Thoughts on VPD and more - AT33

alantesla33

New Member
High everyone,

I'm new here btw. I'm working on my 2nd cycle in perpetual.

Today I had a thought. Maybe some genius here can help.

The presence of light must create osmotic resistance I think the value would be -/+ based on a set benchmark of humidity.

We're getting into osmotic absorption via stoma on the underside of leaves.

Surely their are other gasses than CO2 that these lady's love...

WORLD PEACE 2 DAY!
 
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Guard cells regulate the stomata. When it's hot guard cells close stomata. (AT THIS POINT YOU CANNOT ABSORB OZONE) .

When the air is cool and humid the guard cells will open the stomata letting ozone exchange and let your plant "Breathe".

I don't know the exacts yet but that is science fact.

Source:
Study.com | Take Online Courses. Earn College Credit. Research Schools, Degrees & Careers
Danielle Webber
Masters in Science Education

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Did you know that root hairs only live a few days and our gals have to continually produce these along with all the other systems within them aside from bud building.

Or gals will have to generate:
Protoderm
Procambium
Parenchyma
&
Collenchyma

for this specific task of growing root hairs throughout their life.

Yes mycorrhizal fungi do form a harmonious relationship with our ladies root system so it's a must have for every garden IMO.
 
Can anyone explain under-lighting to me? Their are not any chloroplast cells (to turn light to sugar) on the underside of the leaves so I'm not sure how this will help produce anything.
 
Can anyone explain under-lighting to me? Their are not any chloroplast cells (to turn light to sugar) on the underside of the leaves so I'm not sure how this will help produce anything.

. going along with my research the heat from the under-lighting would close the stoma not allowing for ozone exchange or water vapor to be released from these areas. Your plant won't be able to move water from root to shoot. So you wouldn't be absorbing nutrients.

Detrimental if you ask me.
 
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