The de-Broglie wavelength L associated with an elementary particle of linear momentum p is best represented by the graph:

1. 

2. 

3. 

4. 

Subtopic:  De-broglie Wavelength |
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An electron of mass m, when accelerated through a potential difference, has de-Broglie wavelength λ .The de-Broglie wavelength associated with a proton of mass M accelerated through the same potential difference will be:

1. λmM

2. λmM

3. λMm

4. λMm

Subtopic:  De-broglie Wavelength |
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An electron (mass m) with an initial velocity v=v0i^ is in an electric E=Eoj^. If λ0=h/mv0, its de-Broglie wavelength at time t is given by

1. λ0

2. λ01+e2E02t2m2v02

3. λ01+e2E20t2m2v20

4. λ01+e2E20t2m2v20

Subtopic:  De-broglie Wavelength |
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What should be the velocity of an electron so that its momentum becomes equal to that of a photon of wavelength 5200 A0?

1. 103 ms-1

2. 1.2×103 ms-1

3. 1.4×103 ms-1

4. 2.8×103 ms-1

Subtopic:  De-broglie Wavelength |
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An electron and photon have the same wavelength. If E is the energy of photon and  p is the momentum of the electron, then the magnitude of Ep in SI unit is:

1. 3.33×10-9

2. 3.0×108

3. 1.1×10-19

4. 9×1016

Subtopic:  Particle Nature of Light |
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The difference between kinetic energies of photoelectrons emitted from a surface by light of wavelength 2500 A0 and 500 A0 will be

1. 1.61 J

2. 2.47 J

3. 3.96 J

4. 3.9×10-19 J

Subtopic:  Einstein's Photoelectric Equation |
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When a point source of light is 1 m away from a photoelectric cell, the photoelectric current is found to be I mA. If the same source is placed at 4 m from the same photoelectric cells, the photoelectric current (in mA) will be:

1. I16

2. I4

3. 4I

4. 16 I
 

Subtopic:  Photoelectric Effect: Experiment |
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The work function of tungsten and sodium is 4.5 eV and 2.3 eV respectively. If the threshold wavelength λ for sodium is 5460 A0, the value of λ for tungsten is:
 

1. 2791 A0

2. 3260 A0

3. 1925 A0

.4 1000 A0

Subtopic:  Electron Emission |
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A photon of energy E ejects a photoelectrons from a metal surface whose work function is W0. If this electron enters into a uniform magnetic field of induction B in a direction perpendicular to the field and describes a circular path of radius r, then the radius r is, given by:

1. 2m (W0-E)eB

2. 2e (E-W0)mB

3. 2m (E-W0)eB

4. 2mW0eB

Subtopic:  Einstein's Photoelectric Equation |
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A metal surface of work function 1.07 eV is irradiated with light of wavelength 332 nm. The retarding potential required to stop the escape of photoelectrons is:

1. 1.07 V

2. 2.66 V

3. 3.7 V

4. 4.81 V

Subtopic:  Einstein's Photoelectric Equation |
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