Through what potential difference δv must electrons be accelerated (from rest) so that they will have the same wavelength as an x-ray of wavelength 0.120 nm ? use 6.63×10−34 j⋅s for planck's constant, 9.11×10−31 kg for the mass of an electron, and 1.60×10−19 c for the charge on an electron. express your answer using three significant figures. view available hint(s) δv δ v deltav = 104 v submitprevious answers correct significant figures feedback: your answer 104.7 v was either rounded differently or used a different number of significant figures than required for this part. part b through what potential difference δv must electrons be accelerated so they will have the same energy as the x-ray in part a? use 6.63×10−34 j⋅s for planck's constant, 3.00×108 m/s for the speed of light in a vacuum, and 1.60×10−19 c for the charge on an electron. express your answer using three significant figures.
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Through what potential difference δv must electrons be accelerated (from rest) so that they will hav...
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