which describes a relationship when calculating the energy of a photon?\nthe energy of the photon is…

which describes a relationship when calculating the energy of a photon?\nthe energy of the photon is directly proportional to frequency.\nthe energy of the photon is inversely proportional to frequency.\nas the energy of the photon increases, plancks constant increases.\nas the energy of the photon increases, plancks constant decreases.

which describes a relationship when calculating the energy of a photon?\nthe energy of the photon is directly proportional to frequency.\nthe energy of the photon is inversely proportional to frequency.\nas the energy of the photon increases, plancks constant increases.\nas the energy of the photon increases, plancks constant decreases.

Answer

Brief Explanations:

The energy formula of a photon is $E = h\nu$, where $E$ is energy, $h$ is Planck's constant (a fixed value), and $\nu$ is frequency. From this formula, energy is directly proportional to frequency as $E$ increases when $\nu$ increases with $h$ being constant. Planck's constant is a fundamental constant and does not change with the energy of the photon.

Answer:

The energy of the photon is directly proportional to frequency.