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@Ninjabuds
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7I wish they didn't make me do this to get a smileI wish they didn't make me do this to get a smileI wish they didn't make me do this to get a smileI wish they didn't make me do this to get a smileI wish they didn't make me do this to get a smileI wish they didn't make me do this to get a smileI wish they didn't make me do this to get a smileI wish they didn't make me do this to get a smileI wish they didn't make me do this to get a smileI wish they didn't make me do this to get a smileI wish they didn't make me do this to get a smileI wish they didn't make me do this to get a smile
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@Durbun
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Smell is coming on. Showing decent bud growth over first 3 weeks. Final defoliation done recently. Still only using PH balanced water with no additional nutes.
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@valiotoro
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Hello everyone week 6 of flower has passed for this Skywalker haze auto 💥 Green Sensation 0,5ml/L Mars hydro SP-6500 75% have a great day and wish you all happy growing 😎👨‍🌾🏻
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@RakonGrow
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**** HAARVEST ZOE **** Nice Strain , My little Zoe really made all the mistakes you could possibly make. No matter when I give light or want water or fertilizer. It grows and grows and grows, the main thing is that there is light. It was one of my free seeds from Zamnesia. So far all seeds have germinated. I store my seeds in a dark, airtight container at 6°C. Tastes kind of sweet after curing. Greenhouse Feeding is a really easy fertilizer to use. I used the BioEnhancer again and again. My little Zoe thanked me. The BioGrow was used as topdressing and is doing its job. The BioBloom also does its job at the right time. And that's really great and easy if you don't have an autoflower. Of course there is a corresponding product. But I was happy to get anything here at all. Legalization has wiped out the market. But for next time I have an appropriate soluble fertilizer for fast-flowering plants. It doesn't work for 8 weeks :)) I use a Sanlight Evo 3-60 1.5 with Bluetooth dimmer. There's nothing to complain about there. Set daily cycle via app. Helpful if the weather or environment is so bad that you have to regulate the light intensity. 33g after 5 days dry . 24.5 °C to 22°C with 50%-60% . curing in a vaccum box at 18°C . It looks like I'm drying too long. // It tastes a bit crunchy. Day 79: trim , slow vacuum box to cure 22°C and 61%rH . Day 76: videostuff: been drying for 4 days (res 640x480) ( optical zoom x200 - x250 ) Day 72: DLI usage total this Plant : 2236.6 DLI in 70 Days . wet trimmed, cut off, hung upside down. see you after 14 days Day 71: preparing for harvest . 24h long night session . DLI : 0 Day 70: - Sanlight DaylightCycle - + ON 200PPFD (00:00) - 800PPFD (03:30) - 800PPFD (16:30) - 200PPFD (18:00) OFF video and photo tryouts with the digimicro mobil x300 optical zoom , mostly freehand Day 69: - Sanlight DaylightCycle - + ON 200PPFD (00:00) - 1000PPFD (03:30) - 1000PPFD (14:30) - 200PPFD (18:00) OFF incredibly hot and rain. lost some terpene :)) Well, summer is coming, Day 68: - Sanlight DaylightCycle - + ON 200PPFD (00:00) - 600PPFD (00:30) - 800PPFD (03:30) - 800PPFD (14:30) - 600PPFD (17:30) - 200PPFD (18:00) OFF - Added 1L bottle of water It's hot, hot, hot, Zoe would like more water. changed daylight cycle so it match the weather problems. tent is open until my real night comes. 103 flowers (including popcorn) counted, due to an accident about 15 flowers are missing. Day 67: - Sanlight DaylightCycle - + ON 200PPFD (00:00) - 600PPFD (00:30) - 900PPFD (03:30) - 900PPFD (14:30) - 600PPFD (17:30) - 200PPFD (18:00) OFF - watering bottle water 1.75L weather to hot , changed daylight start time and daylight cycle so it match the weather problems. I'm lucky, buds are still growing :))) Day 66 (we are on the road with maximum sanlight ) - analyse some trichome . - make some Zoom Pics and Video stuff . - Sanlight DaylightCycle : - + ON 200PPFD (00:00) - 1000PPFD (00:30) - 1000PPFD (13:30) - 800PPFD (17:30) - 200PPFD (18:00) OFF - DLI will stress alot ... Anyway, it's too hot in my room... I open the tent and now everything is fine with the temperatures and I increase the Sanlight to 100% for the first time. May Zoe love it or leave it :)) We'll see what happens Day 65 : Sanlight DaylightCycle : ON 200PPFD (00:00) - 800PPFD (00:30) - 850PPFD (13:30) - 800PPFD (17:30) - 200PPFD (18:00) OFF It will soon be ready for harvest.
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@Canadian
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This girl seems to be doing very well and they probably will be finished in 2 week or so if crazy weather doesn't ruin everything a nice citric smell with a cheesy smell to it as well is what she has developed and she starting to look pretty nice and heavy . Despite having so many mistakes done to them she has been a remarkable plants from beginning to end. Thank you for reading I will continue to update have a happy grow
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@Budhunter
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Have been away from my babies for a few days. Couldn’t wait to be back. Purple punch and gorilla punch completed 1 week flush. The smell of them are really strong. Mimosa cake is a bit behind but still promising. It is drinking 5l water each watering.
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08/23 - As reported last 3 of the 4 have recovered completely with one lagging a bit but showing promising signs - Prepping the ladies for final transplant into 3 gallon pots- if all goes according to plan the ladies will be in their final homes the 3x3 - I will continue to micro-feed in very limited amounts to increase EC/PPMS gradually - When moved into the 3x3 they will be under a 4x4 light switching out from the Marshydro 150w to the Sunraise QB3000 300W led light - Stay tunned 😎😎😎😎😎😎😎😎😎😎😎😎😎😎 08/26 - Thus far they have all bounced back perfectly, they are back on their normal grow cycle - The EC/PPM game is a good one to lock into if you are trying to significantly increase your growing profile - understanding the numbers week by week will help you immensely - I will be transplanting them into 3 gallon pots this weekend and the transplant will be followed by a tent transplant. Stay tunned.. Peace and Bud 😎😎😎😎😎😎
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@Kynareth
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Plant is growing really quick, it started slowly but with a good root system it started to grow and grow non-stop. As you can see at the timelapse of the last week it also went outside of the recording frame. As commentedbefore it had signs of some over fertilization and it still has a bit of it, but i think it will go further. day 27 update. the signs of over fertilization are increasing at some leave tip, but i will wait more to take action. One thing is secure now, this plant needs less nutrients than the GHE table shows. I will wait about 1 week more which according to seed bank and some diaries is the aprox time remaining to start flowering and will apply 70-80% recommended dose.
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MIMOSA ZKITTLEZ FF / GANJA FARMER WEEK #8 OVERALL WEEK #7 VEG This week she is growing like a weed!! Lol She's a big girl that just keeps growing she's looking good with many tops another good week of growth worth this lady!! Stay Growing!! Thank you for stopping by and taking a look it's much appreciated!! Thank you GANJA FARMER!! FOOP.COM BUDTRAINER.COM MIMOSA ZKITTLEZ FF / GANJA FARMER
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@Dunk_Junk
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So she grew another 26cm this week!!!!!!! But that means the flowering stretch is coming to an end. Her flowers are starting to form nicely. They look really dense at this early stage. Can't wait to see what she's like in a few weeks.
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@Eyeduno
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Thought ide show the fellow growers what I ent shown this round lol woundering weather to leave it another week or so ??
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Que pasa familia, vamos con la séptima 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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I had trouble with my humidifier set up so she only took 5 days to hand dry . Fortunately I purchased a programmable humidifier so moving forward it’s all gravy. After everything was cut from branches & weighed she ended up yielding 20gs of some airy foxtaily bud. I knew this would be a disappointment so we’ll just wait to see what the smoke is like , what the smell is like , & what the taste is like .
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Day 8: Nothing New Notes: New lights were supposed to be here today (Monday) according to tracking, but of course, were not. So, we still got blurples for at least the next day. Both plants seem to be growing, slowly but surely! Temp and humidity are relatively under control. Based on the size of the plants, I'm thinking I might transplant into their final homes (5 gal Smart Pots) by the end of the week! Refilling the humidifier twice a day is kind of a pain. Was looking into a possible DIY solution to feed the tank from a large reservoir, so that might be coming in the future. Plants look good, soil looks kinda dry-ish, so I will be watering tomorrow. Day 9: Watering Notes: RIP my dreams of getting a new lights. Shipment is officially delayed with no ETA. Also, watered plants as they looked a little parched, and the soil was super dry. Day 10: Nothing new Notes: Lights have signature confirmation and I wasn't home 😢 Going to pick them up at the PO tomorrow and setting the damn thing up ASAP. I also mounted my exhaust fan to one of the 2x4s framing the room because it felt like CFM was lower than usual which I attribute to putting the exhaust fan all the way on the floor which added a couple bends to the ducting and lengthened it by a few feet. After mounting it (close to the exhaust port in the tent), it seemed to pick up a bit. Plants look ok. Growing very slowly. Soil still looks damp so we're good on watering! GSC definitely looks ready to transplant soon, possibly in the next day or two. NL is close behind it. Day 11: Watering Notes: I was waiting at the post office in the morning for them to open. I got home and hung the light while removing the old one. When I turned them on, HOLY SHIT ARE THEY BRIGHT. Staring at them is almost as bad as staring at the Sun -neither of which I recommend doing-. I set it up right before lights out so I didn't get to test too much. When I got home -after they have been running for 2 hours-, first thing I noticed was the temperature increase. Thermometer said it was 79f. Granted, this is running at full strength (I didn't get to adjust before I left for work). I adjusted it down to roughly 50% as most of this light is being wasted on these poor seedlings anyway. I also pointed the fan at the heat sink. We'll see how the combination of these two things affect the temperature. The GSC looks ready for transplant, with NL close behind it. I could probably transplant the GSC tonight, but I'd rather transplant both at the same time. I might transplant them Friday night after I get home, or Sunday. With that being said, I'm going to hold off on watering them until I put them in their new 5gal Smart Pots. edit: I actually did end up giving them a tiny bit of water. Day 12: Nothing new Notes: Will be transplanting on Sunday (Day 14). Plants are growing pretty steadily now. Both just about have their first full set of leaves! New lights are fucking amazing. I decided to return my filter / fan to upgrade to a better quality setup. I got a Vortex 6in S series for better longevity and also to quiet the grow area. Replaced the filter I got with a 6x16 Phresh carbon filter. Once they're both here, gonna set them up, and return the others. Day 13: Nothing new Notes: GSC is getting so big. Already up to two nodes. Same goes for the NL, but it's more Indica looking in that it's "bushy" and flat. Pretty much a sign of how the two will compare in size later on in their lives. Also, my pH pen sucks, and I needed a TDS pen, so I am going to return the shit one I got and get a BlueLab growers toolkit, which is just a pH pen and a TDS pen. Might seem like I'm going overboard, but I am trying to future-proof my setup for as long as possible. I like to get years if not decades of use out of things I purchase. The higher up-front costs are worth it to me to have a quality product that lasts. Day 14: Transplant Notes: Today is the big move. Bought some shelving / plastic containers at the hardware store for a easy to clean up drainage system. Also bought a big bag of perlite to mix and some random other tools. I mixed both 5gal Smart Pots with a 2:1 Fox Farms Ocean Forest / Perlite mix to help with drainage and aeration. I may have messed up a little and not filled the pot that will be housing the NL, but it's roughly about 3/4 full, and I may have also buried her a little bit deeper than I should have. Other than that, it was a pretty event-free move. Everything is looking good so far. Now that they're in their new homes, the countdown begins, 3 weeks, until I can start feeding them nutrients.
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Aquele diário que era de duas mais teve um espaço na estufa e coloquei mais uma , elas cresceram bastante e mesmo sendo um cultivo secundário desse ciclo pois estiveram ao lado dos dois vasos de 15 litros , onde inclusive uma delas é Diesel.
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What's in the soil? What's not in the soil would be an easier question to answer. 16-18 DLI @ the minute. +++ as she grows. Probably not recommended, but to get to where it needs to be, I need to start now. Vegetative @1400ppm 0.8–1.2 kPa 80–86°F (26.7–30°C) 65–75%, LST Day 10, Fim'd Day 11 CEC (Cation Exchange Capacity): This is a measure of a soil's ability to hold and exchange positively charged nutrients, like calcium, magnesium, and potassium. Soils with high CEC (more clay and organic matter) have more negative charges that attract and hold these essential nutrients, preventing them from leaching away. Biochar is highly efficient at increasing cation exchange capacity (CEC) compared to many other amendments. Biochar's high CEC potential stems from its negatively charged functional groups, and studies show it can increase CEC by over 90%. Amendments like compost also increase CEC but are often more prone to rapid biodegradation, which can make biochar's effect more long-lasting. biochar acts as a long-lasting Cation Exchange Capacity (CEC) enhancer because its porous, carbon-rich structure provides sites for nutrients to bind to, effectively improving nutrient retention in soil without relying on the short-term benefits of fresh organic matter like compost or manure. Biochar's stability means these benefits last much longer than those from traditional organic amendments, making it a sustainable way to improve soil fertility, water retention, and structure over time. Needs to be charged first, similar to Coco, or it will immobilize cations, but at a much higher ratio. a high cation exchange capacity (CEC) results in a high buffer protection, meaning the soil can better resist changes in pH and nutrient availability. This is because a high CEC soil has more negatively charged sites to hold onto essential positively charged nutrients, like calcium and magnesium, and to buffer against acid ions, such as hydrogen. EC (Electrical Conductivity): This measures the amount of soluble salts in the soil. High EC levels indicate a high concentration of dissolved salts and can be a sign of potential salinity issues that can harm plants. The stored cations associated with a medium's cation exchange capacity (CEC) do not directly contribute to a real-time electrical conductivity (EC) reading. A real-time EC measurement reflects only the concentration of free, dissolved salt ions in the water solution within the medium. 98% of a plants nutrients comes directly from the water solution. 2% come directly from soil particles. CEC is a mediums storage capacity for cations. These stored cations do not contribute to a mediums EC directly. Electrical Conductivity (EC) does not measure salt ions adsorbed (stored) onto a Cation Exchange Capacity (CEC) site, as EC measures the conductivity of ions in solution within a soil or water sample, not those held on soil particles. A medium releases stored cations to water by ion exchange, where a new, more desirable ion from the water solution temporarily displaces the stored cation from the medium's surface, a process also seen in plants absorbing nutrients via mass flow. For example, in water softeners, sodium ions are released from resin beads to bond with the medium's surface, displacing calcium and magnesium ions which then enter the water. This same principle applies when plants take up nutrients from the soil solution: the cations are released from the soil particles into the water in response to a concentration equilibrium, and then moved to the root surface via mass flow. An example of ion exchange within the context of Cation Exchange Capacity (CEC) is a soil particle with a negative charge attracting and holding positively charged nutrient ions, like potassium (K+) or calcium (Ca2+), and then exchanging them for other positive ions present in the soil solution. For instance, a negatively charged clay particle in soil can hold a K+ ion and later release it to a plant's roots when a different cation, such as calcium (Ca2+), is abundant and replaces the potassium. This process of holding and swapping positively charged ions is fundamental to soil fertility, as it provides plants with essential nutrients. Negative charges on soil particles: Soil particles, particularly clay and organic matter, have negatively charged surfaces due to their chemical structure. Attraction of cations: These negative charges attract and hold positively charged ions, or cations, such as: Potassium (K+) Calcium (Ca2+) Magnesium (Mg2+) Sodium (Na+) Ammonium (NH4+) Plant roots excrete hydrogen ions (H+) through the action of proton pumps embedded in the root cell membranes, which use ATP (energy) to actively transport H+ ions from inside the root cell into the surrounding soil. This process lowers the pH of the soil, which helps to make certain mineral nutrients, such as iron, more available for uptake by the plant. Mechanism of H+ Excretion Proton Pumps: Root cells contain specialized proteins called proton pumps (H+-ATPases) in their cell membranes. Active Transport: These proton pumps use energy from ATP to actively move H+ ions from the cytoplasm of the root cell into the soil, against their concentration gradient. Role in pH Regulation: This active excretion of H+ is a major way plants regulate their internal cytoplasmic pH. Nutrient Availability: The resulting decrease in soil pH makes certain essential mineral nutrients, like iron, more soluble and available for the root cells to absorb. Ion Exchange: The H+ ions also displace positively charged mineral cations from the soil particles, making them available for uptake. Iron Uptake: In response to iron deficiency stress, plants enhance H+ excretion and reductant release to lower the pH and convert Fe3+ to the more available form Fe2+. The altered pH can influence the activity and composition of beneficial microbes in the soil. The H+ gradient created by the proton pumps can also be used for other vital cell functions, such as ATP synthesis and the transport of other solutes. The hydrogen ions (H+) excreted during photosynthesis come from the splitting of water molecules. This splitting, called photolysis, occurs in Photosystem II to replace the electrons used in the light-dependent reactions. The released hydrogen ions are then pumped into the thylakoid lumen, creating a proton gradient that drives ATP synthesis. Plants release hydrogen ions (H+) from their roots into the soil, a process that occurs in conjunction with nutrient uptake and photosynthesis. These H+ ions compete with mineral cations for the negatively charged sites on soil particles, a phenomenon known as cation exchange. By displacing beneficial mineral cations, the excreted H+ ions make these nutrients available for the plant to absorb, which can also lower the soil pH and indirectly affect its Cation Exchange Capacity (CEC) by altering the pool of exchangeable cations in the soil solution. Plants use proton (H+) exudation, driven by the H+-ATPase enzyme, to release H+ ions into the soil, creating a more acidic rhizosphere, which enhances nutrient availability and influences nutrient cycling processes. This acidification mobilizes insoluble nutrients like iron (Fe) by breaking them down, while also facilitating the activity of beneficial microbes involved in the nutrient cycle. Therefore, H+ exudation is a critical plant strategy for nutrient acquisition and management, allowing plants to improve their access to essential elements from the soil. A lack of water splitting during photosynthesis can affect iron uptake because the resulting energy imbalance disrupts the plant's ability to produce ATP and NADPH, which are crucial for overall photosynthetic energy conversion and can trigger a deficiency in iron homeostasis pathways. While photosynthesis uses hydrogen ions produced from water splitting for the Calvin cycle, not to create a hydrogen gas deficiency, the overall process is sensitive to nutrient availability, and iron is essential for chloroplast function. In photosynthesis, water is split to provide electrons to replace those lost in Photosystem II, which is triggered by light absorption. These electrons then travel along a transport chain to generate ATP (energy currency) and NADPH (reducing power). Carbon Fixation: The generated ATP and NADPH are then used to convert carbon dioxide into carbohydrates in the Calvin cycle. Impaired water splitting (via water in or out) breaks the chain reaction of photosynthesis. This leads to an imbalance in ATP and NADPH levels, which disrupts the Calvin cycle and overall energy production in the plant. Plants require a sufficient supply of essential mineral elements like iron for photosynthesis. Iron is vital for chlorophyll formation and plays a crucial role in electron transport within the chloroplasts. The complex relationship between nutrient status and photosynthesis is evident when iron deficiency can be reverted by depleting other micronutrients like manganese. This highlights how nutrient homeostasis influences photosynthetic function. A lack of adequate energy and reducing power from photosynthesis, which is directly linked to water splitting, can trigger complex adaptive responses in the plant's iron uptake and distribution systems. Plants possess receptors called transceptors that can directly detect specific nutrient concentrations in the soil or within the plant's tissues. These receptors trigger signaling pathways, sometimes involving calcium influx or changes in protein complex activity, that then influence nutrient uptake by the roots. Plants use this information to make long-term adjustments, such as Increasing root biomass to explore more soil for nutrients. Modifying metabolic pathways to make better use of available resources. Adjusting the rate of nutrient transport into the roots. That's why I keep a high EC. Abundance resonates Abundance.
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We coast on down the mountain. I'm ripen/flushing the 2 small girls this week and letting them finish and taking down the 2nd plant tonight! They probably could have gone a bit longer but I'm ready to move on and they are still gonna be a great smoke! ______________________________________________________________ Another feed of ripen. The trichomes on the short plant are about there the tall one isn't tho. I'm frustrated b/c i need the grow bags! ______________________________________________________ Flushing and getting there! Leaves are fading and tricomes are changing! I have the next gen crowded in there too... these girls need to finish! Also hoping I'm almost done drying the first plant too. ___________________________________________________ Dry isnt quite ready a week into it. i can wait 10 days. I did chop of a little bud to try and ooo baby! it singed my nose when I opened the grinder! So delicious! I'm way excited now! Just waiting out the last 2 although at this point I think I can pull em. Just finishing the week
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@Gram_Solo
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25/05/26 update**** Won't be another update til middle of June as I'm away with work. Apologies. We have now got an autofeeder setup from spiderfarmer for next few weeks. Going to be 13 weeks Veg. 💪💪💪 We're in the 3x3 tent now under an SF4000 3 more weeks of veg then we flip em too 12 hours flowering! 4x4 tent will be free soon so we get more space To train and keep em low. Want to get an even canopy before flower if possible.
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Bueno esta cepa fue una experiencia increible que coseche el 20 de octubre, hoy ya ha dos semanas y habiendo probado el resultado final con poco tiempo de curado y es increible, el futuro es prometedor una vez curadas y bueno tendremos para mucho tiempo :d