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Welcome to Flower Week 2 of SuperStrains Amnesia I'm excited to share my grow journey with you from my SuperStrains Project . It's going to be an incredible ride, full of learning, growing, and connecting with fellow growers from all around the world! For this Project , I’ve chosen the Feminized Photo Strain Amnesia : Here’s what I’m working with: • 🌱 Tent: 120x60x80 • 🧑‍🌾 Breeder Company: SuperStrains • 💧 Humidity Range: 60 • ⏳ Flowering Time: 10 Weeks • Strain Info: 25%THC • 🌡️ Temperature: 26 • 🍵 Pot Size: 20 • Nutrient Brand: Hy-Pro • ⚡ Lights : 600W x 2 A huge thank you to SuperStrains for allowing me to try my Best with this amazing collection from Photo Strains they managed to Sponsore side by side with theyre Hy-Pro Nutriets . Big thanks for supporting the grower community worldwide! Your genetics and passion speak for themselves! I would truly appreciate every bit of feedback, help, questions, or discussions – and of course, your likes and interactions mean the world to me as I try to stand out in this exciting competition! Let’s grow together – and don’t forget to stop by again to see the latest updates! Happy growing! Stay lifted and stay curious! Peace & Buds!
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Nice strain to grow overall especially for the terps it produced, yield was more on the low side as expected from one for these "hype" strains or whatever you want to call them.
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@Dabking
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Buds fattening up. Looking to be at least a 4-7 ounce dry weight harvest .
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Hi guys, Welcome back to Queen Peaky's Grasslands Second week of rinsing to remove all residues from the soil....my god...have you seen what infinite joy these buds are?Tell me what you want .... but when you manage to make a phenotype of these qualities ... there is no comparison with an autoflowering
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@Luke_Lee
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-04.07.2024 The second week of the vegetative phase begins today. the plants look really good so far. from this week on they will get some fertilizer 1ml of BioBizz Bio Grow to 1 liter of water. Each plant was then watered with 500ml. The lamp continues to hang 75-80 cm above the plants. measured values with the Photone App: Ppfd = 425-430 DLi = 30-31 -05.07.2024 Just a visual check Soil still felt moist. -06.07.2024 Just a visual check Soil still felt moist. -07.07.24 The soil was dry and each plant was watered with 500 ml of water. They look really good, maybe they will get some LST during the week. -08.07.2024 Visual inspection. Soil feels moist. the light intensity has been slightly adjusted, measured values with the Photone app: ppfd = 500-515 DLi = 34-35. The light intensity is increased slightly over the course of the week, so that the third week of vegetation begins with a DLi value of 40 and a Ppfd of 600. -09.07.2024 Visual check The soil felt a little dry, the plants were watered with 250 ml of water per plant. Light LST was also applied. The light intensity was increased slightly, measured with the Photone app: Ppfd = 540-550 DLi = 37.5-38.5. -10.07.2024 Today is the last day of the second vegetation week. The plants look really good, the soil still felt slightly moist The light LST has been slightly readjusted.
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LSD Zamnesia Tripping 🙂 | Fresh Frozen, Ice Water & Temple Balls — Week 16 From Seed First of all… Yes 😄 We are once again dividing the harvest reports into multiple chapters, and once again we apologize for that. But honestly, there was simply no way to fit: * harvest, * drying, * trimming, * curing, * smoke review, * macro photography, * fresh frozen work, * washing, * extraction, * and hash making… …into a single GrowDiaries update without rushing through important parts of the process. And this part? This part deserved its own spotlight completely. Because this week was not about flower anymore. This week was about resin. Living resin. Fresh frozen material. Ice water extraction. Patience. Cold temperatures. Sticky hands. And slowly transforming trichomes into beautiful hash. For everyone joining only now, quick recap: These LSD girls were grown under 12/12 from seed from the very beginning. Minimal training, mostly natural structure, gentle leaf manipulation, and environmental balance instead of aggressive intervention. Part of the harvest was dried traditionally and already covered in the previous report. But another part… …never got dried at all. Straight during harvest, selected flowers were removed fresh from the plants and immediately vacuum sealed before going directly into the freezer. No drying. No curing. No waiting. Fresh frozen. And that changes everything. The goal here is preservation. When flowers are frozen immediately after harvest, a large portion of the volatile compounds: * terpenes, * flavonoids, * aromatic compounds, * and delicate resin characteristics… …can remain much closer to their living state compared to traditionally dried material. This is why fresh frozen extraction became so respected in modern hash making. It captures a version of the plant that only exists for a very short moment in time. Alive. Wet. Fresh. Fully expressed. And honestly? Opening those frozen bags weeks later felt like reopening harvest day itself 😄 The flowers still looked incredibly resinous even after sitting frozen for weeks waiting for wash day. Now let’s talk process. For the wash itself, we used the Bubbleator machine courtesy of Zamnesia , and honestly huge thanks to them for providing it. They knew I wanted to start exploring ice water extraction properly, and they were kind enough to support the journey. The setup itself is actually beautifully simple. First: ice. Lots of ice 😄 The machine was filled partially with ice first before adding the fresh frozen material inside the working bag. The flowers themselves were placed inside a closed 220-micron washing bag. This is important because the bag keeps the plant material contained while still allowing the trichome heads to separate during agitation. After placing the material inside: * more ice on top, * cold water added, * everything submerged, * and then… …we waited. Around 30 minutes or so. And this step is actually extremely important. A lot of people think washing starts when the machine turns on. But honestly? The wash starts before that. This resting phase allows the frozen material to: * slowly rehydrate, * absorb water again, * become fully saturated, * and most importantly… * become extremely cold throughout the entire plant material. Why does this matter? Because trichomes become brittle at very cold temperatures. The colder everything gets: * the easier the resin heads separate, * the cleaner the release becomes, * and the less physical force is required. That is also why ice exists under and above the material: * lower temperatures evenly, * protect the resin, * and maintain the cold environment throughout the wash. Once the water temperature approached near freezing… …the machine came alive 😄 And honestly? Watching the water slowly transform during the wash is always magical. At first: just ice, water, and flowers. Then slowly: foam, cloudiness, resin separation, and finally that beautiful milky golden water hash makers love seeing appear. Meanwhile on the side, we prepared the filter bags. We did not use every single micron separation individually because honestly sometimes over-separating becomes unnecessary depending on goals and material quality. Instead, we focused on collecting the grades we actually wanted to work with and enjoy. And then came one of the most satisfying parts of the entire process: Collection 😄 Slowly lifting the bags. Watching the resin gather. Carefully scraping. Separating grades. Observing texture and color differences. Beautiful creamy resin everywhere. Some lighter. Some slightly darker. Some sandy. Some greasy. Every layer carrying slightly different characteristics. After collection, the resin was carefully freeze-dried. And this part also requires patience. First freeze drying. Then breaking it apart. Then more drying. Then more waiting 😄 Depending on environment and conditions, full drying can take several days because trapped moisture inside hash is dangerous long term. Rushing this step can ruin months of work later. In this case, the process stretched closer to about a week before everything felt properly stable and ready to work. And honestly… This is where the magic really started. Once dry enough, we allowed the hash to rest briefly before beginning the hand-working process. No extreme heat. No giant pressure. No fancy machinery. Just: room temperature, body warmth, gentle pressure, folding, rolling, stretching, and patience. The room itself stayed around 15°C, which turned out to be perfect for working the resin slowly without overheating it. And this step matters far more than many people realize. When hand-working hash properly: * oils redistribute, * compounds begin merging, * terpenes spread through the material, * oxidation starts slowly, * texture evolves, * and curing begins transforming the resin itself over time. You are not simply “rolling hash.” You are starting a living curing process. And slowly… The texture changed completely. From sandy loose resin… to creamy material… to sticky dough… to smooth beautiful temple balls. Honestly, seeing that transformation happen in your hands never gets old 😄 Final result? Three temple balls total: * two smaller ones from smaller micron collections, * and one large main temple ball that became the true star of the session. Final weight: 46.5 grams.( big one ) And honestly? I was extremely happy with that result. Especially considering the quality, texture, color, and how beautifully this LSD washed overall. Once formed, the temple balls were wrapped carefully in parchment paper before being vacuum sealed for long-term curing. And now? They rest. Months. Maybe longer. Waiting. Because the goal here is not “fresh hash.” The goal is evolution. Traditional temple ball style curing allows: * oils to redistribute, * compounds to merge, * texture to transform, * aroma to deepen, * and the entire resin profile to mature over time. Almost like aging wine. Or curing cheese. Or fermenting traditional products slowly and intentionally. This is medicine with patience built into the process. And honestly… That part alone deserves respect. We also included: * detailed process photos, * collection stages, * macro photography, * texture closeups, * curing progression, * and multiple stacked macro images showing the resin in insane detail. Some of these stacks reached: * 62 frames, * 87 frames, * 114 frames, * and even 152-frame focus stacks. Because honestly, hash under macro magnification becomes another universe completely. The textures stop looking real. Tiny resin mountains. Oil rivers. Micro-crystals. Glossy surfaces. Soft creamy structures. It almost starts looking geological instead of botanical 😄 Mr. Baggy of course supervised the entire operation like the professional resin inspector he clearly believes he is. And next week… The final chapter arrives. Smoke review. Curing review. Flower review. Hash review. Terpene evolution. Effects. Textures. Lessons learned. Mistakes made. And final thoughts after this entire LSD journey from seed to cured medicine. And finally… Thank you. To Zamnesia for the genetics and the Bubbleator. To Plagron. To F.O.G. To all the LEDs, gear, and equipment involved. To GrowDiaries. To the community. To the OG followers. To the new curious visitors. To the silent supporters. To the skeptics. To the lovers and even the haters 😄 To everyone spending time sharing this strange beautiful plant journey with us. Wishing everyone: cold water, sticky fingers, healthy plants, beautiful resin, and enough patience to let good hash become great hash 🌱
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1-2 weeks more and coming down super frosty super sticky super dense big plant smells very sweet💪🌅🏝️
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@Sapper29
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So my phone died and I had to get it replaced. But here we are right before and after topping the plant for the first time to start the two mainline branches.
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Sorry been away for so long. Been super busy at home and at work. Had turned my favorite pheno of the zkittz berry ade and turned into mother
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Que pasa familia, vamos con la cuarta semana de floración de estas F.U.H. feminizadas de Seedstockers. 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 75% de potencia. Tenemos como visitante de nuevo los trips, compré depredadores que colocaré a principios de semana. Me gustaría estar más encima este cultivo pero la salud me está impidiendo un poco estar 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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@DRO420
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Filling up the screen nicely
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NOTES: First week of flowering: pH at around 5,8-6,0 and EC at 1,5. Day50 (5.12.) Day51 (6.12.) Day52 (7.12.) Just a light defoliation of lower leaves and I also pruned a few small nodes that didn't get any light. Day53 (8.12.) I filled the tanks to the top with fresh nutrient solution. I stopped using the root stimulator, otherwise same amounts of nutrients. Day54 (9.12.) Day55 (10.12.) Light defoliation and pruning, mostly on lower parts of plants. First time using pH+ on this grow, since it is mostly needed in flowering phase. On vegetation I've basically only needed the pH-. Day56 (11.12.) More light defoliating and pruning on bottom halves of the plants. Growth had basically exploded and I was therefore forced to defoliate under the canopy to improve airflow and to prevent moisture from condensating. Overall everything looks great!
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0.23v tuned to 7.83Hz Plants exposed to the Schumann resonance often show greater resistance to stress factors such as drought, diseases, and pests. It is possible that these natural electromagnetic waves strengthen plants' immune systems and increase their ability to resist disease. Pretty neat, in the afternoon when the tent hovers around 84F the plants are 🙏, can visually see in time around 10 minutes after I opened the tent the temp had dropped to 76 pressure was lost, she is still chilling but she doesn't quite have that perk anymore. *Salinity3.5% - 100ml H2O=100g The concentration of salt in a solution 3.5%= 3.5g in 100ml. Growing well. Not going to top or do any training, I'll let the plant do its own thing, she is constructing foundations now for what she senses ahead. Smart girl. ✨️ Let her, do her thing, let me do mine. The voltage that is needed for electrolysis to occur is called the decomposition potential. The word "lysis" means to separate or break, so in terms, electrolysis would mean "breakdown via electricity. Green hydrogen is hydrogen produced by the electrolysis of water, using renewable electricity. The production of green hydrogen causes significantly lower greenhouse gas emissions than the production of grey hydrogen, which is derived from fossil fuels without carbon capture. Electrolysis of pure water requires excess energy in the form of overpotential to overcome various activation barriers. Without the excess energy, electrolysis occurs slowly or not at all. This is in part due to the limited self-ionization of water. Pure water has an electrical conductivity of about one hundred thousandths that of seawater. Efficiency is increased through the addition of an electrolyte (such as a salt, acid or base). Photoelectrolysis of water, also known as photoelectrochemical water splitting, occurs in a photoelectrochemical cell when light is used as the energy source for the electrolysis of water, producing dihydrogen . Photoelectrolysis is sometimes known colloquially as the hydrogen holy grail for its potential to yield a viable alternative to petroleum as a source of energy. The PEC cell primarily consists of three components: the photoelectrode the electrolyte and a counter electrode. The semiconductor crucial to this process, absorbs sunlight, initiating electron excitation and subsequent water molecule splitting into hydrogen and oxygen. Water electrolysis requires a minimum potential difference of 1.23 volts, although at that voltage external heat is also required. Typically 1.5 volts is required. Biochar, a by-product of biomass pyrolysis, is typically characterized by high carbon content, aromaticity, porosity, cation exchange capacity, stability, and reactivity. The coupling of biochar oxidation reaction (BOR) with water electrolysis constitutes biochar-assisted water electrolysis (BAWE) for hydrogen production, which has been demonstrated to reduce the electricity consumption of conventional water electrolysis from 1.23v to 0.21v. Biochar particles added to the electrolyte form a two-phase solution, in which the biochar oxidation reaction (BOR) has a lower potential (0.21 V vs. RHE) than OER (1.23 V vs. RHE), reducing the energy consumption for hydrogen production via biochar-assisted water electrolysis (BAWE). BAWE produces H2 under 1 V while eliminating O2 formation: key word "eliminating". Air with a normal oxygen concentration of around 21% is not considered explosive on its own; however, if a flammable gas or vapor is present, increasing the oxygen percentage above 23.5% can significantly increase the risk of ignition and explosion due to the enriched oxygen environment. The addition of ion mediators (Fe3+/Fe2+) significantly increases BOR kinetics. Air: Nitrogen -- N2 -- 78.084% Carbon Dioxide -- CO2 -- 0.04% Hydrogen in homosphere H -- 0.00005% Hydrogen "GAS" H2 in homosphere - 0% "Nitrogen, oxygen, and argon are the three main components of Earth's atmosphere. Water concentration varies but averages around 0.25% of the atmosphere by mass. Carbon dioxide and all of the other elements and compounds are trace gases. Trace gases include the greenhouse gases carbon dioxide, methane, nitrous oxide, and ozone. Except for argon, other noble gases are trace elements (these include neon, helium, krypton, and xenon). Industrial pollutants include chlorine and its compounds, fluorine and its compounds, elemental mercury vapor, sulfur dioxide, and hydrogen sulfide. Other components of Earth's atmosphere include spores, pollen, volcanic ash, and salt from sea spray." Although the CRC table does not list water vapor (H2O), air can contain as much as 5% water vapor, more commonly ranging from 1-3%. The 1-5% range places water vapor as the third most common gas (which alters the other percentages accordingly). Water content varies according to air temperature. Dry air is denser than humid air. However, sometimes humid air contains actual water droplets, which can make it more dense than humid air that only contains water vapor. The homosphere(where you live) is the portion of the atmosphere with a fairly uniform composition due to atmospheric turbulence. In contrast, the heterosphere is the part of the atmosphere where chemical composition varies mainly according to altitude. The lower portion of the heterosphere contains oxygen and nitrogen, but these heavier elements do not occur higher up. The upper heterosphere consists almost entirely of hydrogen, cool. 78%nitrogen as N2, a far too stable bond to be used by organisms. 20%oxygen 0.04%co2 0.00005% hydrogen When lightning strikes, it tears apart the bond in airborne nitrogen molecules. Those free nitrogen atoms N2 nitrites then have the chance to combine with oxygen molecules to form a compound called nitrates N3. Once formed, the nitrates are carried down to the ground becoming usable by organisms. Will it react with the oxygen in the air spontaneously, the answer is no. The mixture is chemically stable indefinitely. A mixture with air near the release point can be ignited, but if this does not happen then when its concentration gets below 4% it will be unable to carry a flame. Taking a small detour into chemistry here, a key concept to understanding the health impact of nitrogen-based compounds is knowing the difference between nitrates and nitrites. What Are Nitrates and Nitrites? A nitrite (NO2) is a nitrogen atom bonded to only two nitrogen atoms. Very strong bond A nitrate (NO3) is a nitrogen atom bonded to three oxygen atoms. Weaker bond The optimal pH for nitrate (NO3-) depends on the process and the type of bacteria involved. Nitrification The optimal pH for nitrification is between 7.5 and 8.6 Nitrification is the process of oxidizing ammonia to nitrate and nitrite Nitrosomonas has an optimal pH between 7.0 and 8.0 Nitrobacter has an optimal pH between 7.5 and 8.0 Nitrification ceases at pH
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well, at the end of week 4 i think she continue racing with her sisters and we definitely have a winner ! 😃, she has bud sites all over her, healthy, strong and smelly girl , i think i will get maybe more 6 to 9 grams just with topping, she responded very well to it. took one pot out because one little seed germinated with the root upwards , I tried to put it on the right path but without success, she died later... learned that they are so fu***ng sensitive in this fase.
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TRIPLE G by ROYAL QUEEN SEEDS Week #15 Overall Week #14 Veg This week nothing really to report on she's done a great job in the heat and being outside. Nice dark green color to her leaves 🍃 she's getting close to flower ⏲️. Stay Growing!! ROYAL QUEEN SEEDS TRIPLE G
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@Headies
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I topped and trained them two more times. I also lolipopped them, that is cut the bottom 2 sets of leaves and branches.
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It's getting cold don't know how good she will hold up