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Sunset

space Maturity 7-9

The sun goes down at night.

Full cycle of a Sunset on the high plains of the Mojave Desert.jpg
Full cycle of a Sunset on the high plains of the Mojave Desert.jpg
It moves below the ground. The sky turns red and orange. This happens every day. It is very pretty to see.
Fiery sunset clouds over city silhouette.jpg
Fiery sunset clouds over city silhouette.jpg
Do you like to watch the sun go down?

55 words

The Sun goes down every day.

Full cycle of a Sunset on the high plains of the Mojave Desert.jpg
Full cycle of a Sunset on the high plains of the Mojave Desert.jpg
This happens because our Earth turns. The Sun moves below the horizon.
Fiery sunset clouds over city silhouette.jpg
Fiery sunset clouds over city silhouette.jpg
The sky turns red and orange. This is because the air scatters light. Blue light leaves the beam. This leaves the warm colors behind. Some places see no sunset at all.
Majestic twilight in the Mojave desert, Landers, California.jpg
Majestic twilight in the Mojave desert, Landers, California.jpg
The Sun stays up for a long time there. It is a beautiful sight to see.

92 words

A sunset happens when the Sun disappears below the horizon. This occurs because the Earth rotates, or spins, on its axis.

Full cycle of a Sunset on the high plains of the Mojave Desert.jpg
Full cycle of a Sunset on the high plains of the Mojave Desert.jpg
This happens about once every 24 hours for most people. However, near the North and South Poles, the Sun may not set at all for a whole day.
Majestic twilight in the Mojave desert, Landers, California.jpg
Majestic twilight in the Mojave desert, Landers, California.jpg

Sunsets look beautiful because of how light moves through the air. This is called Rayleigh scattering. When sunlight travels through the atmosphere, air molecules scatter the light. Blue and green colors scatter away easily. This leaves the long orange and red colors for us to see.

Fiery sunset clouds over city silhouette.jpg
Fiery sunset clouds over city silhouette.jpg
Sometimes, clouds catch these red colors and glow brightly.

After the Sun sets, the sky enters a time called twilight. Twilight has three stages. First is civil twilight. Then comes nautical twilight. The last stage is astronomical twilight.

Twilight subcategories.svg
Twilight subcategories.svg
Once the Sun is very deep below the horizon, it becomes night. The time of sunset changes throughout the year. This is due to the tilt of the Earth and its orbit around the Sun.

197 words

A sunset is the moment the Sun disappears below the horizon. This happens because the Earth rotates on its axis.

Full cycle of a Sunset on the high plains of the Mojave Desert.jpg
Full cycle of a Sunset on the high plains of the Mojave Desert.jpg
Most people see a sunset about once every 24 hours. However, things change if you live near the poles. In the Arctic or Antarctic Circles, you may see a polar day. This is when the Sun does not set for a full day.
Majestic twilight in the Mojave desert, Landers, California.jpg
Majestic twilight in the Mojave desert, Landers, California.jpg
At the very poles, the Sun might not rise or set on certain dates.

Sunsets create beautiful colors through a way it works called Rayleigh scattering. Sunlight is made of many colors. As light travels through our atmosphere, air molecules scatter the colors. Blue and green light scatter very easily. At sunset, the light must travel a much longer path through the air. This removes almost all the blue and green light.

Fiery sunset clouds over city silhouette.jpg
Fiery sunset clouds over city silhouette.jpg
Only the long orange and red colors are left for us to see. Sometimes, large cloud droplets cause Mie scattering. This can make clouds look bright or create a white halo.

After the Sun dips below the horizon, the sky enters twilight. Twilight is not just one single moment. It has three distinct stages. First is civil twilight, which starts when the Sun disappears. Next is nautical twilight, when the Sun is 6 to 12 degrees below the horizon.

Twilight subcategories.svg
Twilight subcategories.svg
The final stage is astronomical twilight, occurring between 12 and 18 degrees below the horizon. Once the Sun reaches 18 degrees below, it is officially night. Dusk is the very end of the astronomical twilight stage.

The timing of a sunset changes throughout the year. This happens because of the Earth's tilt and its elliptical orbit. In the Northern Hemisphere, the latest sunset occurs in late June or early July. It does not happen exactly on the summer solstice of June 21. This is because of how the Earth moves near its aphelion. The earliest sunsets in the North happen in late November or early December.

Sunset tokyoarea-timelapse-2019-03-17.webm
Sunset tokyoarea-timelapse-2019-03-17.webm
These dates depend on your specific latitude. In the Southern Hemisphere, these seasonal patterns are reversed.

Sunsets can also look different depending on what is in the air. Volcanic eruptions can change the colors we see. When ash stays in the lower atmosphere, it can mute the colors. But if particles reach the stratosphere, they can create beautiful afterglows.

Cape may.jpg
Cape may.jpg
Huge eruptions like Mount Pinatubo in 1991 caused remarkable colors. The high clouds reflect reddened sunlight back down to us. Even the shape of the Sun changes near the horizon. Atmospheric refraction makes the Sun look wider than it is high. This is an optical illusion that makes the Sun look larger.
Tappan Zee Bridge at Sunset.jpg
Tappan Zee Bridge at Sunset.jpg

469 words

A sunset is the moment the Sun disappears below the horizon of an astronomical object. On Earth, this happens because our planet rotates on its axis. This rotation causes the Sun to appear to move along a path until it sinks out of view.

Full cycle of a Sunset on the high plains of the Mojave Desert.jpg
Full cycle of a Sunset on the high plains of the Mojave Desert.jpg
For most people, this phenomenon occurs approximately once every 24 hours. However, the experience changes significantly near the Earth's poles. In areas within the Arctic or Antarctic Circles, people can experience a polar day. This is a period where the Sun does not set for 24 hours. At latitudes within half a degree of the poles, the Sun may not rise or set on certain days. This happens because its angular elevation remains less than one degree between solar noon and midnight.

Astronomers define the exact moment of sunset as when the upper limb of the Sun disappears below the horizon. Interestingly, what we see is not always the true geometric position of the Sun. This is due to atmospheric refraction, which is the bending of light as it passes through the atmosphere. This refraction causes sunlight rays to distort as they approach the horizon. Because of this, the solar disk is actually about one diameter below the horizon when we observe the sunset. Refraction also changes the apparent shape of the Sun. It bends light from the bottom edge of the Sun more than light from the top. This makes the Sun appear wider than it is high, even though it is actually nearly spherical.

Once the Sun disappears, the sky enters a period called twilight. Twilight is not a single event but is divided into three distinct stages. The first stage is civil twilight, which begins immediately after the Sun disappears. It continues until the Sun reaches 6 degrees below the horizon. The second stage is nautical twilight, occurring when the Sun is between 6 and 12 degrees below the horizon.

Twilight subcategories.svg
Twilight subcategories.svg
The final stage is astronomical twilight, which lasts while the Sun is between 12 and 18 degrees below the horizon. Dusk marks the very end of astronomical twilight. This is the darkest moment of twilight just before the onset of true night. Night begins once the Sun reaches 18 degrees below the horizon and no longer illuminates the sky.

The timing and direction of a sunset vary based on your latitude, longitude, altitude, and time zone. The Sun's position on the horizon, known as the azimuth, changes with the seasons. During the equinoxes, the Sun sets due west for all viewers on Earth. In the Northern Hemisphere, the Sun sets to the northwest during spring and summer. It sets to the southwest during autumn and winter. These seasonal patterns are reversed in the Southern Hemisphere.

Sunset tokyoarea-timelapse-2019-03-17.webm
Sunset tokyoarea-timelapse-2019-03-17.webm
The timing of these sunsets is driven by the Earth's axial tilt and its elliptical orbit around the Sun. These factors, along with the Earth and Moon's revolutions, create small daily changes and larger semi-annual changes.

In the Northern Hemisphere, the latest sunset does not occur on the summer solstice of June 21. Instead, it happens in late June or early July. This delay is influenced by the Earth's movement near its aphelion. Similarly, the earliest sunset does not fall on the winter solstice. It usually occurs in late November or early December. This is due to the Earth's faster movement near its perihelion around January 3. These specific dates depend on the viewer's latitude. In the Southern Hemisphere, these seasonal timing patterns are reversed.

The vibrant colors of a sunset are caused by a process called Rayleigh scattering. Sunlight is composed of many different colors. As light travels through the atmosphere, air molecules and tiny particles scatter the light. Shorter wavelengths, such as blue and green, scatter more strongly. At sunset, the light must travel a much longer path through the atmosphere. This path is long enough to remove blue and green components almost completely.

Fiery sunset clouds over city silhouette.jpg
Fiery sunset clouds over city silhouette.jpg
This leaves the longer wavelength orange and red hues for us to see. Large cloud droplets can cause Mie scattering, which is not strongly dependent on wavelength. This process is responsible for the light scattered by clouds and the white daytime halo around the Sun.

Environmental factors can also dramatically change sunset colors. Volcanic eruptions can influence the appearance of the sky. If ash remains in the troposphere, it can mute the colors of a sunset. However, if volcanic ejecta is lofted into the stratosphere, it can create beautiful afterglows. These are caused by tiny sulfuric acid droplets that form thin clouds. These high-altitude clouds reflect reddened sunlight back down to the surface even after the Sun has set. Large eruptions, such as Mount Pinatubo in 1991 or Krakatoa in 1883, produced remarkable afterglows around the world.

Cape may.jpg
Cape may.jpg
Even the air quality can matter, as evening air often contains more particles than morning air, potentially making sunset colors more brilliant than sunrise colors.
Tappan Zee Bridge at Sunset.jpg
Tappan Zee Bridge at Sunset.jpg

840 words
🖼️ Images & Media (9)
File:Full cycle of a Sunset on the high plains of the Mojave Desert.jpg
Full cycle of a Sunset on the high plains...
File:Cape may.jpg
Cape may.jpg
File:Twilight subcategories.svg
Twilight subcategories.svg
Sunset tokyoarea-timelapse-2019-03-17.webm
File:Fiery sunset clouds over city silhouette.jpg
Fiery sunset clouds over city silhouette.jpg
File:Majestic twilight in the Mojave desert, Landers, California.jpg
Majestic twilight in the Mojave desert,...
File:Tappan Zee Bridge at Sunset.jpg
Tappan Zee Bridge at Sunset.jpg
Sunset on the Moon.webp
File:MarsSunset.jpg
MarsSunset.jpg
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