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Two metallic plate A and B , each of are...

Two metallic plate A and B , each of area` 5 xx 10^(-4)m^(2)`, are placed parallel to each at a separation of 1 cm plate B carries a positive charge of `33.7 xx 10^(-12) C A` monocharonatic beam of light , with photoes of energy 5 eV each , starts falling on plate A at t = 0 so that` 10^(16)` photons fall on it ``per square meter per second. Assume that one photoelectron is emitted for every `10^(6)` incident photons fall on it per square meter per second. Also assume that all the emitted photoelectrons are collected by plate B and the work function of plate A remain constant at the value 2 eV Determine
(b) the magnitude of the electron field between the plate A and B at i = 10 s

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MODERN PUBLICATION-Particle Nature of Radiation-EXERCISE
  1. Two metallic plate A and B , each of area 5 xx 10^(-4)m^(2), are place...

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  2. What is photoelectric effect? State it laws?

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  3. What is photoelectric effect? State it laws?

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  4. State the four laws of photoelectric emission.

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  5. Explain the effect of increase of intensity of incident radiation on p...

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  6. With refrernece to the photoelectric effect,define the terms 'work fun...

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  7. With refrernece to the photoelectric effect,define the terms 'work fun...

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  8. What is phtotelecric effect?Explain the effect of increase of frequen...

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  9. What is phtotelecric effect?Explain the effect of increase of intensi...

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  10. Explain 'stopping potential' and 'threshold frequency' in photoelectri...

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  11. Plot a graph showing the variation of photoelectric current with anode...

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  12. Does the stopping potential in photoelectric emissiondepend upon the i...

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  13. Does the stopping potential in photoelectric emissiondepend upon the f...

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  14. In a plot of photoelectric current versus anode potential how does The...

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  15. In a plot of photoelectric current versus anode potential how does the...

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  16. In a plot of photoelectric current versus anode potential how does pho...

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  17. Define the term threshold frequency and stopping potential in relation...

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  18. Define the term threshold frequency and stopping potential in relation...

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  19. State the dependence of work function on kinetic energy of electrons e...

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  20. Explain 'stopping potential' and 'threshold frequency' in photoelectri...

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  21. Explain briefly, how classical theory could not explain the phenomenon...

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