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A science museum is designing a demonstration to explain why the sky appears blue during the day but takes on reddish hues during sunrise and sunset. Which explanation best accounts for these observations based on the scattering of light in the atmosphere?
Shorter wavelengths scatter more strongly, while longer atmospheric paths at sunset favour red wavelengths.
Atmospheric absorption removes red light during the day, while removing blue light at sunset.
The Sun emits more blue light during the day, while emitting more red light at sunset.
Dust particles scatter all wavelengths equally, while increased dust at sunset makes red light more visible. Question ID : 4410092046244 Option 1 ID : 4410098057051 Option 2 ID : 4410098057052 Option 3 ID : 4410098057050 Option 4 ID : 4410098057049 Status : Answered Chosen Option : A
Shorter wavelengths scatter more strongly, while longer atmospheric paths at sunset favour red wavelengths.
Practice and solve "A science museum is designing a demonstration to explain why the sky appears blue during the day but..." for General Science - Previous Year Paper 2026. The correct answer is Option A: Shorter wavelengths scatter more strongly, while longer atmospheric paths at sunset favour red wavelengths.. Detailed step-by-step solution, conceptual clarity, and formulas on Examoogle.
Practice and solve "A science museum is designing a demonstration to explain why the sky appears blue during the day but..." for General Science - Previous Year Paper 2026. The correct answer is Option A: Shorter wavelengths scatter more strongly, while longer atmospheric paths at sunset favour red wavelengths.. Detailed step-by-step solution, conceptual clarity, and formulas on Examoogle.