English

According to De-Broglie, the waves are associated with ______ - Physics

Advertisements
Advertisements

Question

According to De-Broglie, the waves are associated with ______ 

Options

  • moving neutral particles only.

  • moving charged particle only.

  • electrons only

  • all moving matter particles

MCQ
Fill in the Blanks
Advertisements

Solution

According to De-Broglie, the waves are associated with all moving matter particles.

shaalaa.com
  Is there an error in this question or solution?
Chapter 14: Dual Nature Of Radiation And Matter - MCQ’S

APPEARS IN

SCERT Maharashtra Physics [English] 12 Standard HSC
Chapter 14 Dual Nature Of Radiation And Matter
MCQ’S | Q 4

RELATED QUESTIONS

An electron, a proton, an α-particle, and a hydrogen atom are moving with the same kinetic energy. The associated de Broglie wavelength will be longest for ______.


State the importance of Davisson and Germer experiment.


Explain what you understand by the de Broglie wavelength of an electron. Will an electron at rest have an associated de Broglie wavelength? Justify your answer.


Two particles have the same de Broglie wavelength and one is moving four times as fast as the other. If the slower particle is an α-particle, what are the possibilities for the other particle?


Find the ratio of the de Broglie wavelengths of an electron and a proton when both are moving with the (a) same speed, (b) the same kinetic energy, and (c) the same momentum. State which of the two will have a longer wavelength in each case.


An electron is accelerated through a potential of 120 V. Find its de Broglie wavelength.


Calculate De Broglie's wavelength of the bullet moving with speed 90m/sec and having a mass of 5 gm. 


Explain De Broglie’s Hypothesis.


The momentum of a photon of energy 1 MeV in kg m/s will be ______


The de Broglie wavelength associated with photon is, ____________.


If the radius of the innermost Bohr orbit is 0.53 Å, the radius of the 4th orbit is ______


According to de-Broglie hypothesis, the wavelength associated with moving electron of mass 'm' is 'λe'· Using mass energy relation and Planck's quantum theory, the wavelength associated with photon is  'λp'. If the energy (E) of electron and photon is same then relation between 'λe' and 'λp' is ______.


What is the momentum of a photon having frequency 1.5 x 1013 Hz?


A particle of charge q, mass m and energy E has de-Broglie wavelength `lambda.` For a particle of charge 2q, mass 2m and energy 2E, the de-Broglie wavelength is ____________.


How much energy is imparted to an electron so that its de-Broglie wavelength reduces from 10-10 m to 0.5 × 10-10 m? (E =energy of electron)


The wavelength '`lambda`' of a photon and de-Broglie wavelength of an electron have same value. The ratio of energy of a photon to kinetic energy of electron is (m = mass of electron, c = velocity of light, h = Planck's constant) ____________.


If '`lambda_1`' and '`lambda_2`' are de-Broglie wavelengths for electrons in first and second Bohr orbits in hydrogen atom, then the ratio '`lambda_2`' to '`lambda_1`' is (E1 = -13.6 eV) ____________.


Graph shows the variation of de-Broglie wavelength `(lambda)` versus `1/sqrt"V"`, where 'V' is the accelerating potential for four particles carrying same charge but of masses m1 , m2, m3, m4. Which particle has a smaller mass?


If the potential difference used to accelerate electrons is doubled, by what factor does the de-Broglie wavelength associated with the electrons change?


According to de-Broglie hypothesis, the ratio of wavelength of an electron and that of photon having same energy 'E' is (m = mass of electron, c = velocity of light) ____________.


Explain de-Broglie wavelength.


The energy of an electron having de-Broglie wavelength `λ` is ______.

(h = Plank's constant, m = mass of electron)


Calculate the de Broglie wavelength associated with an electron moving with a speed of `5 xx 10^6` m/s. `(m_e = 9.1 xx 10^(-31)kg)`


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×