Welcome to Westonci.ca, where you can find answers to all your questions from a community of experienced professionals. Join our platform to connect with experts ready to provide accurate answers to your questions in various fields. Explore comprehensive solutions to your questions from knowledgeable professionals across various fields on our platform.
Sagot :
Electromagnetic wave energy that can be described in terms of wavelength, namely photon energy.
Introduction
In electromagnetic waves, photons have the task of carrying energy from an electromagnetic wave. We know today, there are 7 types of electromagnetic waves. Based on the wavelength from the longest, to the shortest as follows:
- Radio & television waves
- Microwave
- Infrared
- Visible light
- Ultraviolet light
- X-ray
- Gamma ray
To create a large photon energy, then an electromagnetic wave must have a short wavelength. This means, the relationship between photon energy and wavelength are mutually inverse.
Explanation
Regarding the photon energy itself, it can be formulated in two ways, namely as follows:
By Frequency
[tex] \boxed{\sf{\bold{E = h \times f}}} [/tex]
By the Wave Length
[tex] \boxed{\sf{\bold{E = h \times \frac{c}{\lambda}}}} [/tex]
With the following condition :
- E = photon energy (J)
- h = Planck's constant ≈ [tex] \sf{6.6 \times 10^{-34} \: J.s} [/tex]
- c = the constant of the speed of light in a vacuum ≈ [tex] \sf{3 \times 10^{8} \: m/s} [/tex]
- f = electromagnetic wave frequency (Hz)
- [tex] \sf{\lambda} [/tex] = wavelength (m)
Conclusion
Electromagnetic wave energy that can be described in terms of wavelength, namely photon energy.
Thanks for using our service. We're always here to provide accurate and up-to-date answers to all your queries. We appreciate your time. Please come back anytime for the latest information and answers to your questions. Discover more at Westonci.ca. Return for the latest expert answers and updates on various topics.