Q#3 (a) Work function of the Aluminum is 4.08 eV. I. What is the threshold frequency required to produce photoelectrons from aluminum? II. Classify electromagnetic radiations that can produce photoelectrons. III. If light of frequency 4 x 1015 Hz is used to illuminate a piece of aluminum, then what is the maximum energy and spe ed of emitted photoelectrons?

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Chapter1: Units, Trigonometry. And Vectors
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(b) Derive Rutherford scattering formula of alpha radiations from a gold foil on the basis of nuclear model of
atom. Why did planetary model of atom fail?
(c) What are the short comes in Rayleigh formula for the explanation of energy distribution in blackbody
radiations? Derive Planck's radiation formula from Rayleigh formula and express it in terms of wavelength.
Q#3 (a) Work function of the Aluminum is 4.08 eV.
I.
What is the threshold frequency required to produce photoelectrons from aluminum?
II.
Classify electromagnetic radiations that can produce photoelectrons.
III.
If light of frequency 4 x 1015 Hz is used to illuminate a piece of aluminum, then what is the maximum
energy and speed of emitted photoelectrons?
IV.
If the light described in part (ii) is increased by a factor of 2 in intensity, what would happen to the
maximum kinetic energy of photoelectrons?
f200 V What is the de
Transcribed Image Text:(b) Derive Rutherford scattering formula of alpha radiations from a gold foil on the basis of nuclear model of atom. Why did planetary model of atom fail? (c) What are the short comes in Rayleigh formula for the explanation of energy distribution in blackbody radiations? Derive Planck's radiation formula from Rayleigh formula and express it in terms of wavelength. Q#3 (a) Work function of the Aluminum is 4.08 eV. I. What is the threshold frequency required to produce photoelectrons from aluminum? II. Classify electromagnetic radiations that can produce photoelectrons. III. If light of frequency 4 x 1015 Hz is used to illuminate a piece of aluminum, then what is the maximum energy and speed of emitted photoelectrons? IV. If the light described in part (ii) is increased by a factor of 2 in intensity, what would happen to the maximum kinetic energy of photoelectrons? f200 V What is the de
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