Respuesta :
Answer:
2.3 ev or 3.68 ×10^-19J
Explanation:
The spectrum is shown in the image attached
h= 4.136 × 10-15 eV⋅ s
c = 2.998 × 108 m/s
λmax= 550×10^-9 (from the spectrum attached)
E=hc/λmax
E= 4.136 × 10^-15 × 2.998 × 10^8/550×10^-9
E= 2.3 ev or 3.68 ×10^-19J

The energy change for the electronic excitation is : 3.68 * 10⁻¹⁹J
Given data :
h = 4.136 * 10⁻¹⁵ eV⋅ s
c = 2.998 * 108 m/s
λmax = 550 * 10⁻⁹ ( Obtained from image attached below )
Applying the energy and wavelength relationship equation
E = hc / λmax
= ( 4.136 * 10⁻¹⁵ * 2.998 * 108 ) / 550 * 10⁻⁹
= 2.3 ev ≈ 3.68 * 10⁻¹⁹J.
Hence we can conclude that the energy change for the electronic excitation is 2.3 ev ≈ 3.68 * 10⁻¹⁹J.
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