Evaporation is the changing of liquid water to water vapor.Condensation is when air cools and water vapor turns into liquid.
Evaporation moves the water from the earth's surface up into the atmosphere. It helps to make the water form clouds from water vapour and condensation. It helps to convert the water vapours (its gas form) to water (its liquid form).
If the temperature is on the higher side, water from the rivers, oceans evaporate at a faster pace. The more the heat in the summer, the more the possibility of excessive rain during rainy season. In this way, temperature plays a crucial role in the water cycle.
the clouds take in the evaporated water and rain or snow which is called precipitation
The trees play a very important role. They soak up a lot of water and put it back in the air. This is called evapotransporation. Trees add a lot of water to the air and this can help produce rain.
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Evaporation and condensation are part of the water cycle. Evaporation is when water changes from a liquid to a gas, typically due to heat, while condensation is when water vapor changes back into liquid water, often forming clouds or droplets. These processes play a crucial role in redistributing water around the Earth.
The four steps of the water cycle are evaporation, condensation, precipitation, and collection. Evaporation occurs when water vapor rises into the atmosphere, condensation is the process of water vapor turning into clouds, precipitation is when water falls back to the earth as rain, snow, sleet, or hail, and collection refers to the gathering of water in rivers, lakes, and oceans.
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Evaporation moves the water from the earth's surface up into the atmosphere. It helps to make the water form clouds from water vapour and condensation. It helps to convert the water vapours (its gas form) to water (its liquid form).
Evaporation is the process by which a liquid turns into a gas, usually due to heating. Condensation is the opposite process, where a gas turns into a liquid, typically due to cooling. Both processes play important roles in the water cycle and in various other natural phenomena.
The water cycle involves weather as it drives processes such as evaporation, condensation, and precipitation that are influenced by atmospheric conditions like temperature and pressure. These weather-related factors play a critical role in transporting water and energy around the Earth.
Evaporation and Condensation are based upon the energy in the water molecules. If the water temperature (vapor) is above the surface temperature, it will evaporate. If the water temperature (vapor) is below the surface temperature it will condense. Evaporation and condensation are happening at the same time. We add the term "Net" at the beginning to show which is happening at a greater rate. The temperature at which there is net condensation is referred to as dew point.
Oceans play an important role. They are the source of evaporation.
Yes, the water cycle is a natural process that is driven by solar energy and influenced by weather patterns and climate conditions. Weather events like evaporation, precipitation, and condensation all play a role in the movement of water throughout the cycle. Climate factors, such as temperature and humidity, can also affect the intensity and distribution of precipitation within the water cycle.
The evaporation of water from the Earth's surface and the condensation of water vapor into clouds play a significant role in the water cycle and affect climate by influencing temperature and precipitation patterns. This process helps regulate the Earth's energy balance, which ultimately influences the climate system.
Condensation is when water vapor in the air transforms into liquid water, releasing heat and contributing to the formation of clouds and precipitation, affecting temperature and humidity. Evaporation is the process by which liquid water turns into water vapor, cooling the surrounding air and potentially leading to cloud formation and precipitation. Both processes play a crucial role in the water cycle and influence weather patterns by affecting temperature, humidity, and cloud formation.