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@cezario
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So this was the week changed the light cycle to 12/12. I also went to town again and defoliated, lollipopped and ScrOGed them
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@Canadian
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This girl flowers and branches are very heavy Despite not being sugar coated Flowers She is still in development and will become much more heavy . I think that we are looking at probably three more weeks of development to start to check on flower Maturity maybe more but despite being treated Brutally she is a survivor with so much Height she is ideal for our Canadian outside summer. Thank you for reading I continue to update have a happy grow
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So langsam rückt das Ende immer näher. Habe diese Woche ein paar Blätter entfernt die Schatten geworfen haben um vollen Lichteinfall zu haben . Ab Woche 7 werden die Ladys nur noch Wasser bekommen . Buds werden fetter und fetter . Much love an alle 💚💚💚💚
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Es wächst und gedeiht. Ich bin gespannt wie die Runtz und die Strawberry kommen vom Geschmack und Wirkung.
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@Ksouth1
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Last week went well once the distance was changed for the light and I added another mL per gallon of cal-mag and she is getting color back to some of the damaged leaves. I think she is back on the right track. She has needed more cal-mag than anything I have grown. Can't wait to try it out when finished. The smell is unreal. Reminds me of a super sour smelling candy like sour patch kids. She is stacking up bud nicely so far. Just smooth sailing for the next few weeks I expect. Until next time happy growing to everyone!
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@Reyden
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Come già ho accennato purtroppo non ho avuto tempo per stare dietro a tutto e chiedo scusa a tutti per la mia assenza sul forum 🙈 Sono sempre più convinto che questo sarà il mio lavoro perché è L unica cosa che riesce a darmi soddisfazioni e buon umore quando lo faccio,oltre che benefici perché ovviamente sono un fumatore e lo sarò per sempre 🐮🐒🐶🦑 Infatti sto valutando di poter andare in USA California per poter fare L università e poter lavorare in questo settore che sarebbe il mio sogno!!! Voglio poter aiutare le persone con questa pianta magica come lei ha aiutato me per tante cose… Purtroppo in Italia è repressa ma stiamo piano piano andando nella giusta direzione almeno per ambito terapeutico e farmaceutico ( bedrocan,bedica,bediol,bedrolite ecc…) Tornando a noi voglio ringraziare SS per L ottimo lavoro che fate e spero di poter presto fare un ordine con le vostre nuove genetiche e provare la linea Red e fast version!!!
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The first week of this Strawbbery gorilla 🍓🦍 passed and here i have photos of her 11th day she growing good for 11 days and i had start give her first nutrients that are Hesi nutrients. Day 13 i saw difference in 2 days she growing every day enjoying the Marshydro Ts 600 as that is her first light in veg tent.
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and every day we come closer to harvest hmmm time is torture now. best grow i ever done nutrients controlled only once in week plant very vorgiving all my mistakes. awesome. i bend the side down and well im breake it so i hope he will survive and i call it planed HST.
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Almost 4 pound of plant. I got to taste this strain coco and hydro. Bud looks and smells fantastic. Dunk extremely ⛽⛽⛽🌈🌈🌈
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Seedling managing 93F 30%RH, around 20 DLI. Vpd is in the 3's. No I don't recommend. Signum Magnum. "A great sign appeared in the sky a woman clothed with the sun with the moon under her feet and on her head a crown of twelve stars. Sing ye to the Lord a new canticle: because He has done wonderful things. Glory to the Father, and to the Son, and to the Holy Spirit As it was in the beginning, and now, and ever shall be, world without end." The plant nutrient nitrogen exists in forms with both positive and negative charges. Ammonium (NH4+)(immobile in soil)(Cation) has a positive charge, while nitrate (NO3-) (highly mobile in soil)(Anion)has a negative charge. Nitrogen is unique among plant nutrients in that it can exist in both positively charged (ammonium, NH₄⁺) and negatively charged (nitrate, NO₃⁻) forms in the soil. This makes it a special nutrient. In that it is responsible for providing balance for reactionary trade offs when it comes to ph. Because ph itself in the medium will always slowly drift towards acidicity, such is nature. 80% of nitrogen should be nitrate and no more than 20% ammoniacal nitrogen. Ca, mg, and K are the big 3 cations related to soil composition, pH & base saturation. When nitrogen is in the form of ammonium, it can compete with calcium, magnesium, and potassium for absorption sites in the plant root. This competition can lead to a reduction in the uptake of these other essential nutrients. Nitrogen, particularly in its nitrate form (NO3-), can increase soil acidity, which can also affect the availability of calcium, magnesium, and potassium. The form of nitrogen applied (ammonium vs. nitrate) can influence its interactions with other nutrients. Ammonium nitrogen can have a more pronounced negative effect on the uptake of calcium, magnesium, and potassium compared to nitrate nitrogen. Common forms of ammonium nitrogen include ammonium ion (NH4+), urea, and ammonium compounds like ammonium nitrate, ammonium sulfate, and ammonium phosphate. Common forms of nitrate nitrogen include potassium nitrate (KNO3), sodium nitrate (NaNO3), calcium nitrate (Ca(NO3)2), and ammonium nitrate (NH4NO3). Phosphorus is an essential plant nutrient, and its availability in the soil is strongly linked to the presence of oxygen. Plants primarily absorb phosphorus as phosphate (PO4), and oxygen is a key component of this molecule. Furthermore, the availability of phosphorus in the soil can be impacted by factors like soil aeration and temperature, which in turn affect the oxygen supply to the roots. Phosphorus uptake in plants is most critical during the early stages of growth, particularly within the first few weeks of plant development. Young plants actively growing tissues have a high demand for phosphorus. They may absorb up to 75% of their total phosphorus requirements within the first few weeks of vegetative growth, with up to 51% of uptake happening overnight, primarily in the first few hours or early nightfall. ⑨Anaerobic root respiration, or respiration without oxygen, is detrimental to plants because it's less efficient and produces toxic byproducts, leading to reduced energy production, nutrient uptake issues, and ultimately, root damage and plant stress. ⑨Anaerobic respiration, unlike aerobic respiration, doesn't utilize oxygen as the final electron acceptor in the electron transport chain. This results in a significant drop in the amount of energy (ATP) produced, which is necessary for various plant functions, including growth, nutrient uptake, and maintenance of cellular processes. ⑨In the absence of oxygen, plants produce byproducts like ethanol and lactic acid during anaerobic fermentation. These byproducts can be toxic to the roots and inhibit their function, ⑨When oxygen is depleted in a medium, the pH tends to decrease (become more acidic) due to the production of metabolic byproducts. This is particularly relevant in biological systems where aerobic respiration relies on oxygen as the final electron acceptor. ⑨When oxygen is scarce, plants may switch to anaerobic respiration. This process produces carbon dioxide (CO2) as a byproduct. ⑨CO2 dissolves in water to form carbonic acid (H2CO3). This acid lowers the pH of the medium, making it more acidic. ⑨Anaerobic conditions can impair a plant's ability to regulate its internal pH, leading to a drop in cytoplasmic pH and potentially cellular acidosis. ⑨The change in pH can also affect the availability of certain nutrients to the plant, as pH influences the solubility of micronutrients like iron, manganese, zinc, copper, and boron. ⑨The lack of oxygen in the plant medium leads to a decrease in pH due to the production of carbon dioxide during anaerobic respiration and impaired pH regulation within the plant. In plant cells, cellular acidosis, a drop in the internal pH of the cytosol, is a significant stress response, particularly during conditions like flooding or hypoxia. This acidification can be triggered by a decrease in oxygen levels, leading to the production of metabolic byproducts like lactic acid and CO2. The plant's ability to tolerate and recover from these conditions depends on its cellular mechanisms to regulate pH and mitigate the effects of acidosis. When plants are subjected to low oxygen environments, such as those experienced during flooding, anaerobic metabolism, which produces lactic acid and ethanol, becomes the primary source of energy. This can lead to a build-up of these acidic metabolites in the cytosol, causing a drop in pH. OXYGEN Atomic oxygen (single oxygen atom, O) is the lightest form of oxygen, as it has the lowest mass of the oxygen molecules. Oxygen also exists as a diatomic molecule (O2) and an allotrope called ozone (O3), which have higher masses due to the number of oxygen atoms combined. Atomic Oxygen (O): This refers to a single oxygen atom, which is the most fundamental form of oxygen. Molecular Oxygen (O2): This is the common form of oxygen we breathe, consisting of two oxygen atoms bonded together. Ozone (O3): This is an allotrope of oxygen, meaning it's a different form of the same element, consisting of three oxygen atoms bonded together. Since atomic oxygen has the fewest oxygen atoms, it naturally has the lowest mass compared to O2 or O3. Ozone (O3) Lifespan: Ozone has a relatively long lifespan in the stratosphere, particularly at lower altitudes. For example, at 32 km in the middle latitudes during spring, ozone has a lifetime of about 2 months. Oxygen (O) Lifespan: Atomic oxygen, on the other hand, has a much shorter lifespan. At the same altitude, its lifetime is about 4/100ths of a second. Ozone-Oxygen Cycle: The ozone-oxygen cycle involves the rapid exchange between atomic oxygen (O) and ozone (O3). UV radiation can split molecular oxygen (O2) into atomic oxygen (O), which then reacts with O2 to form ozone (O3). Ozone can also be photolyzed by UV radiation, creating atomic oxygen again, which can then react with O3 to reform O2. Dominant Form: The partitioning of odd oxygen (Ox) between ozone and atomic oxygen favors ozone in the lower stratosphere. This means that a much larger proportion of odd oxygen exists as ozone than as atomic oxygen, especially in the lower stratosphere. Recombination: Atomic oxygen has a high energy and reactivity. When it encounters another oxygen atom, they can combine to form O2. This process releases energy, contributing to the heating of the atmosphere. Ozone Formation: Atomic oxygen can also react with molecular oxygen (O2) to form ozone (O3). Ozone plays a significant role in absorbing harmful UV radiation. Other Reactions: Atomic oxygen can react with various other molecules in the atmosphere, like nitrogen (N2), water (H2O), and carbon dioxide (CO2), forming different compounds. UV light below 240nm (peak 185nm) creates ozone (O₃) through a process called photolysis, where UV light breaks down dioxygen molecules (O₂) into single atomic oxygen atoms (O). These single oxygen atoms then react with other oxygen molecules to form ozone (O₃). Specifically, UV-C light with wavelengths shorter than 240 nm can cause this photolysis. UV light with wavelengths between 240-280 nm, (peak 254 nm) breaks down ozone (O₃) into dioxygen molecules (O₂) and atomic oxygen atoms (O). 280nm does not have the energy potential to break apart the stable bond of (O₂) into enough (O) to make (O₃) At ground level, atomic oxygen (single oxygen atoms) has a very short lifespan. This is because it's highly reactive and quickly combines with other molecules to form stable diatomic oxygen (O2) or other compounds. While the exact timeframe varies depending on the specific circumstances, its lifespan is typically measured in nanoseconds or picoseconds.
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03.11. Day 36 Hallo liebe Leute. Sie brauchte mehr Platz, denn sie steht kurz vor der Blüte und wächst sich gut einen zurecht. Jetzt darf die TS1000 ran. 04.11. Bessere Photos von Krassem Weed, ihre Seitenarme berührten heute morgen die Wände. Die wäre draussen echt nen eigener Wald geworden. Also das Wachstum finde ich schonmal super. Wie eine große Indica. Jetzt darf sie mich mit ihren Blüten betören. 05.11. Sie wandelt sich gerade. Stigmen in den Astarmen werden deutlicher. Und im Moment duftet sie nach Sandelholz. Nett. 06.11. Ist sie in Blüte?! Der Wandel vollzieht sich gerade. Gut das ich einen aktiv Kohle Filter habe.
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* ********* Week 10 - June 13 to 19, 2020 - Days 64 to 70 from germination *********** * Adding in the pictures for now......... GSC has had a good week but also a slow week like the other girls growing right now. Her buds are plentiful and the hairs are long and white........she just isn’t filling in as she should.......and I suspect wants to........damn pH issues are persisting with her as well. She was transplanted into plastic pots but her runoff numbers are still over 7 while max going in was roughly 6.0.🤬🤬 This is true for both the GSC girls. They received a 25L flush of 3.7pH water this week and that bearly pulled down the pH to 6.7??? GSC2 is paying a price and it sucks but there are always trade offs in life😃 She wants to be in 82 degrees and a 65 percent humidity but she is in with girls wanting 70’s and 50’s😢😢😢 Her leaves have become very dark green and brown spotting with further lockout issues. Her buds have very white hairs and we will keep on the same path. GSC has filled up the tent and with the controllers and other light in place she has been in a perfect environment of 82 degrees and 63 percent humidity. With the little SP-150 and the HLG she has roughly 280 watts to keep her swelling and firming up. By the end of the week she is showing signs of improvement and buds are gaining weight again!!!! The frost coming out on GSC has been very very impressive so far!! The high pH will hurt the yield but she appears as though the buds will be sticky👍 Have to run these girls again in a proper environment......I really want to see her potential realized. The big buds are in there......just not as visible this run😃 Fast Buds girls have been really solid and very impressive!!!!! Little more detail............ June 13/20 - Day 64 - AM feeding - plain tap water adjusted to 5.1 pH....275ppm - 2L for GSC and 1L for GSC2 - PM feeding - Overdrive, Rezin, Vitathrive @ 2ml, Liquid Wt, Dual Fuel @ 1.5ml, CalMag @ 1.5ml = 1450ppm - GSC took 4.5L and GSC2 took 2.5L - runoff numbers in the pots before feed was 1700ppm and 7.1pH.......WTF? - brown spotting on leaves so increasing CalMag. - tent dialled in and hold temps and humidity now. June 14/20 - Day 65 - letting the pots dry out a little more so can give a flush to work on reducing pH, - both girls had a good night and swelled more. June 15/20 - Day 66 - big flush day......each girl given 26L flush of water pH to 5.0 - striving to get them down to the 6.1 range....... - they are still going to be fed but pH will be lowered. June 16/20 - Day 67 - mixed 7L of water with Overdrive, Terpinator @ 2ml, Vitathrive, Liquid Wt, Rezin, CalMag, Dual Fuel @ 1.5ml = 1400ppm and pH to 4.0 - GSC given 4.5L and GSC2 took 2.5L - Moved another light in this tent to increase wattage. - Added sugar and yeast CO2 to this tent now as well. - GSC2 looking really good today.....leaves up and happy. June 17/20 - Day 68 - mixed 8L water with Rhinoskin @ 1ml, Terpinator @ 2.5ml, Overdrive, CalMag @ 2ml, Vitathrive, Liquid Wt, Rezin, Dual Fuel @ 1.5ml = 1450ppm and 4.1pH - GSC took 5L and GSC2 took 3L.......there was fair bit of runoff, - GSC buds getting bigger and nice color in the leaves. - GSC2 looks taller and leaves up😀 June 18/20 - Day 69 - only GSC fed today,,.,..,.,5L with Terpinator @ 3ml, Overdrive, CalMag @ 2ml, Vitathrive, Liquid wt, Rezin, Dual Fuel @ 1.5ml = 1475ppm and pH to 4.5 - GSC only took 3L though so will keep the other 2L for tomorrow. - for the most part left them alone today. - letting GSC2 dry out for a day. June 19/20 - Day 70 - GSC fed the 2L of mixture left from yesterday. - GSC2 given 1L mixture of Rezin, Liquid Wt, Sensyzime @ 2ml = 385ppm and 4.5pH. - GSC is a BEAST! Stacking her buds and filling in her colas👍💪 - GSC2 is really happy today!
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Lil youngin on their way home should be home for 4/20 along with 2 of their mother...as for the breeding project pollination is a success also been harvesting pollen(feminized) for later use Mothers are growing well jus to continue cut and set aiming for about 1000 already cut 3 and got 100...happy growing
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Week 23 - kitty says hi! This lady is getting out of control. We're 4 weeks from harvesting. Autumn gets very wet and last year I had bud rot, so end of october is the last day. I really need to defoliate to give those buds all the sun they can get.
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Swiched the light schedule to 12/12. I was planning to put a net in this week but I'll have to swich up the positioning to make it more efficient, as they're growing like crazy and I expect they'll at least double in size,
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@BLAZED
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Week 14 (17-10 to 23-10) 17-10 Temperature: 23.4 degrees (lights on) 17.5 degrees (lights off) Humidity: 70% (highest) 55% (lowest) Watering: 400 ml. PH 6.5 EC: 0.6 (without Hybrids & PK+) 18-10 Temperature: 23.6 degrees (lights on) 17.1 degrees (lights off) Humidity: 70% (highest) 54% (lowest) Watering: 900 ml. PH 6.5 EC: 0.6 (without Hybrids & PK+) 19-10 Temperature: 24.3 degrees (lights on) 17.8 degrees (lights off) Humidity: 81% (highest) 59% (lowest) Watering: 1210 ml. PH 6.5 EC: 1.7 (with Hybrids & PK+) 20-10 Temperature: 25.1 degrees (lights on) 18.2 degrees (lights off) Humidity: 84% (highest) 62% (lowest) Watering: None. 21-10 Temperature: 25.6 degrees (lights on) 18.6 degrees (lights off) Humidity: 99% (highest) 64% (lowest) Watering: 1200 ml. PH 6.5 EC: 0.6 (without Hybrids & PK+) 22-10 Temperature: 25.8 degrees (lights on) 19.3 degrees (lights off) Humidity: 89% (highest) 63% (lowest) Watering: None. 23-10 Temperature: 25.7 degrees (lights on) 19.1 degrees (lights off) Humidity: 89% (highest) 60% (lowest) Watering: 1000 ml. PH 6.5 EC: 1.7 (with Hybrids & PK+)
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@Rando1314
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Switched to 12/12 a few days ago. Girls are loving it!! Also after treating for bugs of some sort I let loose ab 50 ladybugs (most of which died but some are doing well) hopefully they pick through and get rid of anything left behind. Color is good but there’s a few brown spots and brown tips on a cpl leaves. Defoiled a bunch of leaves hoping it pushes all growth upwards. First time scrogging so this is all experimental for me so I hope I’m doing well! We shall see in ab 8 weeks when she’s ripe I can’t wait!!!
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@Doubleb84
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Just wow…still kinda shocked everytime I look in the tent and see how massive this girl is! Feeding her 1200ppm every two days at this point. Probably going to need some supports soon!