Question

The expression for the number of molecules in a Maxwellian gas having speeds in the range v to v + dv is

dN_{v}= 4pi Nleft ( frac{m}{2pi k_{B}T}ight )^{3/2} V^{2}expleft [ frac{mv^2}{2k_{B}T} dv ight ]

Using this relation, obtain an expression for most probable speed.

30 Aug 2021
Answer :
Word Count : 449

The expression for the number of molecules in a Maxwellian gas having speeds in

 

The range v to v + dv is

 

 

 

dNV=4(3.14)N((M/(2(3.14)kBT))3/2 V2 exp[-(mv2/2kBT)]dV)

 

 

 

Using this ___ _____ ___ _________ __________ ____ _____ _____ ______ _________ ________ _____.
___ ________ _____ ________ ________ ________ ______ __________ ___ ________ ___.
_______ __________ ____ __________ ________ ____ ____ __________ ____.
________ __________ _______ _____ ______ _____ ___ ___.
________ ______ __________ ______ _________ ______.
_________ _________ _____ _____ ______ ____ ________ ______.
_____ ______ ______ ____ ____ _______ ___ _____ _______ ________ ___ ________.
_________ ____ _________ ______ __________ __________ ______ ________ __________ ________.
__________ _____ ______ ________ ________ _____ _____ ________ _______ ______ _______.
_______ _____ _________ _________ ________ _________.
____ ______ ____ __________ ___.
____ __________ _________ ______ _________ _____ ___ ______.
_______ ____ ___ ________ __________ ______ _________ ________ _________.
______ __________ _____ ___ _______ ____ ____ ___ ____.
______ _________ ________ ______ __________ __________ _______.
__________ ______ __________ ___ _________ _____ _____ _________ ____ ________ _______.
_____ __________ __________ ___ _______ ______ _______.
___ _________ ____ ________ __________ _____ _________ ________ ___ ____ ________.
____ __________ _______ ____ _______ _______ __________.
____ ____ ___ _______ ________ ______ ________ ___.
____ _____ _________ _________ __________ _________ ____.
________ ____ _________ ____ ___ ___ ________ ___ ________ _______ _______ ____.
__________ _________ ______ ____ ______ ______ ________ __________ _____.
________ ___ _________ ______ __________ _______ ______ ___.
_____ _________ ____ _______ ______ ______ ________ __________.
__________ ________ __________ ____ ________ ____ ______ __________ _____ ___.
_____ __________ _____ _________ ____ ___ ______ ________.
__________ __________ ____ ______ ____.
________ ______ _________ _____ _______ ___ ______.
________ _____ ___ ___ _____ ___ ___ ________ ____.
______ ______ ______ ________ ___ ______ ____ _______.
_____ ________ ________ __________ ________ _______ ___ ________.
_____ ________ _________ __________ ____ _____ _______ _______ ________ ____ _________ ____.
__________ _________ _______ __________ ___.
_____ ____ ____ ______ ____ _________ _____.
____ _______ _________ __________ ________ _______ ________ ___ __________ ________.
______ ___ __________ __________ _____ ____ _______ ___ _____ ______ ___ _________.
_________ ___ __________ ________ ________.
_____ ______ ____ ______ __________ ____ _________ _________.
_________ _________ _______ ___ ___ __________ ______ __________ _____ _________ __________ _____.
_____ _____ __________ _______ _______ ________.
_____ ___ ____ __________ ____ _________ ________ _________ ________.
Get Full Answer on WhatsApp

IGNOU NEWS
Assignment Submission Last Date Extended Till 30 June 2026 Click Here★★★IGNOU June 2026 TEE Date Sheet Released Click Here★★★
Top
📞
Call Support Instant phone assistance The expression for the number of molecules in a Maxwellian gas having
🟢
WhatsApp Chat Fast live messaging
Email Us Business enquiries & support