Comments (9)
Now I also see
"ModuleNotFoundError: No module named 'skfem'"
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How did you launch? there is a launch button at the top
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But you are right, it fails
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Yes, it fails here and then I tried in Google Colab platform where the above errors mentioned came up. Any idea how to get around? Thanks
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why not install it and run locally?
these free compute instances are pretty weak anyway
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@sherijahan it should be fixed now :)
For colab you probably need to execute once "!apt install gmsh" to fix that error (that should install the missing library and some others which are also missing)
But I agree with @joamatab , the server for the live-examples has only limited computing power and is intended for playing a bit with the examples to understand them better, so if precision is required, either running it locally or on stronger cloud services is advisable.
Could you check if it's working for you, too? Thanks!
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@sherijahan is it now working for you?
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Hi @HelgeGehring sorry for going MIA. Just checked. Yes it works for both the live launch and google collab for me. Thank you for the solutions.
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Yay, thanks for confirming :)
I'll close this issue!
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Related Issues (20)
- Calculation of effective mode area or nonlinear coefficent HOT 13
- efficient wide sweeps for waveguide dispersion HOT 2
- mode solver neff jumps HOT 6
- treating quasi-TE mode in overlap with the mode of an optical fiber HOT 1
- Capillary waveguide help HOT 14
- incorrect neff in long wavelength HOT 10
- Calculation of effective area for Spontaneous Four-wave Mixing (SFWM) HOT 3
- Possible issue with modes / overlap integrals in complex systems HOT 1
- Example to reproduce
- Add symmetry planes for simulation to filter TE and TM for optics, or even and odd modes for RF HOT 3
- Boundary conditions: TE-mode / TM-mode
- Giving an initial solution to the solver (thermal and electrostatic sims) HOT 1
- Anisotropic materials HOT 13
- Bibliography file is a bit messy
- References in docs can contain both URL and doi HOT 2
- Maximum number of iterations taken when calling eigen solver from Arpack HOT 2
- plotting Waveguide mode components HOT 2
- Windows installation of femwell HOT 3
- How to Install the Julia version of femwell HOT 6
- Adjust propagation loss example to paper
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