heat, waste i think lol, good luck haa , dat comma sin
The top 10 feet of the ocean stores the same amount of energy as the entire atmosphere. This is because water has a high heat capacity, meaning it can absorb and store large amounts of heat energy compared to air.
The coaster have a large amount of potential energy when it gain height, kinetic energy when it gain speed instead.
If water absorbs a large amount of energy it boils.
The process of evaporation from bodies of water like oceans and lakes transports the most energy from the ground to the atmosphere. This is because it requires a large amount of energy to change liquid water to water vapor.
The top 10 feet of the ocean contains a large amount of thermal energy due to its high heat capacity. This thermal energy is comparable to the total amount of thermal energy present in the entire atmosphere, highlighting the significance of the oceans in regulating Earth's climate system.
When it erupts, it releases a large amount of carbon dioxide into the atmosphere, polluting it.
Top carnivores like lion, leopard, tiger etc are mostly at the top of the food chain(teritiary consumers) & hence they get the minimum amount of energies from the lower tropic levels (10% law). Such amount of energy can't support large number of individuals, the more you are on the right side of food chain, the less amount of energy you get.
Molten lava from a volcano has a large amount of thermal energy due to its high temperature.
The greatest concentration of nitrogen on the Earth is found in its atmosphere. The atmosphere is approximately 78 percent nitrogen.
amplitude
The large amount of energy released by a nuclear reaction comes from the conversion of mass into energy, as described by Einstein's famous equation E=mc^2. This means that a small amount of mass is converted into a large amount of energy during nuclear reactions.
There is a limit to the number of energy transfers in a food chain because with each transfer, some energy is lost as heat due to inefficiencies in metabolism and other biological processes. As energy is lost at each trophic level, there is not enough energy available to sustain a large number of links in a food chain. This is known as the 10% rule, where only about 10% of the energy is transferred to the next trophic level.