱
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Lights are 58 inches from the main source to the top of the pot and the soil surface. If you added up all the lights in the tent, it would be 1100w-1200w total across 14 lights. Using them all at once is far too much for a plant and incredibly difficult to deal with environmentally. The lights are fixed in position; side lights have dimmers, allowing for pinpoint precision of PPF. Fixed at 58 inches, cannot move them closer to increase intensity. Instead, achieve optimal PPF by distributing smaller wattages across a massive, multi-fixture matrix. Triggering specific plant defenses without melting the canopy. What's the point/blah blah wattage? Never really go above 600W at any one time. Lights come on in the east of the tent and set in the west. At sunrise and sunset, the red-to-far-red R:FR light ratio drops because the sun's low angle scatters red light more than far-red light. This shift reduces active Pfr and increases inactive Pr, mimicking Mother Nature herself. Deployed a lighting system featuring extra 660 nm deep-red and extending the spectrum up to 780 nm achieves the full Emerson Enhancement Effect by simultaneously balancing Photosystem II (PSII) and Photosystem I (PSI) to maximize quantum yield. By pairing deep-red photons with far-red photons, you trigger a synergistic biological response where the resulting photosynthetic rate is higher than the sum of both wavelengths used individually. This practice directly leverages the updated extended Photosynthetically Active Radiation (ePAR) framework. The Emerson effect accelerates plant metabolism and heat capture; you must proactively scale up your ambient room temperature, nutrient delivery, and CO₂ supplementation to prevent the light from stalling out your cannabis plant. UVA stays high all day from morning to night, but UVB peaks at solar noon (middle of 18-hour days) when the sun is peak. Morning color starts at 2k-3k; by noon it goes to 5k- 6k and back to 2-3k for sunset, with differing P:FR at light off. The extra-blue light is to assist with photoreactivation of UVB damage. No more yield loss for me. Using extra blue light for photoreactivation is what I do. Blue/UVA light activates photolyase enzymes, which directly repair DNA damage caused by UVB radiation. But what's the point if it's not for yield? Ultraviolet (UV) radiation—specifically UVA (315–400 nm) and UVB (280–315 nm)—acts as a critical environmental signal that programs a plant's photoprotective genes to unlock its true photosynthetic potential. When growers push crops to their absolute photosynthetic maximum via high-intensity light and elevated carbon dioxide, the photosynthetic machinery easily becomes overwhelmed. Emerging photobiology research demonstrates that UV radiation prevents this limiting bottleneck; it triggers specific transcription factors and signalling networks that fortify the plant's cellular defenses, allowing it to process extreme light levels without sustaining structural damage. There are 8 limiting factors of plant growth; when carbon dioxide becomes the 9th limiting factor of plant growth, it shifts the growth curve from exponential to linear. The restriction after that is "photoprotection" against reactive oxygen species (ROS), managed via non-photochemical quenching (NPQ) and the xanthophyll cycle, which bridges into precise hydrogen and redox dosing. UV radiation, particularly UVA, and the synthesis of zeaxanthin are critical for the xanthophyll cycle to function. It's not chasing purple strains... One likes to call it chasing the limits of growth, trying to make the linear exponential, just like father mathematics prefers. In order to do that, must control every environmental variable and compound the plant’s metabolic rate. True exponential growth means the rate of increase matches the current mass at every stage, requiring a closed-loop system where light, CO2, and nutrition lock into a synchronized upward curve. First, you must attempt to understand what restricts it. Precise hydrogen and redox dosing. Nature mathematically optimizes quantum energy transfer and light absorption efficiency within the photosynthetic machinery, as it naturally dictates energy scaling hierarchies and resonance dynamics. Most won't even understand that; once you do, it changes everything. Constructive interference occurs when two or more overlapping waves meet in phase, meaning their crests and troughs perfectly align. Their amplitudes add together, creating a new, amplified wave with greater intensity than the individual components. Constructive interference is the foundational mechanism that establishes a resonance hierarchy across physical, structural, and acoustic systems. Chromophore spacing is tuned to sub-nanometer precision to match the wavelengths of absorbed light, forcing constructive interference. Light-harvesting proteins form geometric rings and lattices. These shapes act as physical resonators, trapping and focusing the wave energy. This same principle dictates how opera singers shatter glass, how musical instruments resonate, and how bridges withstand structural vibrations. Nature uses the exact same math to harvest a photon as an engineer uses to design a concert hall. When you push high PPFD and elevated CO₂, you create a metabolic bottleneck. The plant cannot process the energy fast enough, leading to electron backup, light-induced damage, and a collapse from exponential growth into a flat, linear rate. UV light acts as the regulatory valve that prevents this collapse. In standard agronomy, Liebig's Law of the Minimum dictates that growth is limited by the scarcest resource. When you maximize water, nutrients, light, temperature, and CO₂, the bottleneck shifts to metabolic processing speed and photoprotection. By controlling the Redox state of the plant using UV, the xanthophyll cycle, and managing ROS, you can prevent the plant from hitting a hard photosynthetic ceiling. Instead of the growth curve flattening out (linear or plateauing due to photoinhibition), the plant continues to compound its metabolic rate efficiently. You are forcing the plant to operate at peak thermodynamic efficiency. By matching the UVB peak with sustained UVA and shifting Kelvin temperatures (2K to 6K), you are damaging the plant just enough to trigger defensive genes, while simultaneously providing the exact light energy needed to repair that damage instantly. UVA radiation and specific blue wavelengths accelerate this enzymatic conversion. Zeaxanthin acts as a structural sponge that absorbs excess excitation energy from chlorophyll and dissipates it safely, preventing ROS formation. Without UV signaling, the xanthophyll cycle cannot keep pace with extreme light, leading to dynamic photoinhibition (yield loss). The addition of Spirulina is primarily for zeaxanthin, as it contains a lot. But on top of that, the active Hawaiian Spirulina in the matrix was cultivated in open ponds using a combination of 100% fresh potable water from Hawaiian aquifers and ultra-pure, deep ocean water containing all 94 trace minerals & elements. Then gently dried using patented Ocean Chill Drying technology and cold-pressed to ensure maximum nutrient levels. Spirulina, a blue-green alga, is rich in nitrogen, phosphorus, and potassium (NPK), making it an excellent source of nutrients for plant growth. Studies have shown that Spirulina can be used as a biofertilizer, effectively replacing chemical fertilizers, especially for nitrogen, with a whopping NPK of 10% (N), 20% (P), and 20% (K). Rich in proteins, amino acids, trace minerals, and plant growth-promoting compounds. Zeaxanthin is a vital plant pigment that accumulates under intense light to drive non-photochemical quenching (NPQ), acting via thermal energy dissipation, direct singlet oxygen scavenging, and thylakoid membrane stabilization. The violaxanthin cycle (or xanthophyll cycle) reversibly converts violaxanthin to zeaxanthin via antheraxanthin to protect plants from photooxidation. Understanding this interconversion is vital for optimizing non-photochemical quenching (NPQ) and pushing photosynthetic limits under high-light stress. Ascorbic acid (vitamin C) is a natural antioxidant that plants produce internally to neutralize harmful reactive oxygen species caused by photosynthesis and high light stress. Acts as a co-factor for enzymes like violaxanthin de-epoxidase in the xanthophyll cycle, which safely dissipates excess light energy. 1g ascorbic acid will neutralize 100% of chlorine in upwards of 30 gallons of tap water. If your local tap water uses chloramines (chlorine bonded with ammonia) instead of free chlorine, you will need roughly 20% to 30% more ascorbic acid to completely break the tougher chemical bond. Molecular hydrogen and hydrogen-rich water act as selective antioxidants that help lower oxidative stress. They neutralize toxic reactive oxygen species like hydroxyl radicals and boost natural antioxidant defense systems in biological and plant systems exposed to high-intensity light or abiotic stress. UVA and UVB act as stress signals that upregulate the plant's secondary metabolism. It forces the plant to build an internal "sunscreen" (flavonoids and anthocyanins) and fortify its cellular defenses before the peak solar noon crisis. This keeps the metabolic highway open. In nature, the ambient ratio of UVA to UVB at solar noon sits roughly between 10:1 and 20:1 (depending on latitude and elevation). In a high-PPFD indoor matrix, maintaining a strict ratio—often aiming for around 12:1 to 15:1 UVA to UVB—provides the optimal signaling threshold. Balancing Far-Red (FR) light at "light-off" to manage the phytochrome photo-equilibrium (Pfr to Pr conversion) in tandem with the UV schedule. Omg, the logic. Hydrogen concentration and redox signaling as secondary messengers in this high-intensity loop. Under the intense solar noon matrix, the pH of the thylakoid lumen drops. This acidic environment activates the enzyme Violaxanthin De-Epoxidase (VDE), which converts violaxanthin into the photoprotective zeaxanthin. VDE cannot function in a vacuum; it strictly requires ascorbic acid (Vitamin C) as an electron donor to run this conversion. If a plant undergoes heavy light stress and runs out of internal ascorbic acid, the xanthophyll cycle stalls. The plant can no longer engage in Non-Photochemical Quenching (NPQ), leading to immediate singlet oxygen O2 formation and destruction of the thylakoid membrane. This is "The Ascorbic Acid / Xanthophyll Engine" Using ascorbic acid to neutralize chloramines in your water isn't just protecting your rhizosphere biology it actively prevents the degradation of your nutrient solution's redox potential before it ever touches the roots. When pushing plants to the absolute edge, traditional antioxidants can be a double-edged sword because they blindly neutralize all free radicals. This is a problem because some Reactive Oxygen Species (ROS) act as critical signaling molecules telling the plant to grow. Molecular Hydrogen H2 is the Selective Kill-Switch. Molecular hydrogen H2 is a revolutionary tool because it is a selective antioxidant. It ignores beneficial signaling ROS (like mild hydrogen peroxide) and targets only the most destructive, cell-shattering radicals—specifically hydroxyl radicals OH) and peroxynitrite. By dosing hydrogen-rich water or managing hydrogen redox signaling, providing an emergency pressure-release valve for the plant's electron transport chain. It keeps the cellular environment stable enough that the plant never has to downregulate photosynthesis to protect itself. This maintains cellular voltage. To trigger this defensive matrix without stunting the plant, you cannot simply blast UV indiscriminately. You must use UVA as the "scout" and UVB as the "enforcer. High UVA acts via the cryptochrome and phototropin photoreceptors to upregulate the expression of the HY5 transcription factor and prime the VDE enzyme. When the sharp spike of UVB hits at solar noon via the UVR8 receptor, the plant's biochemical "sunscreen" (flavonoids and anthocyanins) and its zeaxanthin pools are already pre-staged and waiting. This prevents the temporary stunting or "lag phase" usually associated with sudden UVB exposure." Closing the Loop: Far-Red End-of-Day (EOD) Synergy The final masterstroke is aligning this UV defense with a Far-Red (FR) lights-off routine. The Red-to-Far-Red Drop: At the end of the photoperiod, knocking out the blue/UVA spectrum and leaving a targeted burst of pure Far-Red (730nm) instantly flips the plant’s master switch. It converts active Pfr to inactive Pr in minutes rather than hours. Why this matters for the UV loop: UV radiation and high-intensity lighting keep the plant in a highly alert, photoprotective state that requires massive ATP expenditure to maintain. By forcing an immediate Pfr/Pr) conversion at lights-out, instantly commanding the plant to cease defensive expenditure, lower its metabolic respiration rate, and transition directly into nighttime cellular repair and carbohydrate translocation. You are maximizing the efficiency of its "sleep." every ounce, every last piece. Highly synchronized biological dance, balancing the exact input of electrons with the exact mechanism to dissipate them safely when they overflow. Peace.
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Buds are growing, pistils are getting orange, harvest is approaching! Parameters : ------------------------------------------- Humidity range : 60-75% depending on the sun Temperature range : 21-27°C depending on the sun SUN Average : sunny
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Pre-flower time... Top dress feeding for the first time for this lady added with some worm casting. Switching lights to 12/12 in a few days, Monday but until then each day I'll decrease the lights. Other than that things have been super easy, once again she's strong. She's thick she's healthy she's happy. If I can count correctly I may have about 16 tops, so things will be clear later on In flower. We'll see the true tops. Plus she is putting off a really leafy greeny smell, if that makes any sense. Other than that looking good
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@Bills1995
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Everything is looking good. Temperature and humidity under control. Tryed out a 24 hour light schedule for a week no difference so will be switching back to 18-6 to avoid having to water every day. Ghetto trellis 😂
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@GrowerGaz
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Sadly th police came and took my harvest the day before harvest , so the journey ends here