A photoelectric surface is illuminated successively by the monochromatic light of wavelength λ and λ2. 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 surface of the mineral is :
[h=Plank’s constant, c=speed of light]

1. hc2λ

2. hcλ

3. 2hcλ

4. hc3λ

 

Subtopic:  Einstein's Photoelectric Equation |
 67%
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NEET - 2015

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Light of wavelength 500 nm is incident on metal with work function 2.28 eV. The de-Broglie wavelength of the emitted electron is :

1. <2.8×10-10m

2. <2.8×10-9m

3. 2.8×10-9m

4. 2.8×10-12m

Subtopic:  Einstein's Photoelectric Equation |
 55%
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NEET - 2015

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Light with an energy flux of 25 × 104 Wm–2 falls on a perfectly reflecting surface at normal incidence. If the surface area is 15 cm2, the average force exerted on the surface is :

1. 1.25×10-6N

2. 2.50×10-6N

3. 1.20×10-6N

4. 3.0×10-6N

Subtopic:  Properties of EM Waves |
 68%
From NCERT
AIPMT - 2014

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When the energy of the incident radiation is increased by 20%, the kinetic energy of the photoelectrons emitted from a metal surface increased from emitted 0.5 eV to 0.8eV. The work function of the metal is :

1. 0.65 eV

2. 1.0 eV

3. 1.3 eV

4. 1.5 eV

Subtopic:  Einstein's Photoelectric Equation |
 64%
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AIPMT - 2014

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If the kinetic energy of the particle is increased to 16 times its previous value, the percentage change in the de-Broglie wavelength of the particle is :

1. 25

2. 75

3. 60

4. 50

Subtopic:  De-broglie Wavelength |
 70%
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AIPMT - 2014

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For photoelectric emission from certain metal, the cut off frequency is ν. If radiation of frequency 2ν impinges on the metal plate the maximum possible velocity of the emitted electron will be (m is the electron mass) :
 

 

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The wavelength λe of an electron and λP of a photon of same energy E are related by :
1. λP ∝ λe
2. λP ∝  λe
3. λP ∝ 1 λe
4. λP ∝ λe2
Subtopic:  De-broglie Wavelength |
 55%
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AIPMT - 2013

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