The relationship between temperature and respiration rate is typically positive, meaning that as temperature increases, the respiration rate also tends to increase. This is largely due to the fact that higher temperatures can enhance metabolic processes, leading to faster cellular respiration. However, extreme temperatures can have detrimental effects, potentially slowing down respiration if they exceed optimal levels for an organism. Overall, within a certain range, warmer temperatures generally promote higher respiration rates.
reaction rate doubles with every 10 K temperature change
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.
A higher temperature generally increases the rate at which antacid tablets react with water. This is because higher temperatures cause molecules to move faster, increasing the frequency of collisions between the reactants and leading to a faster reaction rate.
The relationship in Charles's law is a direct relationship between the volume and temperature of a gas at constant pressure. As temperature increases, the volume of the gas also increases, and vice versa. This relationship is shown as a straight line when graphed.
It is a heating curve. It shows the temperature changes over time as a substance is heated continuously at a constant rate, highlighting phase changes and plateaus in temperature where energy is absorbed to overcome intermolecular forces.
the rate of fermentation increases with temperature, then it rapidly decreases!
There is a direct proportional relationship between temperature and rate of gas production in yeast. The higher the temperature the more gas will be produced.
higher temperature lower flow rate.
reaction rate doubles with every 10 K temperature change
The relationship between water evaporation rate and temperature is that as temperature increases, the rate of evaporation also increases. This is because higher temperatures provide more energy to water molecules, causing them to move faster and escape into the air more quickly.
The relationship between temperature and the rate law of a chemical reaction is that an increase in temperature generally leads to an increase in the rate of the reaction. This is because higher temperatures provide more energy for the reacting molecules to overcome the activation energy barrier, resulting in a faster reaction rate.
In Newton's law of cooling, the relationship between temperature change and time is exponential. As time increases, the temperature change decreases at a decreasing rate. This means that the rate at which the temperature changes slows down over time.
The respiration rate is your breathing rate and your pulse rate is your heart beat.
The respiratory system is one way of heat exchange in the human body and a higher external temperature makes this less efficient. As heat goes up, the rate of respiration increases as well, putting a higher strain on the lungs.
You probably mean "respiration" instead of "breathing". Chick peas don't breath. Increasing the temperature increases the respiration rate and decreasing temperatures decrease the respiration rate.
The curve showing the relationship between temperature and time for a given amount of liquid heated at a constant rate is called a "heating curve." This curve is mapped out on a graph.
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.