There are 4 waves of wavelengths: λ1 = 10m, λ2 = = 620 × 10⁹m, 12 = 450 × 10¯⁹m, λ4 = 30 x 10-10m. The subscripts in the answer part follow the same rule as it was given for the wavelengths: 1 refers to the 1st wave, 2nd refers to the 2nd waves, 3rd refers to the 3rd wave, 4 refers to the 4th wave. Select all that apply: the 4th wave is an UV radiation. The 2nd frequency corresponds to the radio wave range. All the wavelengths correspond to the electromagnetic spectrum only one wavelength is part of the visible spectrum The radiation with the highest energy is the 1st wave. The radiation with the highest energy is the 4th wave. The relation between their frequencies is f₁ f2 > f3 < f4 The speeds of the waved depends on their wavelength. The 1st frequency corresponds to the radio wave range.
There are 4 waves of wavelengths: λ1 = 10m, λ2 = = 620 × 10⁹m, 12 = 450 × 10¯⁹m, λ4 = 30 x 10-10m. The subscripts in the answer part follow the same rule as it was given for the wavelengths: 1 refers to the 1st wave, 2nd refers to the 2nd waves, 3rd refers to the 3rd wave, 4 refers to the 4th wave. Select all that apply: the 4th wave is an UV radiation. The 2nd frequency corresponds to the radio wave range. All the wavelengths correspond to the electromagnetic spectrum only one wavelength is part of the visible spectrum The radiation with the highest energy is the 1st wave. The radiation with the highest energy is the 4th wave. The relation between their frequencies is f₁ f2 > f3 < f4 The speeds of the waved depends on their wavelength. The 1st frequency corresponds to the radio wave range.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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