Since cellular respiration is a catabolic reaction pathway, the equation will show a complex molecule being broken down into simpler molecules. It is often represented as this reaction shown below.
6C6H12O6 + 6O2 --> 6CO2 + 6H2O + 34ATP
As you can see, the first reactant, glucose, is being broken down into simpler molecules. ATP is also produced which is a main goal of cellular respiration, so this equation is most definitely a form of cellular respiration.
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.
To calculate the cellular respiration rate in moles of glucose per minute, you need to convert the volume of CO2 produced into moles using the ideal gas law. Then, you can use the stoichiometry of the cellular respiration reaction to relate the moles of CO2 produced to moles of glucose consumed. Once you have both values, you can determine the rate of glucose consumption per minute.
Bromothymol Blue is a pH indicator that changes color in response to acidity levels. During cellular respiration, carbon dioxide is produced, which reacts with water to form carbonic acid, lowering the pH of the solution. By measuring the color change in Bromothymol Blue, you can indirectly assess the rate of cellular respiration: a faster rate of respiration will result in a quicker color change due to increased production of carbon dioxide. Thus, monitoring the color shift provides a visual representation of the cellular respiration rate.
No, cellular respiration is a fundamental biological process that occurs in all human cells regardless of gender. It is the process by which cells convert nutrients into energy. Gender does not influence the basic mechanisms of cellular respiration.
plants respire during the day as well the rate of respiration is lower than the rate of photosynthesis in the day
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.
To calculate the cellular respiration rate in moles of glucose per minute, you need to convert the volume of CO2 produced into moles using the ideal gas law. Then, you can use the stoichiometry of the cellular respiration reaction to relate the moles of CO2 produced to moles of glucose consumed. Once you have both values, you can determine the rate of glucose consumption per minute.
High metabolic rate need a lot of energy. So this is supplied by respiration
GPP (gross primary production) minus cellular respiration.
Bromothymol Blue is a pH indicator that changes color in response to acidity levels. During cellular respiration, carbon dioxide is produced, which reacts with water to form carbonic acid, lowering the pH of the solution. By measuring the color change in Bromothymol Blue, you can indirectly assess the rate of cellular respiration: a faster rate of respiration will result in a quicker color change due to increased production of carbon dioxide. Thus, monitoring the color shift provides a visual representation of the cellular respiration rate.
CPR maintains cellular respiration the same as in normal breathing and pulse rate. CPR is mechanically breathing and circulating the blood for the victim.
No, cellular respiration is a fundamental biological process that occurs in all human cells regardless of gender. It is the process by which cells convert nutrients into energy. Gender does not influence the basic mechanisms of cellular respiration.
Factors that affect the rate of cellular respiration include temperature, concentration of reactants (such as glucose and oxygen), availability of enzymes, and pH levels. These factors influence the activity of enzymes involved in the various stages of cellular respiration, ultimately impacting the overall rate of the process.
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plants respire during the day as well the rate of respiration is lower than the rate of photosynthesis in the day
ATP is used for cellular respiration. It is not a product of cellular respiration.
The thyroid gland releases hormones, such as thyroxine (T4) and triiodothyronine (T3), that increase the rate of cellular respiration throughout the body. These hormones help regulate metabolism and energy production at the cellular level.