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12th Standard Physics — Dual Nature of Radiation and Matter: Book Back Online Practice Test

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Q1
The wavelength \(\lambda_e\) of an electron and \(\lambda_p\) of a photon of same energy E are related by
Q2
In an electron microscope, the electrons are accelerated by a voltage of 14 kV. If the voltage is changed to 224 kV, then the de Broglie wavelength associated with the electrons would
Q3
The wave associated with a moving particle of mass \(3 \times 10^{-6}\) g has the same wavelength as an electron moving with a velocity \(6 \times 10^6\) m s\(^{-1}\). The velocity of the particle is
Q4
When a metallic surface is illuminated with radiation of wavelength \(\lambda\), the stopping potential is V. If the same surface is illuminated with radiation of wavelength \(2\lambda\), the stopping potential is \(V/4\). The threshold wavelength for the metallic surface is
Q5
If a light of wavelength 330 nm is incident on a metal with work function 3.55 eV, the electrons are emitted. Then the wavelength of the wave associated with the emitted electron is (Take h = \(6.6 \times 10^{-34}\) Js)
Q6
A photoelectric surface is illuminated successively by monochromatic light of wavelength \(\lambda\) and \(\lambda/2\). If the maximum kinetic energy of the emitted photoelectrons in the second case is 3 times that in the first case, the work function of the material is
Q7
In photoelectric emission, a radiation whose frequency is 4 times threshold frequency of a certain metal is incident on the metal. Then the maximum possible velocity of the emitted electron will be
Q8
Two radiations with photon energies 0.9 eV and 3.3 eV respectively are falling on a metallic surface successively. If the work function of the metal is 0.6 eV, then the ratio of maximum speeds of emitted electrons in the two cases will be
Q9
A light source of wavelength 520 nm emits \(1.04 \times 10^{15}\) photons per second while the second source of 460 nm produces \(1.38 \times 10^{15}\) photons per second. Then the ratio of power of second source to that of first source is
Q10
The threshold wavelength for a surface \(\lambda_0\) is 6000 Å. The maximum kinetic energy of photoelectrons emitted by radiation of wavelength 4000 Å is
Q11
When a photon of energy 7 eV is incident on a metal surface, the maximum kinetic energy of photoelectron is 4 eV. The stopping potential is
Q12
If the energy of the photon is increased by a factor of 4, then its momentum is increased by a factor of
Q13
Photons of wavelength \(\lambda\) are incident on a metal. The most energetic electrons ejected from the metal are bent into a circular arc of radius R by a perpendicular magnetic field having magnitude B. The work function of the metal is
Q14
The work functions for metals A, B and C are 1.92 eV, 2.0 eV and 5.0 eV respectively. The metal/metals which will emit photoelectrons for a radiation of wavelength 4100 Å is/are
Q15
Emission of electrons by the absorption of heat energy is called.........emission.

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Book Back Questions15 textbook MCQs · solved Additional MCQs15 extra MCQs · solved Practice TestInteractive · instant score Additional MCQ TestTest yourself on the extra set Study NotesConcepts & methods Formula SheetAll key formulas

About this Dual Nature of Radiation and Matter test

This free online practice test covers Dual Nature of Radiation and Matter from the 12th Standard Physics (Samacheer Kalvi) syllabus. Choose the number of questions and an optional time limit, then answer and submit — everything is checked in your browser, with the correct answers and a worked explanation shown at the end. For the full solutions to every question in this set, see the solved MCQs page.

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