What is the energy of a photon with a frequency of 3. 6 Ă— 1015 Hz? Planck’s constant is 6. 63 Ă— 10â€""34 J•s. 1. 8 Ă— 10â€""49 J 2. 4 Ă— 10â€""19 J 1. 8 Ă— 10â€""18 J 2. 4 Ă— 10â€""18 J.

Respuesta :

Every photon has some energy within it and that energy is called photon energy.

The energy of photon is [tex]2.38\times10^{-18}\;\rm J[/tex].

Given that, frequency of the photon is [tex]3.6\times10^{15}\;\rm Hz[/tex] and Planck's constant is [tex]6.626\times {{10}^{-34}}[/tex].

So the energy of the photon can be calculated by the given formula.

[tex]E=h\nu[/tex]

Where [tex]h[/tex] is plank's constant and [tex]\nu[/tex] is the frequency of the photon.

By substituting the values in the above formula, the photon energy is,

[tex]E=6.626\times10^{-34}\times3.6\times10^{15}\;\rm J[/tex]

[tex]E=2.38\times10^{-18}\;\rm J[/tex]

The energy of photon is [tex]2.38\times10^{-18}\;\rm J[/tex].

For more details about the energy of photon, follow the link given below.

https://brainly.com/question/15870724.