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end of week 5 flower 🏻| all looking god | very strong rotten fruit smell | its gerring purple!
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Honestly got lost in some work these past few weeks, so sorry for the lack of posting. I have been super busy getting somethings together for a friends grow!
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Привет друзья. Моей растихе сегодня 48 дней. Начал применять LST технику на 19 дне и продалжаю применять её через день, а 18 августа добавил ДЕФОЛИЗАЦИЮ С 20.08 ДЕФОЛИЗАЦИЮ делаю каждые 3,4 дня С 20.08 LST технику делаю каждые 4.6 дней На сегодняшний день влажность 50% Три дня назад заметил высокий Ph 7.9 С сегодняшнего дня Ph 5.8 Заказал погладитель влажности, отпишусь в следующем репорте. Не смотря на высокую влажность и высокий Ph, растение растёт хорошо, генетика радует. Всем мира и добра! https://t.me/smail_seeds #Smail_Seeds
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@valiotoro
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The buds look pretty good, not the frostiest, but we’ll see what she does in the lungs haha. 🌬️🔥
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Α,α (alpha) and Ω,ω(omega) Here we grow again. LAST GROW. 344g+280g+445g+255g=1324g dry bud. Yielding 1,324 grams of dry cannabis using a 600W light in a 4x4 tent is exceptionally efficient. This breaks down to roughly 2.21 grams per watt, far exceeding the standard indoor benchmark of 1.0 g/W and outperforming elite professional targets (1.5–2.0 g/W). For carbon and energy efficiency, this output drastically lowers the carbon cost per gram compared to typical indoor grows. Achieving 1,324 grams (47.2 ounces) of dry cannabis from a 600W light in a 4x4 tent is exceptional, yielding roughly 2.21 grams per watt. This is an elite-tier result that reflects world-class photosynthetic conversion, highly optimized canopy light distribution, dialled-in CO2 supplementation, and precise environmental control. Growing 1.3kg of dry in a 2x2 with 1 plant is just being silly and not understanding how carbon and energy conversion works towards mass. Took 6 years and 10,000+ Hours to break the 2 grams-per-watt barrier not exactly 600W, in honesty, though—even with modern, high-efficiency LEDs—is an incredible feat that requires hitting the absolute genetic ceiling of the cultivar and maintaining flawless environmental parameters for the space. Photosynthesis is the literal conversion of light energy (photons) into chemical energy (carbohydrates). Leaf temperature, driven by radiation from fixtures and mitigated by latent heat of vaporization (transpiration), dictates metabolic rates. If your room's thermal dynamics are off, enzyme activity inside the plant stalls, grinding growth to a halt. Anyone else pretending to have done so with nothing but Plagron nutrients at 75F is telling porkie pies *cough*, otherwise known as a liar, liar with a bum that's on fire, but it seems that's the new norm these days on GD. *cough cough*. Using copper and zinc plates in the plant medium to form a natural earth battery to assist with Electrochemical Reactance. The moist soil acts as an electrolyte, while zinc serves as the anode and copper as the cathode. Zinc is a highly reactive metal and oxidizes, losing electrons into the soil. These electrons travel through an external wire to the copper plate. The moisture and dissolved salts in your plant medium allow charged ions to move freely between the plates, completing the circuit and generating a small direct current (usually between 0.8 and 1.1 volts). This micro-current subtly alters/the Electrical Conductivity (EC), allowing more effective breaking apart of chemical bonds in the soil (electrolysis), making soil nutrients like phosphorus, calcium, and potassium more accessible to roots. Buried the zinc plates around the sides of the plant pot's root zone and the copper plate in the middle. Ran an insulated copper wire above ground to connect the zinc plate to the copper plate, creating a closed loop. Making sure the soil remains perfectly moist and contains everything it needs; entirely distilled water or bone-dry medium will prevent ion exchange and block the current. Leave that up to the rhizosphere. Currently testing new parameters for a couple of weeks. Seeing what she can do with a new and upgraded ducting closed loop and double the water capacity. Also added 6kg of inoculated biochar along with a slew of small improvements. Keeping an eye on. Zinc toxicity vs. consumption, given how sacrificial zinc is. Want to make sure the biochar stabilizes first. A Synganic closed-loop bioengineering-logic grow room merges synthetic inputs (precision minerals/chelated nutrients) with an organic living soil matrix (microbial life/bio-stimulants), managed via automated, data-driven automation. Master Operating Procedure (MOP): The system balances a sterile environment with a thriving, dynamic rhizosphere, merging the biological resilience of living organic soil with the high-precision chemical control of modern Controlled Environment Agriculture (CEA). Synganic blends a biologically active living soil or microbe-rich substrate with targeted, low-dose mineral or synthetic fertigation to optimize both metabolic yield and secondary metabolite expression (terpenes/flavonoids). What else is alive! Eisenia fetida (Red Wigglers) will continuously process organic matter into plant-available nutrients and aerate the media. Stratiolaelaps scimitus (Hypoaspis mites) provides excellent biological control against fungus gnats and pupating thrips. Armadillidium vulgare (Pillbugs) excel at breaking down tough, woody organic matter and toxic heavy metals. New "Closed-Loop Sealing" Isolates the internal microclimate from external weather, vectors, and pests. Air is scrubbed 264nm UV-C, recirculated, and enriched rather than openly exhausted. Operational Parameters (MOP Framework). Microbes act as biological buffers for the mineral inputs, preventing salt toxicity and ensuring continuous nutrient availability. Precise management of Vapour Pressure Deficit (VPD) day and night to force optimal stomatal conductance without stressing the biological media. Strict clean-room protocols prevent pathogen intrusion while maintaining non-sterile, highly active beneficial bacteria and fungi populations in the root zone. Looking at a grow room as a closed-loop system changes everything. You aren't "growing a plant"; you are managing a mass and energy balance equation where the plant is a biological transducer. Every watt of light introduces sensible heat. Every drop of water turns into latent heat via transpiration. When a deficiency appears, a grower flushes or adds a bottle of "magic" additive. A master looks at the HVAC duty cycle, realizes the dew point spiked, the stomata closed, and calcium transport stalled due to lack of transpiration, not lack of nutrients. Protocol-driven logic can be automated, replicated, and optimized. Legacy growing and anecdotal habits fail the moment the room moisture volume changes. ADD CALMAG! Comprehensive Substrate Composition: Because why not. 1. Substrate Base & Aeration Media Expanded Clay Aggregates (Hydroton Pebbles) Coir Chunks & Horticultural Coco Coir Sphagnum Peat Moss Horticultural Perlite Horticultural Vermiculite Horticultural Pumice Volcanic Basalt Rock 2. Mineral Amendments & Soil Conditioners Agricultural Gypsum (Calcium Sulfate) Wollastonite (Calcium Silicate) Dolomitic Limestone (Calcium Magnesium Carbonate) Basalt Rock Dust (Trace Mineralizer) Azomite (Micronutrient-Rich Volcanic Ash) Glauconite (Greensand) Crushed Seashells (Calcium Carbonate Source) Pyrolyzed Carbon Feedstocks (Biochar & Horticultural Charcoal) Shungite (Carbonaceous Mineraloid) 3. Organic Nutrient Amendments Steamed Bone Meal (High Phosphorus) Dehydrated Blood Meal (High Nitrogen) Fish Bone Meal (Phosphorus & Trace Calcium) Cold-Processed Kelp Meal (Ascophyllum nodosum) Dehydrated Moringa Oleifera Powder (Botanical Nutrient) Spirulina Powder (Arthrospira platensis / Cyanobacteria Nutrient) Marine Crustacean Biomass (Shrimp & Crab Chitin) 4. Biological Inoculants & Organic Acids Mycorrhizal Fungi Inoculant (Endomycorrhizae / Ectomycorrhizae) Vermicompost (Premium Worm Castings) Humic & Fulvic Acids (Concentrated Humates) Soil-Plant-Atmosphere Continuum (SPAC): An ecological concept referring to the pathway of water moving from the soil, through the plant, and into the atmosphere. Humidity of the air dictates the moisture in the medium, which dictates the rate of pull from the terracotta stakes 15 in total. Terracotta (unglazed, low-fired clay) is highly porous, acting as a breathable, permeable membrane that transports water based on the moisture gradient between the potting medium (soil) and the surrounding air. White terracotta and brown terracotta often have different pore sizes and overall porosity, primarily driven by differences in clay composition, impurities, and firing temperatures. While both are considered porous, brown terracotta often has higher iron content and impurities that behave as fluxes, affecting how the pores form during firing, while white terracotta is generally derived from more refined clays, with smaller pores making it more suited to pure water. This mechanism is driven by capillary action and evaporation. When the surrounding soil is dry, the terracotta acts as a wick, pulling water out of the pot and into the soil. If the soil is very saturated, the terracotta absorbs water from the soil and allows it to evaporate from its outer surface, increasing the drying rate of the soil. Terracotta tends to keep the potting mix at an optimal saturation point, wicking up more water when the outside surface evaporates water into the air. The greater the difference in moisture between the soil and the outside air, the faster the water transfers through the ceramic. In low humidity and hot weather, the evaporation rate from the terracotta surface is high, creating a rapid drying effect. Newer terracotta pots often have a denser, lighter-toned structure that is less porous than traditional, red-orange terracotta, slowing down the moisture transfer rate. Over time, dissolved salts from fertilizer or tap water build up and block the pores, reducing the permeability of the clay. Water is all that is used or needed, thanks to the biochar and the massive storage bank of nutrients. Just waiting until something creeps up. Clay pot irrigation (Ollas), an ancient farming practice, utilizes this property by burying unglazed jars in the soil, allowing water to slowly seep into the surrounding soil only when the soil dries out. Remember to clean terracotta stakes in mild acid after each grow. Submerge the stakes in a solution of 1 part distilled white vinegar to 3 or 4 parts water. Let the stakes soak for 20 to 30 minutes. You will hear a fizzing sound as the acid reacts with and dissolves the mineral salts. Use a stiff-bristled brush or an old toothbrush to scrub away the loosened residue. Rinse the stake thoroughly in clean water to wash away any leftover vinegar. BOOM good for next grow! Indigenous Amazonians created, or at least significantly enhanced, the fertile, dark soil known as Terra Preta de Índio (Portuguese for "Indian Black Earth") by incorporating biochar and other organic materials into the soil. This anthropogenic (human-made) soil technique, which dates back roughly 2,500 to 8,000 years, allowed ancient civilizations to flourish in regions with naturally poor, acidic, and nutrient-poor tropical soils. Electrical Conductivity refers to how easily a material or solution allows electrons or ions to flow continuously when an electrical potential is applied. Electrochemical Reactance is the opposition to alternating current (AC) caused specifically by the temporary storage of energy in electric or magnetic fields, rather than energy being lost as heat. Reactance does not directly alter a material's intrinsic electrical conductivity. Instead, it dictates how the system stores and releases energy over time, which creates a temporary barrier to current flow in AC circuits. Together with resistance, reactance makes up total impedance. Electrical impedance (the combination of resistance and reactance) in the rhizosphere dictates how easily ions and water move into plant roots, directly impacting the Electron Transport Rate (ETR). High impedance restricts ion mobility, leading to nutrient deficiencies that decrease ETR and stunt overall plant growth. Electrolysis in the rhizosphere can reduce the direct ATP energy cost for a plant by electrochemically altering soil chemistry, changing pH gradients, and splitting or reducing compounds so that nutrients become easier to absorb or break down. Electrolysis uses an external electrical voltage to drive chemical reactions (like splitting water or reducing ions). This external electricity performs thermodynamic work on the soil solution. Rather than directly fueling plant enzymatic machinery or lowering biological ATP synthesis costs inside root cells, electrochemical reactions alter surrounding nutrient forms (e.g., changing pH, altering redox states, or breaking tight mineral bonds). By electrochemically making mineral ions more mobile or bioavailable, the plant may spend less root exudate carbon or membrane-transport ATP trying to scavenge locked nutrients, though the plant's baseline respiration and ATP costs for active uptake still apply. Laws of math are conceptual, laws of math are universal, the laws of math are invariant, and the laws of math are exceptionless. The laws of mathematics are the foundational rules that govern structure, quantity, space, and change. Unlike the laws of physics, which describe how our specific universe behaves, mathematical laws are absolute truths independent of physical reality. Think of electricity like highway traffic to easily understand the difference between the movement, the road, and the speed. •Electron Flow is the traffic (the cars moving). •Electrical Conductivity is the highway (how wide and smooth the road is). •Electron Transport Rate (ETR) is the speedometer (how many cars pass by per second). ETR stands for Electron Transport Rate. It measures the speed at which electrons are moved through the thylakoid membranes in a plant's chloroplasts during the light-dependent reactions of photosynthesis. Mass is effectively "congealed" energy. Energy is just numbers. Energy isn't a physical "substance" you can hold or touch. It is essentially an abstract, calculated number that we assign to a system to predict how it will change, interact, or move. A numerical label we attach to matter to track how it behaves. ATP (adenosine triphosphate) is the primary energy carrier in cells, including plant cells. It powers various cellular activities like nutrient uptake, protein synthesis, and cell division. Without ATP, the plant's metabolic machinery would grind to a halt, regardless of the presence of nutrients, oxygen, or carbon. Nutrients, like nitrogen, phosphorus, and potassium, are essential for building plant tissues and various molecules. They are incorporated into proteins, nucleic acids, and other vital compounds. While crucial, their uptake and utilization rely on ATP-driven processes. Oxygen is vital for cellular respiration, a process that generates ATP. While plants can produce ATP through photosynthesis, oxygen is essential for maximizing ATP production in mitochondria through oxidative phosphorylation. Carbon is the backbone of all organic molecules, including carbohydrates synthesized during photosynthesis. It's the fundamental building block of plant structures and fuels. However, its incorporation into organic molecules is also ATP-dependent. We don't grow we facilitate energy conversion. Everything is energy. Energy is represented by numbers. Numbers are frozen music. Music is moving sacred geometry of the Uni-verse.
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Im really pleased with how these girls are turning out, i was worried at 1st as the propagation tent they were in wasnt big enough to get good air flow so they were very small but as soon as i got them into the Homebox triangle tent that all changed and they are looking great. Fantastic strains and genetics by Anesia Seeds.
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Grow diary / germination / The new adventure begins Hello, dear grower friends! 😊 I’m back with a new grow diary and a new adventure. This is my second grow and I’m excited to try new things and improve my skills. I’m thankful for all the support and feedback I’ve received from you . 🙏 In this week’s update, I want to talk about: My setup My seeds My germination My expectations My setup My setup is still an 80 by 80 by 180 cm tent, which is a bit small but nothing else fits in my room. I’m very satisfied with it for the beginning, but I will get a Homebox for the third run because I find the zippers better processed and the inlay reflects more light. My lamp is a LUmatek 200 watt pro edition, which I’m absolutely happy with. It has great handling and processing and it gives enough light for my plants. If I get a smaller tent for a mother plant, I will order from Lumatek again 110 percent. My exhaust is twice as strong as I need it so I can keep it at a quiet 50 percent. It keeps the air fresh and the temperature stable. The temperature is around 25°C and the humidity is around 60%. I water my plants manually according to the Biobizz fertilizer scheme. I use organic nutrients and adjust the pH of the water. The plants are in Lightmix now and will move to 20 l fabric pots in Allmix when transplanting. My seeds As seeds I have this time: 1 Orange Sherbert from Barneys Farm 1 Bruce Banner 1 Apple Fritter 2 Lemon Gelato from a collaboration of Zamnesia and Kannabia These are all very special strains that I’m curious to try. The Lemon Gelato seeds were limited to 500 and I hope they will be fantastic. Of course I have conserved some for later grows. My germination I germinated the seeds in a glass of water for 24 hours and then planted them in small pots with Lightmix. They sprouted after 2-3 days and are now showing their first true leaves. They look healthy and happy, except for one Lemon Gelato seed that didn’t make it, which was probably my fault. The other one is very lively. I have them under the lamp at 18/6 light cycle and at about 50 cm distance. I water them every two days with a spray bottle and a little bit of root juice. My expectations I’m looking forward to the new challenge, especially because it’s a mix of 4 strains this time and I hope we can build on past successes. I want to improve my scrog technique and top the plants at least 3 times. I also want to try mainlining on one of them. I thank you all for stopping by, as soon as it’s worth it there will be a timelapse. 🎥 That’s it for this week. Thanks for reading and stay tuned for more updates on my grow diary. Feel free to leave a comment or a question below. Happy growing! 🌱
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@Reaper
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day 9: the roots start to come out of the netpot slowly (see picture) the water level is 1 inch under the netpot, the bubbles make the roots wet. nothinh much to do here just waiting for water change. the ph has gone up to 6.0 maybe because of the rockwool touching the water when the water level was higher. in the next days i expect the roots to go in the water day 11 (december 15) roots com trough net and i did water change with double strength (507ppm) calmag to around 200 and 100ppm of each three part bottle
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Day 63 flowering (77 days since flip). This lady smells beautiful now. Her pistils are golden orange in so much of her bud but still pushing last ditch attempts to save herself. Bud size is good and they are rock solid too. love this girl and will be sad to cut her down. Yellowing off nicely ready to eat up those chlorophyll stores in the darkness. She will be in her dark period this evening , 48 hrs and she is going to be trimmed and ready to dry. UPDATE☆☆ day 67 and she is out of her dark period trimmed and hanging for her final harvest. Some great buds on her and i think about 6 oz of solid , orangey nugs. cannot wait to try her out.
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Wow. The buds are filling in. The trichomes are starting to pile onto the buds. There aren't many trichomes on the leaves yet, but the buds are thick. The high heat and low humidity has been a struggle. Lots of fan leaves losing the fight with heat, but the buds are looking great. This one is gonna be well over a pound. Well over
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I was finally able to sex them all. 1 Male/Hermie, and the rest have beautiful white pistles forming. They are starting to go through a stretch now as well. I also ordered some more grow lights 3 Mars Hydo TS1000's. I can't wait for those to arrive.)
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@GorkedOut
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Check me out on IG or YouTube (dabking7200) Like, follow, subscribe
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June 28: rainiest June on record but average temperatures. Godfather OG is behind schedule because of the weather but is doing fine.
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Happy with the last few weeks not much eventful happened and forgot to take photos… but yeah apart from mixed the res nutes for the wrong amount of water due to just changing a different size res just before this one, causing plant to droop the next morning but corrected with a complete res change and bounced back in two days as i clocked what I had done quite early on :) slogan of the week ‘if in doubt swap It out’ 😂
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it's been a pleasure growing this plant outdoors as usual.. great results every year same clone off mother produces heavier than usual buds.. with minimal fertilizers.. 25% the amount of indoors chemicals
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pre-flowering they still seem very loaded with nutrients in fact one has burnt tips so I am watering abundantly with only demineralized water when they drain they start to feed them. I removed all the supports, we wait for the flowers 😂
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So I think we are on day 36!!-02/08/22😂 had a lot of things to do but we should be back on track with this diary and the new one!!! So they are a lot bigger than the first blue cheese I had grown! So today because they got so big I’ve had to take em out and put them under a tsw2000 in a bigger tent just while a organise everything! But they are looking amazing so far