Match the temperature of a black body given in List-$I$ with an appropriate statement in List-$II$, and choose the correct option.
[Given: Wien's constant as $2.9 \times 10^{-3} \, m-K$ and $\frac{hc}{e}=1.24 \times 10^{-6} \, V-m$ ]
List-$I$ List-$II$
$(P)$ $2000 \, K$ $(1)$ The radiation at peak wavelength can lead to emission of photoelectrons from a metal of work function $4 \, eV$
$(Q)$ $3000 \, K$ $(2)$ The radiation at peak wavelength is visible to human eye.
$(R)$ $5000 \, K$ $(3)$ The radiation at peak emission wavelength will result in the widest central maximum of a single slit diffraction.
$(S)$ $10000 \, K$ $(4)$ The power emitted per unit area is $1/16$ of that emitted by a blackbody at temperature $6000 \, K$.
$(5)$ The radiation at peak emission wavelength can be used to image human bones.

  • A
    $P \rightarrow 3, Q \rightarrow 5, R \rightarrow 2, S \rightarrow 3$
  • B
    $P \rightarrow 3, Q \rightarrow 2, R \rightarrow 4, S \rightarrow 1$
  • C
    $P \rightarrow 3, Q \rightarrow 4, R \rightarrow 2, S \rightarrow 1$
  • D
    $P \rightarrow 1, Q \rightarrow 2, R \rightarrow 5, S \rightarrow 3$

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