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small wording tweak in gallery.yml
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‎notebooks/gallery.yml‎

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summary: A minimum example to get started on Echopype functions.
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image: images/gallery/01_getting_started.png
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- name: OOI Eclipse Example
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- name: Watching Eclipse from a Moored Echosounder
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website: https://echopype-examples.readthedocs.io/en/latest/OOI_eclipse.html
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repository: https://github.com/OSOceanAcoustics/echopype-examples/blob/main/notebooks/OOI_eclipse.ipynb
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notebook: OOI_eclipse.ipynb
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summary: Not Binder Friendly. Pairing acoustic data from an upward-looking echosounder and shortwave irradiance measured by a pyrometer on a surface mooring to observe the movement response of zooplankton to a solar eclipse.
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summary: Pairing acoustic data from an upward-looking echosounder and shortwave irradiance measured by a pyrometer on a surface mooring to observe the movement response of zooplankton to a solar eclipse. (Not binder friendly.)
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image: images/gallery/02_OOI.png
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- name: Ship Tracks Visualisation
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website: https://echopype-examples.readthedocs.io/en/latest/ship_tracks.html
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repository: https://github.com/OSOceanAcoustics/echopype-examples/blob/main/notebooks/ship_tracks.ipynb
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notebook: ship_tracks.ipynb
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summary: Not Binder Friendly. Subselect sections of echo data based on ship GPS data embedded in the echosounder raw files to demonstrate the power of label-aware data processing based on standardized netCDF data model.
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summary: Subselect sections of echo data based on ship GPS data embedded in the echosounder raw files to demonstrate the power of label-aware data processing based on standardized netCDF data model. (Not binder friendly.)
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image: images/gallery/03_subselection.png
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- name: Krill Frequency Differencing
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website: https://echopype-examples.readthedocs.io/en/latest/krill_freq_diff.html
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repository: https://github.com/OSOceanAcoustics/echopype-examples/blob/main/notebooks/krill_freq_diff.ipynb
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notebook: krill_freq_diff.ipynb
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summary: Not Binder Friendly. Perform frequency-differencing analysis to identify fluid-like zooplankton scatterers (likely krill) in ship echosounder data, and compute nautical acoustic scattering coefficient (NASC) based on the classification.
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summary: Perform frequency-differencing analysis to identify fluid-like zooplankton scatterers (likely krill) in ship echosounder data, and compute nautical acoustic scattering coefficient (NASC) based on the classification. (Not binder friendly.)
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image: images/gallery/04_krill.png
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- name: Hake Mask
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- name: Masking Echogram and Computing NASC
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website: https://echopype-examples.readthedocs.io/en/latest/hake_mask.html
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repository: https://github.com/OSOceanAcoustics/echopype-examples/blob/main/notebooks/hake_mask.ipynb
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notebook: hake_mask.ipynb
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summary: Binder Friendly. Incorporate an externally generated mask that identify the occurrence of Pacific hake in ship echosounder data, and compute NASC based on the masked outputs.
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summary: Incorporate an externally generated mask that identify the occurrence of Pacific hake in ship echosounder data, and compute NASC based on the masked outputs.
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image: images/gallery/05_NASC.png
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- name: Glider AZFP Processing
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website: https://echopype-examples.readthedocs.io/en/latest/glider_AZFP.html
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repository: https://github.com/OSOceanAcoustics/echopype-examples/blob/main/notebooks/glider_AZFP.ipynb
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notebook: glider_AZFP.ipynb
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summary: Binder Friendly. Process acoustic data from a Slocum glider by incorporating external position, motion, and environmental data and identify zooplankton shoals.
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summary: Process acoustic data from a Slocum glider by incorporating external position, motion, and environmental data and identify zooplankton shoals.
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image: images/gallery/06_glider.png
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- name: Seafloor Detection
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website: https://echopype-examples.readthedocs.io/en/latest/seafloor_detection.html
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repository: https://github.com/OSOceanAcoustics/echopype-examples/blob/main/notebooks/seafloor_detection.ipynb
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notebook: seafloor_detection.ipynb
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summary: Seafloor detection with echopype (two alrorithms) and use of echoregions; compute a bottom line and mask below-bottom data.
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summary: Seafloor detection with echopype (two algorithms) and use of echoregions; compute a bottom line and mask below-bottom data.
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image: images/gallery/07_seafloor.png

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