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The energy determines the frequency, f= E/h.

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13y ago
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12y ago

kv, ma and time

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Q: What determines the quantity of an x-ray photon?
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Related questions

What is a fixed quantity of light energy?

Wikipedia says that a photon is a fixed quantity of light energy.


What does the quantity of x-rays depend on?

Quantity refers to the number of photon in the beam.


What determines which photon an atom can absorb or emit?

Generally if they are of the same wavelength, then the atom will absorb the photon at that wavelength.


What determines the frequency ( color ) of photons?

Frequency determines color. Frequency is determined by the origin of the photon, i.e. emitted from an excited atom.


What determines the quantity of a good that sellers supply?

The demand of the consumer determines the quantity of goods a seller supplies. Supply and demand also affects market price.


What is the relationship between the wavelength of light and the quantity of energy per photon?

inversely related


What detemines the price and the quantity produced of goods?

Supply determines the price and quantity of produced goods.


Which has more energy an infrared or xray photon?

An X-ray proton. This is so because the x-ray has much higher frequency and shorter waves.


What determines the quantity of movie tickets that sellers supply?

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What does photon mean?

In Chemistry it is a particle of electromagnetic radiation wth no mass that carries a quantum of energy. HOPE THIS HELPS:>photon is another name for concentrated energy, usually in quantizaed units.A photon is a particle of light. For more details, read the Wikipedia article on "photon".meant*A photon is like a particle of light. The minimum divisible quantity of light.


What is the power law determines?

"Power law" simply means that one quantity is proportional to some power of another quantity.


What is the relationship between color and frequency and energy of an electromagnetic wave?

En electromagnetic wave is assimilable to a photon. The energy of a photon is equal to its frequency (that determines its "color") multiplied by the Planck's constant (h).