Warm currents bring warm temperatures to the poles, and cold currents bring cold temperatures to the equator to become warm again. Once warm, they return to the poles again. This process repeats in some currents forever. Most currents are circular.
Areas where warm and cold currents meet tend to have regular foggy conditions, as the overlying warm and cold air come in contact with each other.they also tend to have high biological productivity, because plankton growth is encourage by the mixing of warm and cold currents.Some of the world's most productive fishing grounds are located where warm and cold currents converge.For example, where Labrador current (cold) and Gulf stream (warm) meet, a dense fog is there and it is one of the richest fishing grounds of the world.
A weather front occurs when two currents of air with different densities converge. The rising of the less dense warm air above the denser cold air causes a mass of clouds to form. On the weather reports, they often show a cold front as a blue line and a warm front as a red line.
Surface currents in the ocean carry warm water away from the equator towards the poles. This movement helps to distribute heat globally, influencing climate and weather patterns. As warm water moves away, it is often replaced by cooler water rising from the depths, contributing to the overall circulation of ocean currents.
Rising currents of warm air transfer energy from the Earth to the atmosphere primarily through a process called convection. As the surface of the Earth heats the air above it, the warm air becomes less dense and rises. This upward movement of warm air carries thermal energy into the atmosphere, where it can influence weather patterns and contribute to the overall heat distribution in the environment.
The warm air currents over motorways are primarily due to the heat generated by vehicles as they drive on the road. This heat warms up the air directly above the road, creating a phenomenon known as a heat island effect. Additionally, the dark asphalt of the road absorbs more sunlight, further contributing to the warming of the air currents over motorways.
True. Surface currents can warm or cool the air above them, depending on the temperature of the current and the direction of the wind. Warm currents will typically warm the air above them, while cold currents will cool the air.
Cold currents remove thermal energy from the air above and warm currents warm the air above Apex
Warm currents bring warm temperatures to the poles, and cold currents bring cold temperatures to the equator to become warm again. Once warm, they return to the poles again. This process repeats in some currents forever. Most currents are circular.
Warm currents have a very obvious affect on the temperature that surrounds it. Warm currents will warm the area around the currents.
Warm currents have a very obvious affect on the temperature that surrounds it. Warm currents will warm the area around the currents.
there are some warm currents as they flow along the earths surface while there some cold currents as they travel below the earths surface
As the equator is warm, the currents that originate from there are also warm.
Warm currents move from the equator to the poles, and the cold currents move from the poles to the equator. :D
currents that flow away
It's warm because of the other currents pushing the warm currents up north.
Warm currents are warm whereas cold currents are cold. Warm currents flow from the equatorial regions towards the polar regions whereas cold currents flow from the polar regions to the equatorial regions. By- Avyukt Sharma