Convection is a process by which heat is transported vertically in the atmosphere, leading to the development of rain clouds and thunderstorms. In the context of climate, convection plays a key role in redistributing heat around the globe, influencing regional and global weather patterns. This transfer of heat helps regulate the Earth's temperature and is an important factor in shaping the planet's climate.
Air convection currents are created by a combination of the sun heating the air closer to the equator making it rise and cooling it in the arctic regions making air descend. That combined with the rotation of the Earth causing a Coriolis Effect making the winds that travel west to east.
The Hadley cell is the convection cell in the atmosphere that borders on the intertropical convergence zone (ITCZ). This cell is responsible for the trade winds and plays a key role in shaping tropical weather patterns and climate.
Convection
The heat source for the convection currents in the mantle is primarily the heat leftover from Earth's formation and the heat produced by radioactive decay of elements within the mantle. The heat from the Sun does not directly drive mantle convection, although it does play a role in surface processes like weather and climate.
The main source of energy that drives weather and climate is the sun. Solar radiation heats the Earth's surface, creating temperature differences that lead to the development of weather patterns and climate systems. This energy drives processes such as evaporation, convection, and atmospheric circulation, influencing global weather patterns and climate dynamics.
no convection is heat contacted with liquid
Convection
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It is related by the grams that are measured by density
Waves is the part of convection current. This is the mantle and is related to plate motions.
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I was unable to answer this question. :(
lithosphereic plates are the cooler plates. they help everyone with their convection.
Convection plays a crucial role in regulating the Earth's climate by facilitating the transfer of heat and moisture in the atmosphere and oceans. Warm air rises, creating areas of low pressure, which can lead to cloud formation and precipitation, influencing weather patterns. In oceans, convection currents distribute heat from the equator toward the poles, affecting regional climates and oceanic ecosystems. Overall, convection drives atmospheric circulation, impacting temperature, precipitation, and climate variability globally.
A version of convection currents, occurring in the mantle, is thought to be the force behind plate tectonics.