Convectional currents look like a cycle. For example, if you have a radiator in a room, it will heat the air around it. That hot air will rise up and then cold air will replace it. This goes round and round in a cycle. This cycle of warm air rising and cool air falling is called convectional current. This current happens in only liquid and gas.
Circulating currents in a fluid are commonly referred to as convection currents. These currents arise due to the movement of the fluid caused by temperature differences, which lead to the transfer of heat within the fluid. Convection currents play a significant role in processes like ocean currents and the movement of air in the atmosphere.
convection currents discovery date
Convection currents in the mantle drag the plates like a conveyor belt.
Convection currents can vary in thickness, typically ranging from a few centimeters to kilometers depending on the scale of the system in which they occur. In the Earth's mantle, for example, convection currents can be tens to hundreds of kilometers thick.
Convection currents involve the movement of fluids (like air or water) due to differences in temperature and density. In the Earth's mantle, convection currents drive the movement of tectonic plates by causing magma to rise and fall in the mantle. In the atmosphere, convection currents play a role in the formation of weather patterns as warm air rises and cold air sinks.
The earth would look like it did when it formed
They both are the same because they are currents that move like waves
like air
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Convection currents move in the Mantle.
convection currents discovery date
Circulating currents in a fluid are commonly referred to as convection currents. These currents arise due to the movement of the fluid caused by temperature differences, which lead to the transfer of heat within the fluid. Convection currents play a significant role in processes like ocean currents and the movement of air in the atmosphere.
Convection currents in the mantle drag the plates like a conveyor belt.
they both have convection currents
Earth's outer core, composed of molten iron and nickel, experiences convection currents due to heat from the inner core. These currents generate the Earth's magnetic field, acting like a giant magnet with a north and south pole. The movement of these convection currents creates the magnetic field that surrounds and protects the planet.