absorption
The greatest amount of heat transfer usually occurs in the container with the highest temperature difference between the system and its surroundings. This is because heat transfer rate is directly proportional to the temperature difference.
The greatest amount of energy in a community is typically found within the primary producers, such as plants, that convert sunlight into chemical energy through photosynthesis. This energy is then transferred through the food chain to higher trophic levels.
The greatest amount of energy in a community is in the sun, which serves as the ultimate source of energy for most living organisms through the process of photosynthesis.
The heat dissipation equation used to calculate the amount of heat transferred from a system to its surroundings is Q hAT, where Q represents the amount of heat transferred, h is the heat transfer coefficient, A is the surface area through which heat is transferred, and T is the temperature difference between the system and its surroundings.
The heat dissipation formula used to calculate the amount of heat transferred from a system to its surroundings is Q hAT, where Q represents the amount of heat transferred, h is the heat transfer coefficient, A is the surface area through which heat is transferred, and T is the temperature difference between the system and its surroundings.
The greatest amount of heat transfer usually occurs in the container with the highest temperature difference between the system and its surroundings. This is because heat transfer rate is directly proportional to the temperature difference.
nakakasura eh
The greatest amount of energy in a community is typically found within the primary producers, such as plants, that convert sunlight into chemical energy through photosynthesis. This energy is then transferred through the food chain to higher trophic levels.
The greatest amount of energy in a community is in the sun, which serves as the ultimate source of energy for most living organisms through the process of photosynthesis.
The heat dissipation equation used to calculate the amount of heat transferred from a system to its surroundings is Q hAT, where Q represents the amount of heat transferred, h is the heat transfer coefficient, A is the surface area through which heat is transferred, and T is the temperature difference between the system and its surroundings.
The heat dissipation formula used to calculate the amount of heat transferred from a system to its surroundings is Q hAT, where Q represents the amount of heat transferred, h is the heat transfer coefficient, A is the surface area through which heat is transferred, and T is the temperature difference between the system and its surroundings.
The potential between two charged spheres is the amount of electrical energy per unit charge that can be stored or transferred between them. It is determined by the distance between the spheres and the amount of charge they possess.
A gaseous phase!
Gas....durh!!
Heat quantity refers to the amount of thermal energy transferred between two objects due to a difference in temperature. It is usually measured in units of joules or calories. Heat quantity is commonly used to describe the amount of heat exchanged during a physical or chemical process.
When organisms use cellular respiration to process energy, only a small amount of energy is transferred to the next trophic level.
"Megabytes in" is the amount of data transferred from the internet to the computer; "megabytes out" is the opposite.