DNA and RNA are weakly acidic compounds which are present in living cells.
Lactic acid accumulates in cells as a result of anaerobic metabolism. This occurs when cells do not have enough oxygen to produce energy through aerobic respiration, and instead rely on anaerobic glycolysis to generate ATP.
The ending product of anaerobic respiration in muscle cells is lactic acid.
lactic acid
Lactic acid accumulates during anaerobic metabolism when there is insufficient oxygen available to fully break down glucose for energy production. This buildup of lactic acid can lead to muscle fatigue and soreness.
The primary waste materials produced by muscle cells during metabolism are carbon dioxide (CO2) and lactic acid. During aerobic respiration, CO2 is generated as a byproduct when glucose is broken down for energy. In anaerobic conditions, such as intense exercise, lactic acid accumulates when glucose is partially metabolized, leading to muscle fatigue. Both of these waste products must be removed from the muscle cells and the body to maintain proper function.
Lactic acid accumulates in cells as a result of anaerobic metabolism. This occurs when cells do not have enough oxygen to produce energy through aerobic respiration, and instead rely on anaerobic glycolysis to generate ATP.
The ending product of anaerobic respiration in muscle cells is lactic acid.
lactic acid
lactic acid
Lactic acid accumulates when oxygen debt occurs due to anaerobic metabolism in muscles. This buildup leads to muscle fatigue and soreness.
lactic acid
the pH will decrease.
Lactic acid accumulates during anaerobic metabolism when there is insufficient oxygen available to fully break down glucose for energy production. This buildup of lactic acid can lead to muscle fatigue and soreness.
The pyruvic acid that accumulates as a result of glycolysis can be converted to acetyl-CoA through the process of pyruvate decarboxylation. Acetyl-CoA can then enter the citric acid cycle to generate ATP through oxidative phosphorylation.
The primary waste materials produced by muscle cells during metabolism are carbon dioxide (CO2) and lactic acid. During aerobic respiration, CO2 is generated as a byproduct when glucose is broken down for energy. In anaerobic conditions, such as intense exercise, lactic acid accumulates when glucose is partially metabolized, leading to muscle fatigue. Both of these waste products must be removed from the muscle cells and the body to maintain proper function.
Auxin accumulates on the shaded side of the plant stem due to light exposure, causing cells on that side to elongate and bend towards the light source. This creates the bending of the stem towards the light, known as phototropism. The differential growth of cells in response to auxin distribution results in the plant's ability to bend and grow towards light.
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