How to calculate a photon

    • [DOCX File]Practice Problems - Manchester High School

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      Calculate the wavelength and energy of light that has a frequency of 1.5 x 1015 Hz. Ans: = 2.0 x 10-7 m E = 9.95 x 10-19 J. A photon of light has a wavelength of 0.050 cm. Calculate its energy. Ans: E = 3.98 x 10-22 J. Calculate the number of photons having a wavelength of 10.0 m required to produce 1.0 kJ of energy. Ans: 5.0 x 1022 photons

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    • [DOC File]Chapter 1 - Solutions

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      The energy for one photon is. Ephoton = hc = (6.626 x 10-34 J(s)(2.998 x 108 m/s) = 3.14 x 10-19 J ( 633. x 10-9 nm . The number of photons produced in one pulse is # photons = 0.376 J 1 photon = 1.20 x 1018 photons per pulse. 3.14 x 10-19 J. b) Calculate …

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    • [DOC File]TAP 535- 4: Creation and annihilation - Institute of Physics

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      These questions give practice in using Erest = m c 2 to calculate photon energies and masses of particles created or annihilated. Energy and mass . The energy of a particle at rest is all due to its mass. This energy is called the rest energy. The rest energy in joules of a particle with mass m measured in kilograms is given by

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    • [DOC File]Section 46

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      Calculate the range of the force that might be produced by the virtual exchange of a proton. 7. A neutral pion at rest decays into two photons according to. Find the energy, momentum, and frequency of each photon…

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    • [DOC File]2004 AP® PHYSICS C: MECHANICS FREE-RESPONSE …

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      In one of the trials, the photon is scattered at an angle of 120° with its original direction. (b) Calculate the wavelength of this photon after it is scattered off the nucleus. (c) Calculate the momentum of this scattered photon. (d) Calculate the energy that this scattering event imparts to the recoiling nucleus.

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    • Honors Chemistry Worksheet on Electronic Structure of the …

      Calculate the energy of one photon of this radiation. c. Calculate the energy of one mole of photons of this radiation. (Note: a mole is a unit representing a quantity of substance composed of 6.002 x 1023 particles). 4. Examine the emission spectrum for hydrogen.

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    • Honors Chemistry Worksheet on Electronic Structure of the …

      Calculate the energy of one photon of this radiation. E = h ν = 6.626 2 x 10-34 J-s x 7.500 000 x 1014 s-1 = 4.97 x 10-19 J. c. Calculate the energy of one mole of photons of this radiation. (Note: a mole is a unit representing a quantity of substance composed of 6.022 x 1023 particles).

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    • [DOC File]Worksheet frequency/wavelength/Energy

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      Nov 03, 2011 · 1st, need frequency f= c/w = 3.00x108/4.06*10-11 = .738 x 10*(8--11) = .738 x 1019 = 7.38x1019 Hz 2nd, use this frequency to calculate for Energy Energyphoton = 7.38x1019 x 6.626 x 10-34 = 48.89988 x 10(19+-34) Joules = 48.89988 x 10-15 4.89988x10-14 General Knowledge

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    • [DOC File]ANSWERS TO THIS WORKSHEET

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      Calculate the energy associated with a microwave having a frequency of 7.5 x 1010 cycles/s. E = h. υ E = (6.626x10-34 J*s)( 7.5 x 1010 Hz) = 4.97x10-23. Calculate the energy of a photon having a wavelength of 6.6 x 10-7 cm. Convert cm to m: 6.6 x 10-7 cm x 1m/100cm = 6.6 x 10-9 m. c = λ υ. 3x108 m/s = 6.6 x 10-9m . x . υ υ = 4.54x1016 Hz ...

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    • [DOC File]Worksheet frequency/wavelength/Energy

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      A photon has a frequency (() of 2.68 x 106 Hz. Calculate its energy. Calculate the energy (E) and wavelength (() of a photon of light with a frequency (() of 6.165 x 1014 Hz. Calculate the wavelength and energy of light that has a frequency of 1.5 x 1015 Hz. Calculate the wavelength of radiation with a frequency of 8.0 x 1014 Hz.

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