The answer is from earth.rice.edu/MTPE/hydro/hydrosphere/topics/Ocean_Atm_Circ_ElNino.html
Ocean temperatures and winds are coupled into a complex interactive system. Varying ocean temperatures affect local atmospheric pressure, which creates regional wind patterns that, in turn, drive oceanic currents that affect surface ocean temperatures. This movie illuminates how these processes interact to produce our climate system. In a way, the oceans absorb the suns solar rays, then the currents shift the heat around the globe warming the land during winter & cooling them during the summer.
Climate is influenced by latitude, altitude, and ocean currents. Latitude affects the amount of sunlight received, altitude affects temperature and precipitation patterns, and ocean currents transport heat to different regions, impacting temperatures and precipitation as well.
The six major influences on climate are latitude, altitude, proximity to large bodies of water, ocean currents, prevailing winds, and topography of the land. These factors affect temperature, precipitation, and weather patterns in a region.
Ocean currents do not directly affect Las Vegas, as it is located inland and far from any major bodies of water. However, changes in ocean currents can influence weather patterns that may indirectly impact weather conditions in Las Vegas.
the ocean becomes saltier (evaporation) or less salty (precipitation/runoff)
The five factors that affect climate are latitude, altitude, distance from the ocean, ocean currents, and prevailing winds. These factors influence temperature, precipitation, and weather patterns in a region. For example, areas at higher latitudes tend to be colder, while regions closer to the equator are warmer. Altitude can also affect temperature, with higher elevations generally being cooler.
Continental drift affect temperature and precipitation patterns around the planet by changing ocean currents
colder ocean currents prevent clouds from forming, and there is less precipitation. warmer currents bring in humidity and more rain. an example would be Florida and Cali.
Ocean currents can influence evaporation rates by bringing warmer or cooler water to a region, affecting the temperature and moisture content of the air above it. Warm ocean currents can increase evaporation rates, leading to more moisture in the atmosphere and potentially higher precipitation levels, while cold currents can have the opposite effect. This can contribute to differences in precipitation patterns across regions.
Yes ocean currents do affect japan.
Ocean currents and global wind patterns strongly affect a region's climate because they help distribute heat energy around the Earth. Warm ocean currents can increase temperatures in coastal areas, while cold ocean currents can decrease temperatures. Similarly, wind patterns can bring moisture or dry air to a region, affecting its precipitation patterns.
deep ocean currents.
It is easier and faster for ships to sail with the ocean currents.
new york doesnt have ocean currents
Ocean currents play a significant role in regulating global climate and precipitation patterns. Warm currents, such as the Gulf Stream, can increase evaporation rates, leading to higher humidity and precipitation in nearby coastal regions. Conversely, cold currents can suppress evaporation and moisture availability, resulting in drier conditions and reduced rainfall. Overall, the interaction between ocean currents and atmospheric conditions helps determine regional weather patterns and precipitation levels.
Ocean currents can transfer heat from one location to another, affecting the temperature of the landmass they flow by. Warm currents can raise temperatures, while cold currents can lower temperatures. Additionally, ocean currents can also influence precipitation patterns by impacting humidity levels along the coastlines of land masses.
Ocean currents,The sun,and human activities
my pool =)