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A particle of mass 1mg has the same wave...

A particle of mass `1mg` has the same wavelength as an electron moving with a velocity of `3 xx 10^(6) ms^(-1)`. The velocity of the particle is (mass of electron = `9.1 xx 10^(-31)` kg)

A

`3xx10^(-31)ms^(-1)`

B

`2.7xx10^(-21)ms^(-1)`

C

`2.7xx10^(-18)ms^(-1)`

D

`9xx10^(-2)ms^(-1)`

Text Solution

Verified by Experts

The correct Answer is:
C

de-Broglie wavelength associated with electron moving with velocity v,
`lambda=(h)/(mv)`
So, `lambda_(e)=(h)/(9.1xx10^(-31)xx3xx10^(6))`
Wavelength of particle of mass 1 mg moving with velocity v.
`lambda_(p)=(h)/(10^(-3)xxv)`
As given, `lambda_(e)=lambda_(p)`
`rArr (h)/(10^(-3)xxv)=(h)/(9.1xx10^(-31)xx3xx10^(6))`
`v=(27.3xx10^(25))/(10^(-3))m//s=2.73xx10^(-21)m//s`
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