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Loading... Jah Bless
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First week of flower is in the books. I posted my feeding schedule in the pics above. If you find yourself looking at it wondering why you're seeing back to back feeds with mycos or teas its because with organics you never want to let your pots dry out. You obviously dont want to waterlog the pots but you need to find that balance with watering so as to keep your ecosystem happy and active. It's not a feed/water/water system where you're watering every other day as you do with salt based bottled nutrients. Always remember you're feeding the microboes/fungi/bactria and they are feeding your plants. If you dry your pots out with organics those elements become dormant and or die off which will lead to deficiencies and a weakened immune system. The week was going smoothly until last night. The timer for whatever reason didnt kill the lights after 12 hrs had past so they got a little over an hr of extra light. To help maintain consistency with the plants I just altered on/off times to make sure they still recieved 12 hrs of darkness. So I was running 6pm-6am now with the overage last night I'm running 730pm-730am. I have heard some horror stories about how something like this has affected people's plants but they are few and far between. I'm not overly worried about it as a plant thats growing outdoors never gets a true 12/12 lighting period. I caught it early, adjusted my lighting schedule to accommodate a 12 hr off period, and being so early in the flowering stage I should be ok. Obviously it goes without saying but this is taboo and not something you want to be making a habit of with photoperiod plants. My dehumidifier also decided to do it's own thing last night and didn't shut off as per the settings (set to 45%) and as a result it pulled my humidty down to 39% down from the 45%-47% that the room usually runs at. As a result my temps rose into the 28-29 Celsius range overnight up from the 25-26 Celcius (my preferred flowering temps) that the room usually sees. So she was quite the party downstairs while I was sleeping. To my surprise when I turned the lights on the plants looked very happy and healthy and immediately started praying to the sun gods. I got lucky here with respect to what I was speaking about above with watering practices and organics. As I keep my pots in the sweet spot with daily waterings this didnt negatively affect the plants. I've prepped and am bubbling a compost tea (posted a video) which will be fed tomorrow. I also through some organic popcorn seeds and organic mung bean seeds in the seed sprouter (pic posted above) to make a popcorn/mung bean SST for the plants that's loaded with all kinds of enzymes and goodness. It's also pretty sweet to be able to say you feed your plants popcorn. Like I mean really though ๐Ÿ˜. I'll talk a little more about SSTs next week but if your curious about it there are many websites about this topic, homesteadandchill.com would be a great place to start. They lightly touch on topic without diving to deep into the science behind it so it's easy reading to help introduce you.
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@Chucky324
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Hello. This is the end of week 5 and the beginning of week 6 of flowering. The buds will be swelling over the next 2 weeks, getting heavier, and more resin too. The plants look a little wilty and feel light, so I'll water them as soon as I'm done here. It's nutrient twice and water once at this stage, and they get water this time. I might have a 50% off code from UHKTA Seeds coming available soon. Check back next Wednesday to see,... if your interested. I won 1 strain in their first contest... Candy House.. Then I won a 50% off code in the next contest, and then I won some more of their seeds in their diary of the month contest. They might have just sent the seeds seeing how they have my address or they might contact me next week. I don't know. As soon as I get the seeds or they contact me saying the seeds are coming I'll make available the code to someone interested. That's a 50% off the first order and has to be used by May 1st 2026. If your interested... Check back next week. I'll know more. OK. Keep Growing Straight. Chuck.
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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 0.8โ€“1.2 kPa 80โ€“86ยฐF (26.7โ€“30ยฐC) 65โ€“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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for a week now they have started to take root. you can see how the plants consume their nutrients and turn yellow. in the next few days they should start to grow. the system runs perfectly and is ready to grow. :-) a few have already been sorted out until there are 4 plants left at the end.
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@Salokin
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Hi Growmies, I changed the cutting in the tank to one I still had in my other tent, as these were showing a lot more signs of a revegging plant compared to the one I had in the tank previously. I will top her very soon to stimulate a more lateral growth, before I will move her into the small box in roughly two weeks, once the Afghan is harvested and dried. I have also added a dripper as I suspected the lack of topwatering caused the old one to fail.
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@StarLorr
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Welcome to my ร˜pium diary. In this diary: Seeds: sponsored by รivine ศ˜eeds Media: Promix HP Nutrients: Advanced Nutrients, Diablo Nutrients. Light and Weather: ลžunโ˜€๏ธand Mother Earth.๐ŸŒŽ ___________________________ Feeding: Tue 23Jul: 4L nutrients pH'd 6.5 and 4L water not pH'd Wed 24Jul: 10L water not pH'd Thu 25Jul: 4L water not pH'd Fri 26Jul: 8L water not pH'd Sat 27Jul: 4L nutrients pH'd 6.5 and 2L water not pH'd Sun 28Jul: 10L water not pH'd Mon 29Jul: 8L water not pH'd *please note that most water only feedings are 2L at the time throughout the day in bottom saucer* ___________________________ What a beautiful summer that we're having. Just one day last week it was cloudy and colder and got some rain, rest of the week sublime weather. My รivine Ladies are pre flowering and hopefully will be blooming soon, next week update should be FLO fingers crossed๐Ÿ˜„ ______________________________ ร˜pi was found with a spider mites nest..squished the squatter with my thumb and index... all 3 รivine Gals got the spa treatment, soap insecticide spray 2 litres each soaked them real good, before flowering it was a smart move๐Ÿ˜‰ ______________________________ Thanks for stopping by, likes and comments are appreciated!๐Ÿ‘Š๐Ÿป๐Ÿ˜Ž Keep on growin! Keep on tokin!!! ๐Ÿ˜™๐Ÿ’จ๐Ÿ’จ๐Ÿ’จ๐Ÿ’จ๐Ÿ’จ
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@buzbun
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today is the harvest day.make pohot before chopping on 65 day
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A breez to grow 450 grams off 5 plants first ever grow red buds throughout the whole grow
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end of week 4 of flower, the buds is getting bigger and denser so far so good but still disappointed form the seeds company, i hate hemiresss!! who doesn't ?!
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Top any thing to even out canopy at this point
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@Mrg7667
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Day 74 and there getting chopped today! I thought the harvest was going to be broken into two separate weeks considering the times on the Choco was listed about 7-10 days sooner then the DD (wich was listed at 70 days for flowering) However looking at the tricombs on the Chocolate Marshmallow most pheno didnt start getting amber untill the DDs did as well! A couple DD pheno could have maybe gone a couple more days but we will see! Going for reveg on all the pheno, since i didnt get to take any clones. We will see how it goes!
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This week's been an adventure for these Skywalker's. The growth has sped up and therefore they need abit extra now. Repotted into 5L Fabric pots. Added another strip light in. Added a small fan to help strengthen stems Upped the feed from half to full strength. Let's see what the next couple weeks bring before being put into their new home til the end. ๐Ÿคž๐Ÿ’š
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@Siriuz
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Ok guys so she was bushy again and so we did defoliation again. You can see the difference and then after that started flowering even more Plus the fact we are increasing the amount of molasses added to the soil plus the floranova bloom nutes. They are very thirsty girls, taking around 1.5-2lts per 48 hrs So almost like a 1 liter per 24 hrs Very good SoG to make them feel even more comfortable Going to change schedule from 24/0 to 19/5 and see if they evolve! Thinking about adding some humus to the soil as well, other than that they have been under good conditions Temp is steady at day time around 24C top and night time is 18-19C minimum RH around 45-60% Mostly 45% control environment with AC Cant wait to see big colas coming soon! Have fun enjoy the videos!
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4ยช settimana di fioritura alla CAMPACAVALLO per la Black Muffin di SweetSeeds ๐Ÿ’š๐Ÿ˜๐Ÿ” Di piccoli peni ๐ŸŒ non se ne vedono piรน... Ed i bud si stanno gonfiando alla grande๐Ÿ˜›๐ŸŽˆ Beve ๐Ÿบ propio tanto in questa fase di crescita ๐Ÿซ ๐Ÿ–คLa CampaCavallo manda un grande abbraccio a Valencia ed alle persone colpite dalla maledetta alluvione๐Ÿ–ค
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@Flavors
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๐ŸŒฑ Sticky Broccoli โ€“ Grow Diary ๐ŸŒฑ Week 7 | Vegetative Stage | Coco + Perlite This week the plant was topped and LST was started โœ‚๏ธ๐ŸŒฟ Topping was successful, encouraging multiple new main colas. Plant responded well with no major stress observed. New growth is already pushing from lower nodes ๐Ÿš€ LST has begun spreading the canopy outward for better light exposure ๐ŸŒ Branches are being gently pulled down to create an even canopy. Structure is becoming wider and more controlled. Stem remains strong and flexible ๐Ÿ’ช Foliage is healthy green with no deficiencies showing ๐ŸŒฟ Roots should now be well established in the larger pot ? Watering remains consistent with slight runoff ๐Ÿ’ง Environment stable with good airflow ๐ŸŒฌ๏ธ ๐Ÿ“ˆ Focus next week: continue LST, fill canopy, and prepare for SCROG net training ๐Ÿ”ฅ
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This week everything looks great and growing green!!!