Comments (4)
Hey, thanks for trying out FeOs. You are right, the text above the input statements is out of date. The Contributions
object can be imported from the feos.eos
module, i.e. from feos.eos import Contributions
should do the trick. I will update the documentation.
In the notebook, however, we use from feos.eos import *
. You should be able to run the whole notebook as is. Are you using this notebook?
from feos.
@g-bauer extremely thanks. Will you be updating notebooks in git as per latest API ...it means a lot for new users
from feos.
I will fix the text. Does the notebook work properly? On my machine with the latest version of FeOs it does. Also, you can always check the Python API here. And this is the link to the feos.eos
module where the Contributions
object is exported.
from feos.
@g-bauer Yes it works properly. Extremely thanks
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Related Issues (20)
- Theory guide: association
- The specific heat capacity of an ideal gas HOT 5
- Can I use this package to calculate the critical points of binary mixture? HOT 12
- Performance improvements
- Phase equilibria in pores HOT 1
- Example on how to optimize parameters (m, sigma, epsilon_k) of PC-SAFT HOT 2
- Allow specification of phase in `DataSet` for dynamic properties for states that are generated for T,p HOT 1
- Check gc_pcsaft_functional notebook
- Non integer number of segments for the homosegmented GC-PC-SAFT HOT 2
- Helping bubble points and dew points at given pressure to converge HOT 2
- PC-SAFT extensions on README
- How to obtain the pressure of dispersive term and that of repulsive term HOT 3
- Can I use feos to plot pressure-density diagram of binary mixture? HOT 5
- `Parameter::from_multiple_json` fails when components exist in multiple files
- Adjust Joback parameters to work with new ideal gas treatment
- Improve `Estimator` and `DataSet` objects
- Polarizable models? HOT 2
- Question regarding the calculation of the ideal gas molar entropy HOT 2
- cutoff_radius limit not necessary in structured (periodic) porous media? HOT 1
- Output the fraction of non-bonded association sites HOT 2
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