X-rays of wavelength 0.2400 nm are Compton-scattered, and the scattered beam is observed at an angle of 60.0° relative to the incident beam. Find the wavelength of the scattered X-rays,
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- X-ray of wavelength 2.4 are Compton scattered and the scattered beams are observed at 60degrees relative to the incident beam. Find the direction of travel of the scattered electron.in visable region The kinetie energy of a proton and that of an a-partiele are 4 eV and 1 ev. respectively. The ratio of the de-Broglie wavelengths associated with them, will be 9. (a) 2:1 (b) 1:1 (e) 1:2 (d) 41 10 WhenWhen radiation of frequency 8 × 10¹ Hz is incident on a metal, the maximum K.E. of the photoelectrons emitted is 1.5 × 10-¹⁹ J. Find the maximum K.E. of the photoelectrons 19 emitted when radiation of wavelength 4500 A is incident on the metal. (h and C are given)
- You use 0.124 nm x-ray photons in a Compton-scattering experiment. At what angle is the wavelength of the scattered x rays 1.0% longer than that of the incident x rays? 70.6° 67.0° 60.7° 56.5°In an x-ray tube, the maximum photon energy is given by hf = qV. Would it be technically more correct to say hf = qV + BE, where BE is the binding energy of electrons in the target anode? Why isn’t the energy stated the latter way?X-rays with a wavelength of 120.0 pm undergo Compton scattering. Find the wavelengths of the photons scattered at angle of 30.0°?
- In the 1920s Clinton Davisson and Lester Germer accidentally observed diffraction when electrons with 54 eV of energy were scattered off crystalline nickel. The diffraction peak occurred when the angle between the incident beam and the scattered beam was 50°. (a) What is the corresponding angle u relevant for Eq.? (b) The planes in crystalline nickel are separated by 0.091 nm, as determined by x-ray scattering experiments. According to the Bragg condition, what wavelength do the electrons in these experiments have? (c) Given the mass of an electron as 9.11 x 10-31 kg, what is the corresponding classical speed vcl of the diffracted electrons? (d) Assuming the electrons correspond to a wave with speed vcl and wavelength λ, what is the frequency f of the diffracted waves? (e) Quantum mechanics postulates that the energy E and the frequency f of a particle are related by E = hf, where h is known as Planck’s constant. Estimate h from these observations. (f) Our analysis has a small flaw:…X-rays with energy E = 340 keV are incident on a target. The x-rays undergo Compton scattering, and the scattered rays are at an angle of ? = 33.0° with respect to the incident rays. Find the Compton shift (in m) at this angle; the energy (in keV) of the scattered x-ray; and the energy (in keV) of the recoiling electron.Compton used photons of wavelength 0.0711 nm. (a) What is the energy of these incident photons? 4 (b) What is the wavelength of the photons scattered at an angle of 180°? (c) What is the energy of the photons scattered at an angle of 180°?
- Light of wavelength 277 nm is incident on an uncharged metal sphere of diameter 16.2 cm. If the work function for the metal is 3.68 ev, determine the charge (in C) induced on the sphere due to photoelectric effect. Q =X-rays are scattered from a target at an angle of 54.9° with respect to the direction of the incident beam. What is the wavelength shift (in m) of the scattered x-rays? What If? For what scattering angle (in degrees) will the wavelength shift of x-rays be exactly double that found in part (a)?