$i _{1}:$ Current in primary coil
$M$ : Mutual inductance
$e _{2}=- M \frac{ di _{1}}{ dt }$
$M =-\frac{ e _{2}}{\frac{ di }{ dt }}$
${[ M ]=\frac{\left[ e _{2}\right]}{\left[\frac{ di _{1}}{ dt }\right]}=\frac{\left[\frac{ W }{ q }\right]}{\left[\frac{ di _{1} }{ dt }\right]}=\frac{\left[ ML ^{2} T ^{-2}\right]}{\left[ \frac {AT}{AT^{-1}}\right]}}$
$=\left[ ML ^{2} T ^{-2} A ^{-2}\right]$
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$(a)$ Maximum $KE$ associated with photoelectrons from the surface of any metal is $0.3\ eV$
$(b)$ No photoelectrons are emitted from the surface of $Ni$
$(c)$ If the frequency of the source of radiation is doubled then $KE$ of photoelectrons is also doubled
$(d)$ Photoelectrons will be emitted from the surfaces of all the three metals if the wavelength of the incident radiation is less than $200\ nm$
Correct statements are


