The rate of cyclosis in an Elodea leaf increases upon exposure to light. This is because light provides the energy needed for photosynthesis, which drives the movement of organelles within the cell. The increased cyclosis helps to distribute nutrients and chloroplasts throughout the cell to optimize photosynthesis.
yes. because chloroplasts move whenever light is present. :)
The pH of the water will increase when elodea is exposed to light. This is because during photosynthesis, elodea will take in carbon dioxide, which will result in a decrease in carbonic acid concentration, leading to an increase in pH.
Elodea is placed in both flasks to show how aquatic plants release oxygen during photosynthesis. By comparing the presence of bubbles in the light and absence of bubbles in the dark, one can observe the effect of light on the process of photosynthesis in Elodea.
up my asss
The long disk-like green structures within an Elodea cell are likely chloroplasts. Chloroplasts are organelles that contain chlorophyll, the pigment responsible for capturing light energy for photosynthesis. They play a key role in converting light energy into chemical energy for the plant.
yes. because chloroplasts move whenever light is present. :)
Oxygen was produced by the elodea during photosynthesis while it was exposed to light.
Light
Cyclosis refers to the circulation of the cytoplasm within living cells. Streaming aids in the transportation of substances around the cell and facilitates the exchange of materials between and within cells.
Elodea respires in both the light and the dark. However, the rate of repiration exceeds the rate of photosynthesis when the plants are kept in the dark.
The pH of the water will increase when elodea is exposed to light. This is because during photosynthesis, elodea will take in carbon dioxide, which will result in a decrease in carbonic acid concentration, leading to an increase in pH.
Elodea is placed in both flasks to show how aquatic plants release oxygen during photosynthesis. By comparing the presence of bubbles in the light and absence of bubbles in the dark, one can observe the effect of light on the process of photosynthesis in Elodea.
Elodea can conduct photosynthesis in the light, utilizing light energy to convert carbon dioxide and water into glucose. In the dark, elodea will not photosynthesize, but will perform cellular respiration, breaking down stored sugars to produce energy.
up my asss
Elodea can float on water due to its buoyant nature. The leaves and stems are filled with air spaces that help them stay afloat. This characteristic allows the plant to access sunlight more easily for photosynthesis.
Yes. An organism is anything that is alive. What constitutes alive? Something that's alive fulfills these 7 requirements: Homeostasis. This means regulating the internal environment. Does Elodea regulate itself? Yes. Organization, or being made up of one or more cells. Elodea is made of cells. Metabolism, or making cells and energy. Does Elodea do this? Yes. Growth. Does Elodea grow? Yes. Adaptation, or being able to change in response to its environment. Can Elodea change in response to its environment? Yes. It will grow towards a source of light. Response to stimuli. Yes, Elodea does respond to stimuli. As mentioned before, it will grow towards light. Reproduction, or producing new organisms. Can Elodea reproduce? Yes. Elodea fulfills all of these conditions; therefore, it is alive and therefore an organism.
The exposure is controlled by the camera's light meter