Counter clockwise looking from the top. The same direction a tropical depression or low pressure area spins.
In the northern hemisphere, gyres flow in a clockwise direction. This is due to the Coriolis effect, a result of the Earth's rotation causing moving air or water to be deflected to the right in the northern hemisphere.
In the northern hemisphere, currents are influenced by the Coriolis effect, which causes moving air or water to be deflected to the right. This is due to the rotation of the Earth, which causes an apparent force to the right of the direction of motion in the northern hemisphere. As a result, currents tend to flow in a clockwise direction in the northern hemisphere.
The Southern Hemisphere has more area of water then the Northern Hemisphere.
In the northern hemisphere, the Coriolis effect causes the rotation of the Earth to deflect moving objects to the right. This effect influences the movement of sea water, creating a clockwise movement known as a gyre. This is why sea water tends to circulate in a clockwise direction in the northern hemisphere.
The Southern Hemisphere contains the most water
The northern hemisphere has more water than the southern
The southern hemisphere has more water! :)The southern hemisphere has water on 81% of its surface and the northern hemisphere has water on only 61% of its surface.The southern hemisphere has more water than the northern hemisphere because the northern hemisphere has the continent of Asia in it which takes up a lot of space.
The Northern hemisphere is about 60.7% water and 39.3% land. The Southern hemisphere is about 80.9% water and 19.1% land.
No, the water in a toilet does not spin one way in the northern hemisphere and spin the opposite direction in the southern hemisphere. The spin of the water in a toilet is determined by the shape of the toilet bowl and the flush system, not by the direction of the Earth's rotation. In a toilet, the water is flushed by a flushing mechanism. This flushing mechanism is usually activated by pushing a lever or pushing a button, and it causes water to be released from the tank into the bowl. The shape of the toilet bowl, as well as the type of flushing mechanism, determines how the water will move once it enters the bowl. When the toilet is flushed, the water quickly fills the bowl and then begins to swirl around. The force of the swirling water will cause it to push against the sides of the bowl and create a whirlpool effect. As the water circles around the bowl, the shape of the bowl determines the direction in which the water will spin. The water will usually spin in a clockwise direction in the northern hemisphere and in a counterclockwise direction in the southern hemisphere. The spin of the water in a toilet is determined by the shape of the toilet bowl and the type of flushing mechanism, not by the direction of the Earth's rotation. The shape of the bowl and the type of flush system will determine the direction in which the water will spin, regardless of which hemisphere the toilet is located in.
In the Northern Hemisphere, ocean currents spin in a clockwise direction due to the Coriolis effect, a force created by the Earth's rotation. This causes water to deflect to the right, leading to the clockwise movement of currents in the Northern Hemisphere.
Water solar panels are heated by the sun. To gain the maximum effect and efficiency the panel must be oriented toward the incident sunshine. In the southern hemisphere this is in a northerly direction; in the northern hemisphere this is in a southerly direction.
the southern hemisphere has more water