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Fix broken link for notebooks
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example/DoublePendulum/README.md

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we train the model with the famous dataset provided by IBM.
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The equation of motion to the real experiments of double pendulum is learned by a two-dimensional Fourier neural operator.
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It learns to inference the next 30 steps with the given first 30 steps.
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The result of this example can be found [here](https://foldfelis.github.io/NeuralOperators.jl/dev/assets/notebook/double_pendulum.jl.html).
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The result of this example can be found [here](https://neuraloperators.sciml.ai/dev/assets/notebook/double_pendulum.jl.html).
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![](gallery/result.gif)
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example/FlowOverCircle/README.md

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# Flow over the circle
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The time dependent Navier-Stokes equation is learned by the `MarkovNeuralOperator` with only one time step information.
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The result of this example can be found [here](https://foldfelis.github.io/NeuralOperators.jl/dev/assets/notebook/mno.jl.html).
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The result of this example can be found [here](https://neuraloperators.sciml.ai/dev/assets/notebook/mno.jl.html).
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| **Ground Truth** | **Inferenced** |
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|:----------------:|:--------------:|

example/SuperResolution/README.md

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# Super Resolution
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The time dependent Navier-Stokes equation is learned by the `MarkovNeuralOperator` with only one time step information.
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The result of this example can be found [here](https://foldfelis.github.io/NeuralOperators.jl/dev/assets/notebook/super_resolution_mno.jl.html).
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The result of this example can be found [here](https://neuraloperators.sciml.ai/dev/assets/notebook/super_resolution_mno.jl.html).
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Apart from just training a MNO, here, we train the model with lower resolution (96x64) and inference result with higher resolution (192x128).
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