During the day, air above land becomes warmer than air above water.This is a sea breeze.At night, cooler air on land cause a higher-pressure zone over the land.This is a land breeze.
Local winds are driven by temperature differences in areas fairly close to each other. If water and land absorbed and released heat at the same rate, there wouldn't be any temperature differences and nothing to power local winds. See the related link for further information.
If water and land absorbed and released heat at the same rate, there would be less temperature contrast between the two surfaces. This would result in weaker local wind patterns since wind is primarily driven by temperature differences. The intensity of sea breezes and land breezes, for example, would be reduced.
The heat energy released or absorbed during a change of state of water is called latent heat. This energy is used to break or form intermolecular bonds without changing the temperature of the substance.
Water that is absorbed through the soil surface is called seepage. This is water that soaks into the ground, usually in a low spot of the area.
Roughly 70% of the sun's energy is absorbed by the Earth's surface, with about 51% absorbed by the land and 19% absorbed by the oceans. The absorbed energy is crucial for driving various Earth processes such as weather patterns and the water cycle.
Local winds are driven by temperature differences in areas fairly close to each other. If water and land absorbed and released heat at the same rate, there wouldn't be any temperature differences and nothing to power local winds. See the related link for further information.
Local winds are driven by temperature differences in areas fairly close to each other. If water and land absorbed and released heat at the same rate, there wouldn't be any temperature differences and nothing to power local winds. See the related link for further information.
Local winds are driven by temperature differences in areas fairly close to each other. If water and land absorbed and released heat at the same rate, there wouldn't be any temperature differences and nothing to power local winds. See the related link for further information.
Local winds are driven by temperature differences in areas fairly close to each other. If water and land absorbed and released heat at the same rate, there wouldn't be any temperature differences and nothing to power local winds. See the related link for further information.
Energy is absorbed when water is vaporized. This is because the process of vaporization requires breaking the hydrogen bonds between water molecules, which requires energy input to overcome the intermolecular forces holding the liquid water together.
If water and land absorbed and released heat at the same rate, there would be less temperature contrast between the two surfaces. This would result in weaker local wind patterns since wind is primarily driven by temperature differences. The intensity of sea breezes and land breezes, for example, would be reduced.
Radon is released from rocks and then absorbed/dissolved in waters.
idont know
When water freezes, thermal energy is released from the water as it changes from a liquid to a solid. This released energy is responsible for lowering the temperature of the water to its freezing point and then further to form ice.
Water is absorbed in the large intestine.
Water cannot be absorbed into a cup.
The enthalpy of dissolution of NaCl in water is the amount of heat energy released or absorbed when NaCl dissolves in water.