The energy required to dislodge electrons from sodium metal via the photoelectric effect is 275 kJ/mol . What wavelength of light, in nanometers, has sufficient energy per photon to dislodge an electron from the surface of sodium? Express the wavelength in nanometers to three significant figures.

Respuesta :

Answer:

435 nm

Explanation:

Given the energy required to dislodge electrons from sodium metal via the photoelectric effect is 275 kJ/mol

⇒ energy per photon =energy per mole/Avogadros number

=[tex]\frac{275\times1000}{6.022\times10^{23}}[/tex]

= 4.5666 x 10^(-19) J

[tex]Wavelength=\frac{hc}{energy per photon}[/tex]

=[tex]\frac{6.626\times10^{-34}\times3\times10^8}{4.56\times10^{-19}}[/tex]

=[tex]4.35\times10^{-7} m[/tex]

=435 nm

hence the wavelength is equal to 435 nm

Answer:

435

Explanation:

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