Sun dog formally 7 Little Words Answer from Daily Puzzles
by
Updated May 24, 2024
Crafting a crossword puzzle involves a diverse range of clues, from simple definitions to cryptic wordplay and even trivia questions. Successfully completing one demands a mix of vocabulary prowess, problem-solving acumen, and the ability to think laterally.
"Sun dog," formally known as a parhelion, is an atmospheric optical phenomenon that appears as bright spots on either side of the sun, often accompanied by a halo. These "false suns" are caused by the refraction of sunlight through ice crystals in the atmosphere. They typically occur when the sun is low on the horizon and are most commonly seen in colder regions.
Hints to Finding the Answer
If you're still seeking the solution, here are some extra hints to assist you further.
The answer starts with P and ends with N.
P | - | - | H | - | - | - | - | N |
- Atmospheric optical phenomenon.
- Appears as bright spots beside the sun.
- Often accompanied by a halo.
- Result of sunlight refraction.
- Occurs due to ice crystals in the atmosphere.
- Sometimes called "sun dogs."
- More likely to be seen when the sun is low on the horizon.
- Common in colder regions.
Answer
The answer for Sun dog formally 7 Little Words is PARHELION
Explanation
"PARHELION" refers to a specific atmospheric optical phenomenon formally known as a sun dog. Sun dogs are characterized by bright spots that appear on either side of the sun, often accompanied by a halo. These phenomena are caused by the refraction of sunlight through ice crystals suspended in the atmosphere.
When the sunlight passes through these crystals, it is bent, creating the illusion of additional suns on either side of the actual sun. The term "PARHELION" is derived from the Greek words "para" meaning beside, and "helios" meaning sun. Sun dogs are more commonly observed when the sun is low on the horizon, such as during sunrise or sunset, and they are particularly prevalent in colder regions where ice crystals are more likely to form in the atmosphere