Examveda
Examveda

The superheated vapour region, in a pressure enthalpy chart, is represented by the space

A. To the left of saturated liquid line

B. To the right of saturated liquid line

C. Between the saturated liquid line and saturated vapour line

D. None of the above

Answer: Option C

Solution(By Examveda Team)


The superheated vapour region, in a pressure enthalpy chart, is represented by the space Between the saturated liquid line and saturated vapour line

Join The Discussion

Comments ( 8 )

  1. Dr. Akash
    Dr. Akash :
    4 months ago

    Right of saturated vapour line

  2. Chinga Jess
    Chinga Jess :
    3 years ago

    It must be at the right side of saturated vapour line.

  3. Aabid Majeed
    Aabid Majeed :
    3 years ago

    Don't use copy paste ....
    It should be saturated vapour line ....
    Between saturated liquid and saturated vapour lines is wet region......
    So D is right.....

  4. Shehbaz Syed
    Shehbaz Syed :
    4 years ago

    To the right of saturated vapour line , is the correct answer.....

    D

  5. Muhammad Sumair
    Muhammad Sumair :
    4 years ago

    Between the saturated liquid line and saturated vapor line is WET region not superheated region. Superheated region lies to the right of saturated vapor lines

  6. YASHVIR YADAV
    YASHVIR YADAV :
    5 years ago

    it must be right side of saturated vapour line

  7. Jignesh Barot
    Jignesh Barot :
    5 years ago

    The right answer is D. The Super heated region in pressure-enthalpy chart is at right of the saturated vspor line.

  8. Ramesh Kori
    Ramesh Kori :
    5 years ago

    Correct answer is D
    It is Right to saturated vapour line

Related Questions on Refrigeration and Air Conditioning

Nusselt number (NN) is given by

A. $${{\text{N}}_{\text{N}}} = \frac{{{\text{h}}l}}{{\text{k}}}$$

B. $${{\text{N}}_{\text{N}}} = \frac{{\mu {{\text{c}}_{\text{p}}}}}{{\text{k}}}$$

C. $${{\text{N}}_{\text{N}}} = \frac{{\rho {\text{V}}l}}{\mu }$$

D. $${{\text{N}}_{\text{N}}} = \frac{{{{\text{V}}^2}}}{{{\text{t}}{{\text{c}}_{\text{p}}}}}$$