It helps the body remove heat through sweating, and it also allows it to use water as an energy source.
it helps the body remove the heat through sweating
It helps the body remove heat through sweating, and it also allows it to use water as an energy source.
Water's heat-holding capacity, or specific heat, significantly affects humans by influencing climate and weather patterns. Areas near large bodies of water experience milder temperatures due to water's ability to absorb and retain heat, which impacts agriculture, energy consumption, and overall lifestyle. Additionally, this property plays a crucial role in regulating body temperature and maintaining hydration, as water helps keep our bodies cool during hot weather. Changes in water temperature can also affect ecosystems, with potential repercussions for food supply and health.
The soils and waters are polluted, the deforestation is accelerated, garbage are everywhere, some plants and animals have disappeared.
It helps the body remove heat through sweating, and it also allows it to use water as an energy source.
It helps the body remove heat through sweating, and it also allows it to use water as an energy source.
they polute the waters of the ocen
The Great White is in all waters on the planet, it has been found nearly everywhere.
The actual cause of a flood is the arrival of excessive rainfall in the river headwaters. This may be exacerbated by landslides, which impound the waters further and give way catastrophically. Often in the headwaters, the rain-holding capacity has been damaged by excessive tree felling and removal of vegetation.
it dissovles
yes because we cut down tree, pollute waters and air, kill plants, building bridges mining cutting or digging into natural resources. Also throwing reuseable items away
Changing the water's mass will affect how much the water's temperature increases when a cylinder is dropped due to the principle of heat capacity. A larger mass of water has a greater capacity to absorb heat, meaning that the temperature increase will be smaller for a given amount of heat transferred from the cylinder. Conversely, a smaller mass of water will experience a greater temperature increase because it has less mass to absorb the same amount of heat. Therefore, the relationship between water mass and temperature change is inversely proportional.