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Oct 13, 2007 · Does e=hv represent the actual energy a particular photon contains, or just how much energy is released when it strikes a light-sensitive material? If I wanted to calculate how much energy would be released in a photon/antiphoton annihilation reaction, would I use e=hv?

answers.yahoo.com/question/index?qid=2007101413391...E = hv C= λv. E is the energy of the light in Joules (J), . h . is a constant which is 6.626 X 10-34 J·s, and . v . is the frequency of the light in s-1 or waves/s (also called Hertz (Hz).

www.wasatch.edu/cms/lib/UT01000315/Centricity...Sep 29, 2009 · Energy is Planck's constant multiplied by the frequency. Use this equation to solve a problem.

www.youtube.com/watch?v=BMqWKxlLP4cI have seen the energy of a photon given by the formulas: $$E = h \cdot f \tag{1}$$ Where $E$ = energy of the photon, $h$ = Planck's constant, $f$ = frequency of radiation (Source: BBC article) ...

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www.physicsmatters.org/quantum/ehv.htmlE=hv is used to calculate the energy of electromagnetic radiation, and is known as the Planck-Einstein relation. "E" is the energy of electromagnetic radiation, "h" is the Planck constant and "v" is the frequency of electromagnetic radiation. In 1900, Planck introduced the hypothesis that energy is ...

What Is E=hv in Chemistry? | Reference.comwww.refe...Planck constant - Wikipediahttps://en.wikipedia.org/wiki/Planck_constantOverview

en.wikipedia.org/wiki/Planck_constant23. Planck’s Equation E = hv. E stands for energy (in Joules), v stands for frequency [in reciprocal seconds – written s-1 or Hertz (Hz)- 1Hz = 1 s-1), h is Planck’s constant.

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