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With what type of source of light are cylindrical wave fronts associated?
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What is the geometrical shape of the wavefront for:
- Light diverging from a point source?
- The pattern of wavefront of the light from a distant star intercepted by earth?
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Answer the following question briefly and to the point:
What is the phase difference between any two points lying on the same wavefront?
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What type of wavefronts are associated with a source infinity?
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Using Huygen’s wave theory of light, show that the angle of incidence is equal to the angle of reflection. Draw a neat and labelled diagram.
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What type of wavefronts are associated with a point source of light?
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Represent diagrammatically how the incident planar wavefronts of wavelength λ pass through an aperture of size d, when d is approximately equal to λ.
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Represent diagrammatically how the incident planar wavefronts of wavelength λ pass through an aperture of size d, when d is approximately equal to λ.
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An electrical bulb is marked 200V, 100W. Calculate the electrical resistance of its filament. If five such
bulbs are connected in series to a 200V supply, how much current will flow through them?
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In a conductor 6.25 × `10^16` electrons flow from its end A to B in 2 s. Find the current flowing through the conductor (e = 1.6 × `10^-19` C)
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What is meant by the drift speed of free electrons?
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Explain the following term:
Intrinsic semiconductor
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In Bohr’s model of the hydrogen atom, the radius of the first orbit of an electron is r0 . Then, the radius of the third orbit is:
a) `r_0/9`
b) `r_0`
c) `3r_0`
d) `9r_0`
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if `E_p` and `E_k` represent potential energy and kinetic energy respectively, of an orbital electron, then, according to B9hr's theory:
a)`E_k = -E_p"/"2`
b) `E_k = -E_p`
c) `E_k = -2E_p`
d) `E_k = 2E_p`
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On the basis of Bohr's theory, derive an expression for the radius of the nth orbit of an electron of the hydrogen atom.
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State any two Bohr’s postulates and write the energy value of the ground state of the hydrogen atom.
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In which of the following systems will the wavelength corresponding to n = 2 to n = 1 be minimum?
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According to Bohr, 'Angular momentum of an orbiting electron is quantized'. What is meant by this statement?
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If l3 and l2 represent angular momenta of an orbiting electron in III and II Bohr orbits respectively, then l3: l2 is :
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Calculate angular momentum of an electron in the third Bohr orbit of a hydrogen atom.
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