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When a monochromatic point source of lig...

When a monochromatic point source of light is at a distance
of 0.2 m from a photoelectric cell, the cut off voltage and the saturation current
are respectively 0.6 V and 18.0 mA. If the same source is placed 0.6 m away
from the photoelectric cell, then
(a) the stopping potential will be 0.2 V
(b) the stopping potential will be 0.6 V
(c ) the saturation current will be 6.0 mA
(d) the saturation current will be 2.0 mA

Text Solution

Verified by Experts

The correct Answer is:
(i) `0.6` volt, (ii) `2.0` mA

Number of photons falling/s
`n prop 1/r^(2)` [for point source]
So for new distance `n'=n/9`
`I'_(s)=I_(s)/9=(18 mA)/(9)=2 mA`
Also saturated current `prop n`
`V_(d)` is independent of n.
(i) `V_(S)=0.6 V` (ii) `I_(s)=(18xx(0.2)^(2))/((0.6)^(2))=2 mA`
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Knowledge Check

  • When monochromatic source is kept at distance of 0.2 m from photocell,cutoff voltage obtained is 0.6 V and saturation current is 18 mA.Noe if source is kept at distance of 0.6 m…….

    A
    Stopping potential will be 0.2 V
    B
    stopping potential will be 0.6 V
    C
    saturation current will be 6 mA
    D
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  • When point source is kept at 20 cm distance from photcell ,stopping voltage obtained is V_(0) When source distance is changed to 1m, stopping potential will be ……..

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    `(V_(0))/(u)`
    B
    `(V_(0))/(2)`
    C
    `V_(0)`
    D
    `2V_(0)`
  • When metal surface with 2.1 eV work function is irridated with photon of 6.0 eV energy.Value of stopping potential will be….

    A
    `+8.1`
    B
    `-8.1V`
    C
    `+3.9V`
    D
    `-3.9 V`
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