Answer:
when the Earth revolves it brings about night and day
True. The currents, turning are they warm or cold, are a very big factor in defining the temperatures of the seaside regions where they have big influence. If the currents are warmer, it also suggests that they are wet as well, so they are creating the temperatures on the coastlines much more durable, higher, and there's much smaller divergence between the day and night temperatures.
<h3>Why are currents warm or cold?</h3>
- Differences in moisture density, resulting from the variability of water temperature (thermo) and saltiness (haline), also cause ocean currents. This method is known as thermohaline circulation.
- ln cold regions, such as the North Atlantic Ocean, ocean water fails heat to the ambiance and becomes cold and dense.
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The difference in elevation in meters between the points X and Y is 360.
Explanation:
On the presented map we can see that the relief is depicted with contour lines. The contour lines are marked with their elevations, or rather the main contour lines are, every fifth one. We also have the contour interval, which is 20 meters, thus giving us the basis so that we can find the difference in elevation between any points on the map.
What we know for sure from the map is:
- the elevation is increasing from southeast toward northwest
- the difference in elevation between the contour lines is 20 m
- the difference in elevation between the main contour lines is 100 m
Point X is marked on the contour line of 1,600 m. Point Y is marked on the second contour line between the 1,200 m and 1,300 m contour lines, thus:
2 x 20 = 40
So we have 1,240 m. Having the elevations of the two points, we only need to take the lower value from the larger value:
1,600 - 1,240 = 360 m
So we get a result of 360 m of difference in elevation between the points X and Y.
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Divergent boundaries move away from each other; transform boundaries slide next each other and cause earthquakes