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Specific Heat Capacity depends on the way the heat is transferred and as such such is not a table property of the mattermaterial property.


The two major heat transfer processes are isobaric and isohoric which define:

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Both

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body--uriencoded--c_%7Bmp%7D
 and
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body--uriencoded--c_%7BmV%7D
 are characterising the properties of matter and  are material properties and properly tabulated for the vast majority of materials.


Specific Heat Capacity 

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bodyc_m
 relates to Volumetric Heat Capacity 
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bodyc_v
 and density of the matter 
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body\rho
 as:

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In many technical papers the "m" or "v"   index  index is omitted which leads to confusion between  Specific Heat Capacity 

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bodyc_vm
and Volumetric Heat Capacity 
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bodyc_v
.
The other confusion is made between Volumetric


For multiphase fluid in thermodynamic equilibrium the Specific Heat Capacity 

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bodyc_m
 is:

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anchor1
alignment

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left
c_m = \frac{\sum_\alpha s_\alpha \rho_\alpha c_{m \alpha}}{\sum_\alpha s_\alpha \rho_\alpha }

where

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bodys_\alpha

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body\alpha
-phase volume share, subjected to
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body\sum_{\alpha} s_\alpha = 1

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body\rho_\alpha

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body\alpha
-phase Fluid Density

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body--uriencoded--c_

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%7Bv \alpha%7D

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body\alpha
-phase Volumetric Heat Capacity

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See also

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Physics / Thermodynamics / Thermodynamic processHeat Transfer / Heat Capacity

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