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All chemical reactions need energy, and ATP (adenosine triphosphate) is the bodies energy storing and providing molecule. In the process of cellular respiration, two ATP are used, and four are formed, so there is a net gain of two ATP. For some organisms this is enough, but in many organisms, a higher yield of ATP is needed. The body uses what is known as the kreb cycle, which is much more complex, and produces around 36 molecules of ATP.

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Could cellular respiration happen without without phoyosynthesis?

could cellular respiration happen without photosynthesis explain your reasoning


Do active tissues have rapid respiration. Explain why?

Yes, active tissues have rapid respiration to meet the increased demand for energy during activities. This is because respiration supplies the cells with the necessary oxygen to produce ATP, the energy currency of the cell. The increased respiration rate ensures that enough ATP is generated to support the cellular functions required for activity.


Why Gaseous exchange and breathing are necessary for cellular respiration explain?

Gaseous exchange and breathing are essential for cellular respiration because they provide the oxygen needed for the process and remove carbon dioxide, a byproduct of metabolism. Breathing brings oxygen into the lungs, where it diffuses into the bloodstream, while carbon dioxide diffuses from the blood into the lungs to be exhaled. This exchange ensures that cells have a continuous supply of oxygen to produce energy efficiently through aerobic respiration. Without this process, cells would not be able to generate the energy required for vital functions.


Why is understanding energy important to the study of biology?

Understanding energy is important to the study of biology because energy is required for all cellular processes, such as growth, reproduction, and metabolism. Cells need energy to perform these functions efficiently. Moreover, understanding energy flow in biological systems helps explain processes like photosynthesis and cellular respiration, which are central to how organisms obtain and utilize energy.


Explain the procces of cellular respiration?

Cellular respiration is the process of oxidizing food molecules, like glucose, to carbon dioxide and water. The energy released is trapped in the form of ATP for use by all the energy-consuming activities of the cell.

Related Questions

Explain and describe cellular respiration in detail?

lar respiration


Could cellular respiration happen without without phoyosynthesis?

could cellular respiration happen without photosynthesis explain your reasoning


Explain how your breathing is related to aerobic cellular respiration?

Aerobic Cellular Respiration is the process of receiving oxygen through food consumed. Breathing is the act of gas exchange by means of the air in the environment. Breathing and Aerobic Cellular Respiration are related by both acts complete taking in necessary oxygen.


Do active tissues have rapid respiration. Explain why?

Yes, active tissues have rapid respiration to meet the increased demand for energy during activities. This is because respiration supplies the cells with the necessary oxygen to produce ATP, the energy currency of the cell. The increased respiration rate ensures that enough ATP is generated to support the cellular functions required for activity.


Explain the process of cellular respiration, including the specific reactants and products?

cellular respiration, the process by which organisms combine oxygen with foodstuff molecules, diverting the chemical energy in these substances into life-sustaining activities and discarding, as waste products, carbon dioxide and water.


How do you explain respiration in coral organisms?

Explain coral respiration?


When you exercise you breathe harder and faster. using your knowledge of organelles explain why this happen?

When you exercise, your muscles require more energy, which is generated through cellular respiration. During cellular respiration, more oxygen is needed to break down glucose and produce ATP in the mitochondria. The increased breathing rate ensures that sufficient oxygen is delivered to the cells and carbon dioxide, a byproduct of cellular respiration, is removed from the body.


What happens at the cellular level when you breathe?

When you breathe, oxygen from the air is taken in by your lungs and transferred to your blood. The oxygen is then carried by red blood cells to your body's cells, where it is used in cellular respiration to produce energy in the form of ATP. Carbon dioxide, a waste product of cellular respiration, is then carried back to the lungs by the blood to be exhaled.


Why Gaseous exchange and breathing are necessary for cellular respiration explain?

Gaseous exchange and breathing are essential for cellular respiration because they provide the oxygen needed for the process and remove carbon dioxide, a byproduct of metabolism. Breathing brings oxygen into the lungs, where it diffuses into the bloodstream, while carbon dioxide diffuses from the blood into the lungs to be exhaled. This exchange ensures that cells have a continuous supply of oxygen to produce energy efficiently through aerobic respiration. Without this process, cells would not be able to generate the energy required for vital functions.


List and explain the two types of cellular respiration?

the two main types of cellular respiration are aerobic cellular respiration and anaerobic cellular respiration.


Why is understanding energy important to the study of biology?

Understanding energy is important to the study of biology because energy is required for all cellular processes, such as growth, reproduction, and metabolism. Cells need energy to perform these functions efficiently. Moreover, understanding energy flow in biological systems helps explain processes like photosynthesis and cellular respiration, which are central to how organisms obtain and utilize energy.


Explain the procces of cellular respiration?

Cellular respiration is the process of oxidizing food molecules, like glucose, to carbon dioxide and water. The energy released is trapped in the form of ATP for use by all the energy-consuming activities of the cell.