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Transpiration in redwoods primarily occurs during the daytime when sunlight is available for photosynthesis. This process takes place mainly through the stomata, tiny openings on the leaves, allowing water vapor to escape into the atmosphere. Redwoods, with their tall stature and extensive canopy, can transpire large amounts of water, which helps regulate internal temperatures and contributes to local humidity levels. Additionally, transpiration can occur year-round, but rates may be higher during warm and dry conditions.

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What part of the leaves does transpiration occur?

it goes in the toilet.


Evaporation of water from surface of the leaf is called?

This phenomenon is called transpiration.


Which conditions will transpiration occur quicker than the control and why?

Transpiration will occur quicker in conditions of high temperature, low humidity, and high light intensity compared to the control. This is because higher temperatures increase the rate of water evaporation from leaves, low humidity creates a steeper concentration gradient for water vapor to diffuse out of the leaf, and high light intensity boosts photosynthesis, leading to increased transpiration to support metabolic processes.


Which important phenomena occur in plant leaves and help water transportation in xylem tissues?

Two important phenomena that occur in plant leaves to help with water transportation in xylem tissues are transpiration and cohesion-adhesion. Transpiration is the process where water evaporates from the leaves and creates a force to pull more water up from the roots, while cohesion-adhesion are forces that allow water molecules to stick together and to the walls of xylem vessels, aiding in their movement upwards.


How is transpiration completed?

Transpiration is the process by which plants release water vapor through small pores on their leaves called stomata. This water vapor evaporates into the air, helping to cool the plant and allowing for the uptake of water and nutrients from the soil through the roots. Transpiration also plays a role in regulating the plant's internal water pressure and nutrient transport.