Respuesta :
3.98 x 10⁻¹⁹ Joule
Further explanation
Given:
The green light has a frequency of about 6.00 x 10¹⁴ s⁻¹.
Question:
The energy of a photon of green light (in joules).
The Process:
The energy of a photon is given by [tex]\boxed{\boxed{ \ E = hf \ }}[/tex]
- E = energy in joules
- h = Planck's constant 6.63 x 10⁻³⁴ Js
- f = frequency of light in Hz (sometimes the symbol f is written as v)
Let us find out the energy of the green light emitted per photon.
[tex]\boxed{ \ E = (6.63 \times 10^{-34})(6.00 \times 10^{14}) \ }[/tex]
Thus, we get a result of [tex]\boxed{\boxed{ \ E = 3.98 \times 10^{-19} \ J \ }}[/tex]
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Notes
- When an electron moves between energy levels it must emit or absorb energy.
- The energy emitted or absorbed corresponds to the difference between the two allowed energy states, i.e., as packets of light called photons.
- A higher energy photon corresponds to a higher frequency (shorter wavelength) of light.
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Keywords: green light, frequency, the energy, a photon, Planck's constant, electrons, emitted, wavelength, joules
The energy of a photon of green light that has a frequency of 6.00×10¹⁴s−1 is 3.976 × 10-¹⁹J
HOW TO CALCULATE ENERGY:
- The energy of a photon of light can be calculated by multiplying Planck's constant by the frequency of the photon:
E = hf
Where;
- E = energy of photon (Joules)
- h = Planck's constant (6.626 × 10-³⁴J)
- f = frequency of photon
- According to this question, light has a frequency of about 6.00×10¹⁴s−1. The energy can be calculated as follows:
E = 6.626 × 10-³⁴ × 6.00×10¹⁴
E = 39.76 × 10-³⁴+¹⁴
E = 39.76 × 10-²⁰
E = 3.976 × 10-¹⁹J
- Therefore, the energy of a photon of green light that has a frequency of 6.00×10¹⁴s−1 is 3.976 × 10-¹⁹J.
Learn more at: https://brainly.com/question/19601903?referrer=searchResults