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The photon’s mass is approximately
kilograms.
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To find the mass of a photon, we can use the formula that relates energy and mass through Einstein’s equation
, but first, we need to calculate the energy of the photon using its frequency. The energy
of a photon is given by
, where
is Planck’s constant (
) and
is the frequency.
Substituting the values:
Now, to convert energy to mass, we rearrange
to get
where
(the speed of light) is approximately
.
So,
Thus, the photon’s mass is approximately
.
Did you know that photons, despite having no mass in a classical sense, exhibit properties similar to mass? This has been a source of fascination in modern physics! When studying quantum mechanics, one discovers that the equivalence of mass and energy means even massless particles like photons carry energy, which is not just theoretical—it’s foundational to technologies like lasers and solar panels!
As a fun fact, Einstein’s famous equation
originally emerged from his work testing the idea that light can behave both as a wave and a particle. This duality laid the groundwork for quantum mechanics and revolutionized our understanding of physics. If you dive deeper into this topic, you can uncover how concepts like wave-particle duality influence everything from quantum computing to the latest advances in energy efficiency!

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