Fermentation: Takes place without oxygen, takes place in cytoplasm.
Cellular respiration: Requires oxygen, takes place in cytoplasm and mitochondria.
Both: Are ways that organisms produce energy by breaking down glucose.
The glycolysis and the Krebs cycle uses the oxygen to break down the food molecules in order to release energy.
Cellular respiration converts biochemical energy from nutrients into ATP, and then release waste product. The excretory system removes the waste products from the organism and supports cellular respiration.
The waste products of cellular respiration are carbon dioxide and water. These products can be used by plants in the process of photosynthesis to produce glucose and oxygen.
Cellular respiration would produce less energy.
Cellular respiration is the process by which glucose is turned into energy. Without this process, cells would not be able to divide and reproduce, meaning humans and other animals could not survive.
Glucose is a common product involved in both cellular respiration and fermentation. In cellular respiration, glucose is broken down in the presence of oxygen to produce ATP, while fermentation involves the breakdown of glucose in the absence of oxygen to produce energy in the form of ATP.
ATP Carbon dioxide Note that the quantity produced could be different.
ATP Carbon dioxide Note that the quantity produced could be different.
The glycolysis and the Krebs cycle uses the oxygen to break down the food molecules in order to release energy.
could cellular respiration happen without photosynthesis explain your reasoning
most likely cellular respiration,but could be fermentation or cytokinesis or even photosynthesis. what ever you think sounds best than that's your answer.
There would be less glucose produced for respiration.
No, because photosynthesis makes Glucose and cellular respiration breaks down the glucose into Carbon Dioxide and H20 (Water
Yes. Cellular respiration produces ATP, which crickets need so survive, since it is the main way energy is stored in living things. If crickets could not carry out cellular respiration, they would not be alive.
An individual unable to absorb oxygen into the body is called dead, and is unable to perform cellular respiration.
To decrease cellular respiration, you can reduce the availability of oxygen, as it is a crucial component of aerobic respiration. Limiting nutrient supply, such as glucose, can also slow down the process since glucose is a primary energy source. Additionally, increasing the temperature can lead to denaturation of enzymes involved in cellular respiration, thereby inhibiting their function. Finally, introducing inhibitors that target specific pathways of cellular respiration can effectively decrease its rate.
In an anaerobic environment, aerobic cellular respiration cannot fully occur, leading to the absence of oxygen as the final electron acceptor in the electron transport chain. As a result, one key product of aerobic respiration, ATP, is produced in much lower amounts, and the byproducts of the process, such as water, cannot form. Instead, cells may rely on anaerobic processes like fermentation, which generate different byproducts and significantly less ATP.