It's called that because it needs oxygen
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Dark respiration refers to the process by which plants release carbon dioxide through cellular respiration during the night, in the absence of light. This process involves breaking down stored carbohydrates to generate energy for cellular functions when photosynthesis is not occurring.
The process is called cellular respiration. Oxygen moves out of the cells during the final step of cellular respiration, where it is used to produce energy (ATP) through a series of chemical reactions.
When muscles become deprived of oxygen, they switch to anaerobic respiration, a process known as lactic acid fermentation. This occurs during intense exercise when the oxygen supply is insufficient for aerobic respiration. As a result, lactic acid is produced, which can lead to muscle fatigue and soreness. This switch allows for continued energy production, albeit less efficiently than aerobic metabolism.
Plants perform cellular respiration to break down glucose molecules produced during photosynthesis to release energy for cellular processes. This process occurs in the mitochondria of plant cells and is essential for producing ATP, which is the primary energy source for cellular activities.
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The anaerobic phase of cellular respiration is known as glygolysis. This is where glucose molecules are broken down into pyruvic acid.During this process, 2 molecules of adenosine triphosphate (ATP) is produced.
Dark respiration refers to the process by which plants release carbon dioxide through cellular respiration during the night, in the absence of light. This process involves breaking down stored carbohydrates to generate energy for cellular functions when photosynthesis is not occurring.
The process is called cellular respiration. Oxygen moves out of the cells during the final step of cellular respiration, where it is used to produce energy (ATP) through a series of chemical reactions.
Quit asking the same question in 4 different categories.
An organism that requires oxygen for its survival and metabolism is called an aerobic organism. These organisms rely on oxygen to produce energy through aerobic respiration.
When muscles become deprived of oxygen, they switch to anaerobic respiration, a process known as lactic acid fermentation. This occurs during intense exercise when the oxygen supply is insufficient for aerobic respiration. As a result, lactic acid is produced, which can lead to muscle fatigue and soreness. This switch allows for continued energy production, albeit less efficiently than aerobic metabolism.
Plants perform cellular respiration to break down glucose molecules produced during photosynthesis to release energy for cellular processes. This process occurs in the mitochondria of plant cells and is essential for producing ATP, which is the primary energy source for cellular activities.
Homework question? Well, I am sure you know we breath in oxygen and it enters the blood in the lungs. That oxygen is used in your cells to turn food into energy in a process called cellular respiration. When this process uses oxygen we call it aerobic respiration (meaning "with air") The part of the process that uses the oxygen is the Kreb's cycle. The process produces a waste gas that is eliminated in the lungs at the same time the oxygen enters. What you need to ask yourself is...what is the opposite of oxygen? A hint, plants do it the other way around, they breathe in ______ and the waste they produce is oxygen. Hope this helps! D
The release of energy from food molecules in the absence of oxygen is called anaerobic respiration. When there is oxygen present it is called aerobic respiration.
In aerobic cellular respiration, hydrogen atoms are pumped into the intermembrane space of the mitochondria via a proton pump to create a concentration gradient. The flow of protons back into the matrix (call chemiosmosis) yields 32-34 molecules of ATP, which is where the bulk of the energy comes from in cellular respiration.
The gas exhaled when you breathe out is called carbon dioxide. It is a waste product of cellular respiration in the body.