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In photoelectric effect, the kinetic energy of photoelectrons increases linearly with the:

1. Wavelength of incident light
2. Frequency of incident light
3. Velocity of incident light
4. Atomic mass of an element

Subtopic:  Photo Electric Effect |
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Slope of V0 vs v curve is (where V0=stopping potential, v=subjected frequency)

1.  e

2.  he

3.  ϕ

4.  h

Subtopic:  Photo Electric Effect |
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What is the nature of the graph between the kinetic energy of photoelectrons ejected and the frequency of the incident radiation, based on Einstein's photoelectric equation?
 

1.
2.
3.
4.
Subtopic:  Photo Electric Effect |
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The photoelectric emission from a surface starts only when the light incident upon the surface has a certain minimum:

1. Intensity 2. Wavelength
3. Frequency 4. Velocity
Subtopic:  Photo Electric Effect |
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If λ0 and λ be the threshold wavelength and the wavelength of incident light, the velocity of photo-electrons ejected from the metal surface is:

1.  2hmλ0-λ

2.  2hcmλ0-λ

3.  2hcmλ0-λλλ0

4.  2hm1λ0-1λ

Subtopic:  Photo Electric Effect | Bohr's Theory |
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The ratio of slopes of Kmaxvs.vandV0vs.v curves in photoelectric effect gives -

(v=frequency, Kmax=maximum kinetic energy, V0 stopping potential):

1.  Charge of electron

2.  Planck's constant

3.  Work function

4.  The ratio of Planck's constant of electronic charge

Subtopic:  Photo Electric Effect |
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 The largest de Broglie wavelength among the following (all have equal velocity) is: 

1.  CO2 molecule

2.  NH3 molecule

3.  Electron

4.  Proton

Subtopic:  De Broglie Equation |
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 Von two particles A and B are plotted against de-Broglie wavelengths. Where V is the potential on the particles. Which of the following relation is correct about the mass of particles?

                             

1.  mA=mB

2.  mA>mB

3.  mA<mB

4.  mAmB

Subtopic:  De Broglie Equation |
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Identify the graph that correctly depicts the variation of momentum with the de-Broglie wavelength of a particle. 

1. 2.
3. 4.
Subtopic:  De Broglie Equation |
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The excited state of an H atom emits a photon of wavelength λ and returns to the ground state. The principal quantum number of the excited state is given by:

1.  λRλR-1

2.  λRλR-1

3.  λRλR+1

4.  λR-1λR

Subtopic:  Quantum Numbers & Schrodinger Wave Equation |
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