In the electromagnetic spectrum, the green color corresponds to radiation in the interval between 490 and 570 nm. Knowing this, only one of the following facts cannot explain why we see a certain substance in a given moment as green:(A). It emits monochromatic light of 550 nm.(B). It emits yellow and blue light.(C). It absorbs photons only between 490 and 570 nm wavelengths.(D). Its visible spectrum presents two strong absorption bands in the 400-500 nm and 600-750 nm regions.
In the electromagnetic spectrum, the green color corresponds to radiation in the interval between 490 and 570 nm. Knowing this, only one of the following facts cannot explain why we see a certain substance in a given moment as green:(A). It emits monochromatic light of 550 nm.(B). It emits yellow and blue light.(C). It absorbs photons only between 490 and 570 nm wavelengths.(D). Its visible spectrum presents two strong absorption bands in the 400-500 nm and 600-750 nm regions.
Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter5: Electron Configurations And The Periodic Table
Section: Chapter Questions
Problem 22QRT
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(A). It emits monochromatic light of 550 nm.
(B). It emits yellow and blue light.
(C). It absorbs photons only between 490 and 570 nm wavelengths.
(D). Its visible spectrum presents two strong absorption bands in the 400-500 nm and 600-750 nm regions.
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