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The continuous part of X -ray spectrum is a result of the

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Important Questions on Dual Nature of Matter and Radiation

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The work function of a metal is 1.5 eV. Light of wavelength 2500 Ao is incident on this metal. Maximum velocity of photoelectrons is      
 

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A metal surface is illuminated by a light of given intensity and frequency to cause photoemission. If the intensity of illumination is reduced to one-fourth of its original value, then the maximum kinetic energy of the emitted photoelectrons would become
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In a photoemissive cell with exciting wavelength λ, the fastest electron has speed v. If the exciting wavelength is changed to 3λ/4, the speed of the fastest emitted electron will be
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Light of wavelength 4000 Å is incident on a metal plate whose work function is 2 eV. What is maximum kinetic energy of emitted photoelectron?

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In a photoelectric experiment, it is found that stopping potential for a given metal is to be Vo volt in presence of wavelength λo. When radiation of wavelength  2λo is used with the same metal then what will be the stopping potential (in Volt )?

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As metal surface ejects electrons when hit by green light but none when hit by yellow light. The electrons will be ejected when the surface is hit by
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A graph is plotted between maximum kinetic energy Ek of electrons with frequency of incident photon ν in photoelectric effect. The slope of the curve will be,

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When light is incident on a metal surface the maximum kinetic energy of emitted electrons