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>> No.11421965 [View]
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11421965

>>11421729
>a
[math] \Delta h\approx c_p\Delta T [/math]
>b
The heat transferred at constant pressure IS the change in enthalpy, by definition.
>c
[math] \dot{Q}=\dot{m}\Delta h [/math]
>d
[math] \nu=RT/P [/math]
>e
[math] A=\dot{m}/\rho v =\dot{m}\nu/v [/math]
>>11421871
I don't think it is, is it?
>>11421877
>>11421901
You really have to be more specific. What are you measuring, exactly?

>> No.11421928 [DELETED]  [View]
File: 1.09 MB, 536x818, pinky3'.png [View same] [iqdb] [saucenao] [google]
11421928

>>11421729
>a
[math]\Delta h\approx c_p\Delta T[/math]
>b
The heat transferred to the air IS its change in enthalpy
>c
[math] \dot{Q}=\dot{m}\Delta h [/math]
>d
[math] \nu=RT/P [/math]
>e
[math] A=\frac{\dot{m}}{\rho v}=\frac{\dot{m} \nu}{v} [/math]
>>11421877
What are you timing? You really have to be more specific.
>>11421871
>an Euler-Cauchy equation is a linear, homogeneous, ordinary differential equation with variable coefficients
[math] xy''+y'=0 [/math] satisfies all that.

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