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The global patterns of atmospheric and oceanic circulation help determine the distribution of ecosystems throughout earth?

False.


What has the author Abraham H Oort written?

Abraham H. Oort has written: 'Global atmospheric circulation statistics, 1958-1973' -- subject(s): Atmospheric circulation, Charts, diagrams 'Computations of the eddy heat and density transports across the Gulf Stream' -- subject(s): Transmission, Ocean temperature, Heat 'The interannual variability of atmospheric circulation statistics' -- subject(s): Atmospheric circulation, Charts, diagrams, Rawinsonde observations, Upper Atmosphere


What is another name for atmospheric circulation patterns?

Another name for atmospheric circulation patterns is global wind patterns. These patterns are driven by the uneven heating of Earth's surface and play a critical role in redistributing heat and moisture around the globe.


The overall global circulation of air is caused by?

The overall global circulation of air is mainly caused by the unequal heating of the Earth's surface by the sun. Warm air rises at the equator and cool air sinks at the poles, creating large-scale patterns of atmospheric circulation. The Coriolis effect and Earth's rotation also play a role in shaping wind patterns on a global scale.


What is the name of the model used to describe air circulation?

The model commonly used to describe air circulation is the Hadley cell model. This model explains the global pattern of atmospheric circulation, including the movement of warm air towards the poles and cool air towards the equator.


What is the circulation of tropical air?

The circulation of tropical air is driven by the Hadley cell, a large-scale atmospheric circulation pattern that transports warm air from the tropics towards the poles and cold air from the poles towards the tropics. This circulation plays a key role in shaping global weather patterns and climate.


What is the primary role of global circulation cells?

Global circulation cells regulate atmospheric circulation and distribute heat around the Earth, influencing climate patterns. They play a crucial role in redistributing heat from the equator to the poles through the movement of air masses. These cells also affect weather patterns, ocean currents, and the transport of pollutants in the atmosphere.


The main power source for global weather is?

The main power source for global weather is the sun. The uneven heating of the Earth's surface by the sun drives atmospheric circulation, which in turn creates different weather patterns around the world.


What has the author Ngar-Cheung Lau written?

Ngar-Cheung Lau has written: 'Circulation statistics based on FGGE III-B analyses produced by GFDL' -- subject(s): Atmospheric circulation, First GARP Global Experiment, Statistics, Weather analysis


What is atmosperic circulation?

Atmospheric circulation refers to the movement of air around the Earth in a continuous pattern. This circulation is driven by the differential heating of the Earth's surface by the sun, which creates areas of high and low pressure. The rotation of the Earth also influences the direction of these air movements, resulting in the creation of global wind patterns.


What happens to the air circulation during el nino event?

During an El Niño event, the normal atmospheric circulation patterns weaken. The warm waters in the central and eastern Pacific disrupt the typical pattern of atmospheric pressure, affecting the position of the jet stream and altering global weather patterns. This can lead to increased rainfall in some regions and droughts in others.


Atmospheric circulation patterns keep the temperature of an area constant?

Atmospheric circulation patterns help regulate temperature by redistributing heat around the Earth. For example, warm air rises at the equator and moves towards the poles, while cool air sinks at the poles and moves towards the equator, creating a balanced temperature distribution. This global circulation system helps to maintain relatively stable temperatures in different regions.