The dual nature of radiation is demonstrated by:

  • A
    Diffraction and reflection
  • B
    Refraction and diffraction
  • C
    Photoelectric effect alone
  • D
    Photoelectric effect and diffraction

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Similar Questions

Some laws/processes are given in Column $I$. Match these with the physical phenomena given in Column $II$.
Column $I$Column $II$
$(A)$ Transition between two atomic energy levels$(p)$ Characteristic $X$-rays
$(B)$ Electron emission from a material$(q)$ Photoelectric effect
$(C)$ Mosley's law$(r)$ Hydrogen spectrum
$(D)$ Change of photon energy into kinetic energy of electrons$(s)$ $\beta$-decay

$A$ radiation of $3.8 eV$ falls on a metal surface to produce photoelectrons. These electrons are made to enter a magnetic field of $2 \times 10^{-4} T$. If the radius of the largest circular path followed by these electrons is $30 mm$,then the work function of the metal is (Mass of electron $m_{e} = 9 \times 10^{-31} kg$) (in $eV$)

Consider the following statements: $(1)$ Both wave and particle nature are required for a complete understanding of light. $(2)$ Light cannot exhibit both wave and particle nature simultaneously in a single experiment.

The anode voltage of a photocell is kept constant. The wavelength of the light incident on the cathode is changed gradually. Which of the following graphs represents the variation of the photoelectric current $(I)$ with the wavelength $(\lambda)$?

What phenomena of light can be explained on the basis of particle theory and wave theory of light?

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