While they're both energy, I don't " think " you can equal both because they're about two different concepts : photon energy and rest mass energy.
12.
For the OZI suppressed channels, the gluons must have high q 2 ( at least as much as the rest mass energies of the quarks into which they decay ) and so the coupling constant will appear small to these gluons.
13.
In that case, rest mass energy density dilutes as r ^ 3 whereas dark energy density stays constant, which is why they have different observational consequences .-- talk ) 16 : 28, 25 March 2013 ( UTC)
14.
:The amount of energy released by anything being sucked into it would be so great as to vapourise everything nearby anyway ( approximately 10 % of the matter's rest mass energy, so 1kg of material would release about a million billion joules ).
15.
As shown above, to produce ordinary baryonic matter out of a photon gas, this gas must not only have a very high photon density, but also be very hot the energy ( temperature ) of photons must obviously exceed the rest mass energy of the given matter particle pair.
16.
The first pilot-wave theory was proposed by, who envisaged quantum particles such as electrons being propelled, or " piloted ", by an extended wave field centred on the particle and generated by its own internal vibration; in this picture the particle is pushed in a direction perpendicular to surfaces of constant Compton frequency, \ omega _ c = mc ^ 2 / \ hbar, at which rest mass energy is exchanged with wave energy.