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  1. Switch tool with the current settings for photon energy (E) or wavelength (λ), and calculate frequency (f) of an em wave instead. Calculate the wavelength of an electromagnetic wave in a vacuum by entering a value for the corresponding energy per photon for the em wave.

  2. www.omnicalculator.com › physics › energy-to-wavelengthEnergy to Wavelength Calculator

    21 Οκτ 2024 · To calculate wavelength from the energy of a photon: Convert the photon's energy into joules. Divide the speed of light, equal to 299,792,458 meters per second, by the photon's energy. Multiply the resulting number by Planck's constant, which is 6.626×10 −34 J/Hz.

  3. www.omnicalculator.com › physics › wavelengthWavelength Calculator

    30 Ιουλ 2024 · You can find a few typical wave velocity values below. Type them into our wavelength calculator to learn what is, for example, the wavelength of red light in water. Light in air or vacuum: 299,792,458 m/s; Light in water: 224,901,000 m/s; Sound in air: 343.2 m/s; Sound in water (20 °C): 1,481 m/s

  4. www.omnicalculator.com › physics › wavelength-to-energyWavelength to Energy Calculator

    This is Omni's wavelength to energy calculator, a tool that instantly calculates a photon's energy from its wavelength. By using Planck's equation, this tool will help you determine a photon's energy in joules (J), electronvolts (eV), or its multiples.

  5. Compute answers using Wolfram's breakthrough technology & knowledgebase, relied on by millions of students & professionals. For math, science, nutrition, history, geography, engineering, mathematics, linguistics, sports, finance, music….

  6. Convert wave length, frequency and energy. Please enter one value and press the according = button. T at λ max is the temperature of a black body, whose radiation has a maximum at λ. The electromagnetic spectrum is the region in which electromagnetic waves occur.

  7. This calculator computes the wavelength and frequency of a photon from its energy E_ {p} E p. The photon frequency is. {\nu} = \dfrac {E_ {p}} {h} ν = hE p. and the photon wavelength is. {\lambda} = \dfrac {hc} {E_ {p}}h λ = E phch.

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