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Pure sodium chloride crystals are transparent.
The wavelength of sodium light is around 589 nanometers.
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sodium light
Sodium lights produce yellow light because they contain sodium vapor that emits a characteristic yellow-orange light when an electric current passes through it. This yellow light is a result of the specific energy levels of the sodium atoms, which emit light in the yellow part of the spectrum.
Ultraviolet light has enough energy to break the chemical bonds in sodium chloride (NaCl) in aqueous solution, resulting in the dissociation of Na+ and Cl- ions. This process is known as photodissociation and can form highly reactive radicals that can further react with other molecules in the solution.
The light bulb would not light up when placed in a solid sodium chloride because the solid does not conduct electricity. However, in an aqueous solution of sodium chloride, the solution is able to conduct electricity due to the presence of free ions, allowing the light bulb to light up.
When sodium burns, it emits a yellow light due to the specific wavelengths of light that are produced during the process. The excitation of sodium atoms during combustion causes them to release energy in the form of visible light, which happens to be in the yellow part of the spectrum. This emission of light is characteristic of the sodium element.
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When sodium iodide is exposed to light, it may undergo a photochemical reaction where it can decompose or form other products. This is because the light energy can excite the molecules in sodium iodide, leading to potential photoreactions.