When auxins are exposed to light, they tend to move away from it, which is known as phototropism. This movement helps plants to grow towards light sources by elongating cells on the shaded side of the plant.
auxins are not stable in light because it will degenerate the hormones.so,when light touches at one side of the coleoptile,auxins will move to the other side (less sunlight).this makes the shoot grow faster at the side which have more auxins and slower at the place where there are less auxins and this makes the shoot bend towards the light source =P
Auxins play a crucial role in phototropism, the plant's growth response to light. They promote elongation of cells on the shaded side of the plant, causing it to bend towards the light source. Auxins help to redistribute growth hormones, leading to asymmetric growth and the plant's directional growth towards light.
Growth towards light is regulated by hormones called auxins. Auxins stimulate growth in the area of the plant that they are found and are produced by the tip of a stem. In sunlight they break down. As such there are more auxins on the shaded side of the plant. This will cause more growth on one side of the plant which will make it grow towards the light.
The process is called dark adaptation. It occurs when your photoreceptors in the retina become more sensitive to light in low-light environments after being exposed to bright light.
Auxins are primarily transported in the phloem tissue of plants. They can move in both directions within a plant using the phloem, allowing for the long-distance signaling that regulates plant growth.
Auxins move from their source into the rest of the plant, where they stimulate cell elongation. A higher concentration of auxins accumulate in the shaded part of a stem and causes the plant to move towards the light.
auxins are not stable in light because it will degenerate the hormones.so,when light touches at one side of the coleoptile,auxins will move to the other side (less sunlight).this makes the shoot grow faster at the side which have more auxins and slower at the place where there are less auxins and this makes the shoot bend towards the light source =P
They turn black
Auxins which are plant hormones.
It explodes. Only joking :) Nothing visible happens to it that we know of
Plants have things in them called auxins. The lighter the place, the more auxins a plant will have. Auxins make the plant's cells stretch towards the light, making the plant bend and get taller.
When film is exposed to light, the chemicals on the film react to the light and create an image. This process is called photochemical reaction. The image is then developed and fixed onto the film, creating a photograph.
When film is exposed to light, the light causes a chemical reaction in the film's emulsion, creating an image on the film. This process is known as photochemical reaction, where light interacts with the light-sensitive chemicals in the film to capture the image.
Auxins are plant hormones that play a key role in both phototropism (growth towards light) and gravitropism (growth in response to gravity). In phototropism, auxins accumulate on the shaded side of the stem, promoting cell elongation and bending towards the light source. In gravitropism, auxins redistribute in response to gravity, causing differential growth and either upward (negative gravitropism) or downward (positive gravitropism) bending of the stem.
There are auxins in plants (They help the plant in it upward growth). They tend to move away from direct sunlight.so when the plant is directly casted by light, the auxins in the plant move to the other side of the plant that has less light, thus their concentration becomes more on one side (the side with less light). Now since they help in the plant growth, the side of the plant with more of the auxins tends to grow faster than the side with less auxins, therefore the plant bends towards the light.
When a film is accidentally exposed to light, it can result in overexposure, causing the images on the film to be ruined or washed out. This can lead to loss of detail and clarity in the photos.
Selenium is photoconductive, meaning its electrical conductivity increases when exposed to light. This property is used in applications such as photocopiers and solar cells. However, prolonged exposure to bright light can degrade selenium's performance.