Home
Class 11
CHEMISTRY
Calculate the momentum of a particle whi...

Calculate the momentum of a particle which has a de Broglie wavelength of `2 Å,(h = 6.6 xx 10^(-34) kg m^(2) s^(-1))`

Text Solution

Verified by Experts

Momentum `=(h)/(lamda)` (using de Broglie equation)
`=(6.6xx10^(-34))/(2.5xx10^(-10))`
`=2.64xx10^(-24)kg" m "sec^(-1)`
Promotional Banner

Topper's Solved these Questions

  • ATOMIC STRUCTURE

    OP TANDON|Exercise Some Solved Examples|12 Videos
  • ATOMIC STRUCTURE

    OP TANDON|Exercise Miscellaneous Numerical Examples|12 Videos
  • ATOMIC STRUCTURE

    OP TANDON|Exercise Illustrations of Objective Question|33 Videos
  • AROMATIC HYDROCARBONS (ARENES)

    OP TANDON|Exercise EXAMPLES|24 Videos
  • CHARACTERISATION OF ORGANIC COMPOUNDS

    OP TANDON|Exercise Passage-2|5 Videos

Similar Questions

Explore conceptually related problems

Calculate the momentum of a particle which has a de Broglie wavelength of 10 nm

Calculate the momentum of a particle which has de Broglie wavelength of 0.1 nm.

The momentum of a particle which has a de Broglie wavelength of 2.5 xx 10^-10 m is.

Calculate the momentum of a particle which has de Broglie wavelength of 2.5xx10^(-10)m .

The momentum of a particle having de-Broglie wavelength of 6 Å

The momentum of a paricle which has a d-Broglie wavelength of 0.1 nm is ( h= 6.6 xx10^(-34) J s)

Calculate the momentum of the particle which has de Broglie wavelength 1"Ã…"(10^(-10)m) and h=6.6xx10^(-34)J-sec .

The momentum of a particle associated with de-Broglie's wavelength of 6 Å is

The momentum of a particle having a de-Broglie wavelength of 10^(17) m is (Given, h=6.625xx10^(-34)m )