The greatest amount of energy stored in an ecosystem is found in producers, such as plants, which convert sunlight into chemical energy through photosynthesis. This energy is then transferred through the food chain to herbivores and to carnivores, with energy decreasing at each trophic level due to metabolic losses.
The electric field in a capacitor is directly proportional to the amount of stored energy in the system. This means that as the electric field increases, the amount of stored energy in the capacitor also increases.
One molecule of glucose stores 90 times the amount of chemical energy than one molecule of ATP.
The energy stored in the nucleus is nuclear energy, which is released during nuclear reactions such as fission or fusion. This energy is much more potent than chemical energy due to the large amount of energy stored in the nucleus of an atom.
The stored energy of a battery is typically measured in watt-hours (Wh) or joules (J). It represents the amount of energy that can be released by the battery when it is discharged. The stored energy is determined by the battery's capacity and voltage.
Elastic energy is the potential energy stored when an object is deformed, such as when a spring is compressed or stretched. It is a form of mechanical energy that can be converted into kinetic energy when the object returns to its original shape. The amount of elastic energy stored depends on the elastic properties of the material and the amount of deformation.
ATP (adenosine triphosphate) has the greatest amount of stored energy in its bonds among common biological molecules. It serves as the primary energy currency in cells, transferring energy for various cellular processes.
Adenosine triphosphate (ATP) is the molecule with the greatest amount of stored energy in its bonds. When ATP is broken down, energy is released for cellular processes.
O=C=O
Uranium has the greatest amount of stored energy in its bonds due to its high atomic number and ability to undergo nuclear fission reactions, releasing large amounts of energy in the process.
O=c=o
Which molecule most likely has the greatest amount of stored energy in its bonds? A. H-O-H B. Fe-O C. O=C=O D. Na-CI Answer is : ( O=C=O )
The greatest amount of energy in an energy pyramid is stored at the base, where primary producers, such as plants and phytoplankton, are located. These organisms capture solar energy through photosynthesis, converting it into chemical energy. As energy moves up the pyramid to herbivores and then to carnivores, a significant amount is lost at each trophic level primarily due to metabolic processes and heat, resulting in less energy being available to higher levels. Consequently, the energy decreases as one moves up the pyramid.
the amount of energy is double in lipids as compared to carbohydrtes
No, the energy stored in feces is not entirely lost to the ecosystem. Microorganisms in the soil break down feces, releasing nutrients back into the environment for use by plants and other organisms. This process helps in nutrient cycling and maintaining ecosystem health.
The electric field in a capacitor is directly proportional to the amount of stored energy in the system. This means that as the electric field increases, the amount of stored energy in the capacitor also increases.
Potential energy is the amount of energy stored in an object due to its height. This is maximum for an object which has maximum height and vice versa. So the most potential energy would be for object with greatest height.
Kilo joules are used to measure the amount of energy stored in food.