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Physicsdual-nature-of-radiation2021easy
Two identical photocathodes receive the light of frequencies f1 and f2 respectively. If the velocities of the photo-electrons coming out are v1 and v2 respectively, then
Physicsdual-nature-of-radiation2021easy
A particle is travelling 4 time as fast as an electron. Assuming the ratio of de-Broglie wavelength of a particle to that of electron is 2 : 1, the mass of the particle is :
Physicsdual-nature-of-radiation2021easy
The speed of electrons in a scanning electron microscope is 1 107 ms-1. If the protons having the same speed are used instead of electrons, then the resolving power of scanning proton microscope will be changed by a factor of :
Physicsdual-nature-of-radiation2021medium
The radiation corresponding to 3 2 transition of a hydrogen atom falls on a gold surface to generate photoelectrons. The electrons are passed through a magnetic field of 5 104 T. Assume that the radius of the largest circular path followed by these electrons is 7 mm, the work function of the metal is : (Mass of electron = 9.1 1031 kg)
Physicsdual-nature-of-radiation2021medium
An electron having de-Broglie wavelength is incident on a target in a X-ray tube. Cut-off wavelength of emitted X-ray is :
Physicsdual-nature-of-radiation2021medium
An electron of mass me and a proton of mass mp are accelerated through the same potential difference. The ratio of the de-Broglie wavelength associated with the electron to that with the proton is
Physicsdual-nature-of-radiation2021easy
What should be the order of arrangement of de-Broglie wavelength of electron (e), an -particle (a) and proton (p) given that all have the same kinetic energy?
Physicsdual-nature-of-radiation2021easy
A particle of mass 4M at rest disintegrates into two particles of mass M and 3M respectively having non zero velocities. The ratio of de-Broglie wavelength of particle of mass M to that of mass 3M will be :
Physicsdual-nature-of-radiation2021easy
An electron moving with speed v and a photon moving with speed c, have same D-Broglie wavelength. The ratio of kinetic energy of electron to that of photon is :
Physicsdual-nature-of-radiation2021medium
When radiation of wavelength is incident on a metallic surface, the stopping potential of ejected photoelectrons is 4.8 V. If the same surface is illuminated by radiation of double the previous wavelength, then the stopping potential becomes 1.6 V. The threshold wavelength of the metal is :
Physicsdual-nature-of-radiation2021medium
An electron and proton are separated by a large distance. The electron starts approaching the proton with energy 3 eV. The proton captures the electron and forms a hydrogen atom in second excited state. The resulting photon is incident on a photosensitive metal of threshold wavelength 4000. What is the maximum kinetic energy of the emitted photoelectron?
Physicsdual-nature-of-radiation2021medium
In a photoelectric experiment ultraviolet light of wavelength 280 nm is used with lithium cathode having work function = 2.5 eV. If the wavelength of incident light is switched to 400 nm, find out the change in the stopping potential. (h = 6.63 1034 Js, c = 3 108 ms1)
Physicsdual-nature-of-radiation2021easy
The de-Broglie wavelength of a particle having kinetic energy E is . How much extra energy must be given to this particle so that the de-Broglie wavelength reduces to 75% of the initial value?
Physicsdual-nature-of-radiation2021easy
In a photoelectric experiment, increasing the intensity of incident light :
Physicsdual-nature-of-radiation2021medium
A monochromatic neon lamp with wavelength of 670.5 nm illuminates a photo-sensitive material which has a stopping voltage of 0.48 V. What will be the stopping voltage if the source light is changed with another source of wavelength of 474.6 nm?
Physicsdual-nature-of-radiation2021easy
A moving proton and electron have the same de-Broglie wavelength. If K and P denote the K.E. and momentum respectively. Then choose the correct option :
Physicsdual-nature-of-radiation2021medium
A free electron of 2.6 eV energy collides with a H+ ion. This results in the formation of a hydrogen atom in the first excited state and a photon is released. Find the frequency of the emitted photon. (h = 6.6 1034 Js)
Physicsdual-nature-of-radiation2021medium
Consider two separate ideal gases of electrons and protons having same number of particles. The temperature of both the gases are same. The ratio of the uncertainty in determining the position of an electron to that of a proton is proportional to :-
Physicsdual-nature-of-radiation2021medium
The temperature of an ideal gas in 3-dimensions is 300 K. The corresponding de-Broglie wavelength of the electron approximately at 300 K, is : [me = mass of electron = 9 1031 kg, h = Planck constant = 6.6 6.6 1034 Js, kB = Boltzmann constant = 1.38 1023 JK1]
Physicsmagnetic-properties-of-matter2021easy
A soft ferromagnetic material is placed in an external magnetic field. The magnetic domains :
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