Home
Class 12
PHYSICS
When a particle is restricted to move al...

When a particle is restricted to move along x-axis between `x=0` and `x=a`, where `alpha` if of nenometer dimension, its energy can take only certain specific values. The allowed energies of the particle moving in such a restricted region, correspond to the formation of standing waves with nodes at its ends `x=0` and `x=a`. The wavelength of this standing wave is related to the linear momentum p of the particle according to the de Broglie relation. The energy of the particle of mass m is related to its linear momentum as `E=(p^2)/(2m)`. Thus the energy of the particle can be denoted by a quantum number `n` taking values 1,2,3, ...(`n=1`, called the ground state) corresponding to the number of loops in the standing wave.
Use the model described above to answer the following three questions for a particle moving along the line from `x=0` to `x=alpha`. Take `h=6.6xx10^(-34)Js` and `e=1.6xx10^(-19)`C
Q. The speed of the particle that can take discrete values is proportional to

A

`n^(-32)`

B

`n^(-1)`

C

`n^(1//2)`

D

`n`

Text Solution

Verified by Experts

The correct Answer is:
D

`P = (n h)/(2a) = m v`
`rArr v prop n`
Promotional Banner

Topper's Solved these Questions

  • ATOMIC PHYSICS

    RESONANCE ENGLISH|Exercise Advanved level problems|17 Videos
  • ATOMIC PHYSICS

    RESONANCE ENGLISH|Exercise Exercise-2 Part-III : Comprehension|12 Videos
  • ALTERNATING CURRENT

    RESONANCE ENGLISH|Exercise HIGH LEVEL PROBLEMS|11 Videos
  • CAPACITANCE

    RESONANCE ENGLISH|Exercise High Level Problems|16 Videos

Similar Questions

Explore conceptually related problems

When a particle is restricted to move along x-axis between x=0 and x=a , where alpha if of nenometer dimension, its energy can take only certain specific values. The allowed energies of the particle moving in such a restricted region, correspond to the formation of standing waves with nodes at its ends x=0 and x=a . The wavelength of this standing wave is related to the linear momentum p of the particle according to the de Broglie relation. The energy of the particle of mass m is related to its linear momentum as E=(p^2)/(2m) . Thus the energy of the particle can be denoted by a quantum number n taking values 1,2,3, ...( n=1 , called the ground state) corresponding to the number of loops in the standing wave. Use the model described above to answer the following three questions for a particle moving along the line from x=0 to x=alpha . Take h=6.6xx10^(-34)Js and e=1.6xx10^(-19) C. Q. The allowed energy for the particle for a particular value of n is proportional to

When a particle is restricted to move along x-axis between x=0 and x=a , where alpha if of nenometer dimension, its energy can take only certain specific values. The allowed energies of the particle moving in such a restricted region, correspond to the formation of standing waves with nodes at its ends x=0 and x=a . The wavelength of this standing wave is related to the linear momentum p of the particle according to the de Broglie relation. The energy of the particle of mass m is related to its linear momentum as E=(p^2)/(2m) . Thus the energy of the particle can be denoted by a quantum number n taking values 1,2,3, ...( n=1 , called the ground state) corresponding to the number of loops in the standing wave. Use the model described above to answer the following three questions for a particle moving along the line from x=0 to x=alpha . Take h=6.6xx10^(-34)Js and e=1.6xx10^(-19) C. Q. If the mass of the particle is m=1.0xx10^(-30) kg and alpha=6.6nm , the energy of the particle in its ground state is closest to

If the linear momentum of a prticle is known can you find its kinetic energy? If the kinetic energy of a particle is known can you find its linear momentum?

When the linear momentum of a particle is increased by 1% its kinetic energy increases by x%. When the kinetic energy of the particle is increased by 300%, its linear momentum increases by y%. The ratio of y to x is

What is the relation between wavelength and momentum of moving particles ?

For a particle moving along x- axis, speed must be increasing for the following graph :

Derive the relation between the wavelength (lambda) of the de broglie wave and kinetic energy (E ) of a moving particle

For a particle moving along the x-axis, mark the correct statement(s).

A particle with total energy E is moving in a potential energy region U(x). Motion of the particle is restricted to the region when

The kinetic energy of a particle of mass m moving with speed v is given by K=(1)/(2)mv^(2) . If the kinetic energy of a particle moving along x-axis varies with x as K(x)=9-x^(2) , then The region in which particle lies is :

RESONANCE ENGLISH-ATOMIC PHYSICS-Exercise -3 part -I JEE (Advanced)
  1. When a particle is restricted to move along x-axis between x=0 and x=a...

    Text Solution

    |

  2. When a particle is restricted to move along x-axis between x=0 and x=a...

    Text Solution

    |

  3. When a particle is restricted to move along x-axis between x=0 and x=a...

    Text Solution

    |

  4. Photoelectric effect experiments are performed using three different m...

    Text Solution

    |

  5. An alpha particle and a proton are accelerated from rest by a potentia...

    Text Solution

    |

  6. The key feature of Bohr's spectrum of hydrogen atom is the quantizatio...

    Text Solution

    |

  7. The key feature of Bohr's theory of spectrum of hydrogen atom is the q...

    Text Solution

    |

  8. The key feature of Bohr's theory of spectrum of hydrogen atom is the q...

    Text Solution

    |

  9. if the wavelength of the first line of the balmer series of hydrogen i...

    Text Solution

    |

  10. A dence collection of equal number of electrona and positive ions is ...

    Text Solution

    |

  11. A dence collection of equal number of electrona and positive ions is ...

    Text Solution

    |

  12. A silver sphere of radius 1 cm and work function 4.7 eV is suspended f...

    Text Solution

    |

  13. A pulse of light of duration 100 ns is absorbed completely by a small ...

    Text Solution

    |

  14. The work function of Silver and sodium are 4.6 and 2.3 eV, respective...

    Text Solution

    |

  15. The radius of the orbit of an electron in Hydrogen-like aton is 4.5 al...

    Text Solution

    |

  16. if lambda(Cu) is the wavelength of Kalpha, X-ray line fo copper (atomi...

    Text Solution

    |

  17. A metal surface is illuminated by light of two different wavelengths 2...

    Text Solution

    |

  18. Consider a hydrogen atom with its electron in the n^(th) orbital An el...

    Text Solution

    |

  19. For photo - electric effect with incident photon wavelength lambda the...

    Text Solution

    |

  20. An electron is an excited state of Li^(2 + )ion has angular momentum 3...

    Text Solution

    |