It polluties it, beacuse the nutrients we won't have and when we fish the, water would be polluted and all of the fish would be dead...!
An aquatic environment's water CHEMISTRY refers to the amount of dissolved salts, nutrients, and oxygen in the water. If you are in Mr. Sarau's class...nice going. haha
Excessive plant debris
Pollution affects waterfalls because pollution goes through air and can actually fly into water and rivers, which causes water pollution that can somewhat spread. This kills algae and fish and it kills our clean source of water.
water can affect you in many ways, for instants... : Water can affect you if pollution is going horribly wrong somewhere. The pollution is a result of bad water and the result of bad water is bad water for the people of your certain city and especially you. : Water adjusts the body's temperature. : It also assists in digestion. : It removes toxins from the body and also makes necessary body fluids. : It provides a refreshing drink for a hot day. : It provides life in the world cause without water there would be no plants and trees, if there's no plants and trees then there's no oxygen, if there's no oxygen then there's no animals or human beings. Water is just part of the circle of life along with the animals and humans that drink it.
Air pollution causes some of moisture in the clouds to evaporate before it ever hits the ground. It has also been theorized that air pollution reduces ground level winds, which can decrease evaporation from lakes and rivers, which is needed for precipitation.
Dissolved oxygen in water decreases due to factors like temperature increase, pollution, and excessive plant growth, which can lead to oxygen depletion and harm aquatic life.
The oxygen dissolved in water is a measure of dissolved oxygen (DO).
The pollutants react with the oxygen dissolved This means there's no oxygen available for the fish. That kills more fish than the actual toxicity of the pollution in many cases.
Ask someone smart.
Dissolved oxygen in water is essential for aquatic organisms to survive and thrive. It is crucial for the respiration of fish and other marine animals. Factors such as temperature, water depth, and plant life can affect the levels of dissolved oxygen in water.
Yes, water temperature affects the amount of dissolved oxygen it can hold. Colder water can hold more oxygen than warmer water. This is important for aquatic organisms that rely on dissolved oxygen for respiration.
Temperature has a direct effect on the concentration of dissolved oxygen in water. As the temperature of the water increases, the solubility of oxygen decreases and the concentration of dissolved oxygen will decrease. Conversely, as the temperature of the water decreases, the solubility of oxygen increases and the concentration of dissolved oxygen will increase. Additionally, warmer water is generally less dense than colder water, resulting in less efficient oxygen transfer.
Factors such as temperature, pressure, salinity, and the presence of organisms can affect the amount of dissolved oxygen in water. For example, higher temperatures typically result in lower dissolved oxygen levels, while photosynthesis by aquatic plants can increase dissolved oxygen through oxygen production.
Tin cans themselves do not affect the amount of dissolved oxygen in water. However, if tin cans are oxidized or corroded, they may release metals into the water that could potentially impact oxygen levels and water quality. Proper disposal of tin cans is important to prevent any negative effects on water quality.
When water is polluted as a result of poisonous chemical which was dissolved in da water ,then lead to killing of their issuers
No, you can't dissolve oxygen in water, even if it's under the ocean. However, hydrogen and oxygen can be generated by passing an electric current through water and collecting the two gases as they bubble off.
Dissolved oxygen levels can decrease due to processes like respiration by aquatic organisms, decomposition of organic matter, and insufficient mixing of water. Pollution, high temperatures, and excessive plant growth can also lead to decreases in dissolved oxygen levels in water bodies.