Finding h2 Using Steam Tables and Enthalpy Equations

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To calculate h2 for the piston problem, start by using the steam tables to find the corresponding values for h2 based on the known h1. The equation h2 = hf2 + (x2 * hfg) can be applied, where hf2 and hfg are obtained from the steam tables. Additionally, the relationship w = h1 - h2 may assist in determining h2 if work done is known. Drawing P-V and T-S diagrams can provide further clarity on the process. Completing the problem statement would enhance the ability to provide precise guidance.
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Hello again...i was wondering if you can help?

I am using enthalpy equations to try and find h1 and h2 to work out 'work and heat transfers' for water, for a piston type question.

I have calculated work done using: [w = -PDV]

To find the heat transfer i need to use: [Q=m.(h2-h1)]

i have obtained h1 using: h1 = hf + x(hg-hf) (using steam tables)

This has been calculated at 1826 kg/m3, from a revision guide all it states to calculate h2 is:

''From the steam table using h1 find h2?''

This is the only piece of information i need to complete the heat transfer calculation (to find h2) can you help at all? I don't now how to find h2.

I know m = 0.15, and h1 is 1826kg/m3 and Q is 223 kj

But h2?!

Guidance on how to look this up would be appreciated.
 
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It would help if you could post the complete problem statement. For these types of problems, it usually helps to draw out the P-V and T-S diagrams. I suspect the equation relating enthalpy and work will help here, it should be somewhere in your text
 
Posting the whole question would have got the job done but anyway have you tried these formulas

h2=hf2+(x2hfg)
since hf2 can be found on the tables and hfg

or w=h1-h2
 

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