Cellular respiration is the process that "withdraws" the energy.
Yes, photosynthesis is the process by which plants convert sunlight into chemical energy in the form of glucose. This energy is stored in plant tissues and is used by other organisms when they consume plants, making photosynthesis a key component in the energy flow of ecosystems.
The cell gets its energy when nutritional components of food are oxidized by the oygen of inspiration in mitochondria. When the cells need energy a phosphate bond breaks and energy is released for performing particular cellular activity.
No, photosynthesis is a fundamental process in plant biology where plants use sunlight to convert carbon dioxide and water into glucose and oxygen. Without photosynthesis, plants would not be able to produce energy and oxygen, which is essential for the survival of many organisms on Earth.
Chloroplast movement in plant cells is regulated by cytoskeletal elements, such as actin filaments and microtubules, as well as motor proteins that drive their transport within the cell. This movement allows chloroplasts to optimize their positioning for light absorption and photosynthesis. Environmental signals, such as light intensity and direction, also influence chloroplast movement patterns.
A theoretical model is presented to account for the physical mechanism of energy transfer from antenna molecules to the reaction centers in photosynthesis. The energy transfer is described by a generalized transport equation or "master equation". The solution of this equation for the proposed model gives a relationship between the antennae interaction energy and the transfer rate. The results are shown to be in agreement with inter-antenna transfer rates calculated from experimental fluorescence lifetimes. Previous theories were based either on the Förster mechanism, which is valid for very small interaction energies, or an exciton model valid for very large interactions, but experimental results seemed to indicate that the actual situation was intermediate between these two. The Förster theory and the exciton model are limiting cases of the master equation.
Cellular respiration is the process that "withdraws" the energy.
Plants produce food to run their cellular activities, so they burn the food they produce while some of it gets stored. Therefore, the rate of respiration must be taken in account in order to see the complete rate of photosynthesis.
When organisms use cellular respiration to process energy, only a small amount of energy is transferred to the next trophic level.
Just name any 10 plants, green algae, or photosynthetic protists such as seaweed. maple tree petunia Euglena kelp rose gardenia ash tree pine tree hibiscus palm tree
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Energy is released in cellular respiration. For example, imagine you were to eat a bowl of cereal and breathe oxygen. Enzymes would break down starch into glucose and other enzymes would break down the glucose into energy.
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