Standard Deviations of SeaWIFS products at 100km rolling 30-day resolution
Standard Deviations of SeaWIFS products at 100km rolling 30-day resolution. Averaging performed by NetCDF Operators\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\nchl_ocx_std_dev (mg m^-3)\nkd_490_std_dev (m^-1)\npar_std_dev (einstein m^-2 day^-1)\npoc_std_dev (mg m^-3)\nZeu_lee_std_dev (m)\nZeu_lee_count\npoc_count\npar_count\nkd_490_count\nchl_ocx_count\n
Standard Deviations of SeaWIFS products at 100km rolling 365-day resolution
Standard Deviations of SeaWIFS products at 100km rolling 365-day resolution. Averaging performed by NetCDF Operators\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\nchl_ocx_std_dev (mg m^-3)\nkd_490_std_dev (m^-1)\npar_std_dev (einstein m^-2 day^-1)\npoc_std_dev (mg m^-3)\nZeu_lee_std_dev (m)\nZeu_lee_count\npoc_count\npar_count\nkd_490_count\nchl_ocx_count\n
Standard Deviations of SeaWIFS products at 100km rolling 8-day resolution
Standard Deviations of SeaWIFS products at 100km rolling 8-day resolution. Averaging performed by NetCDF Operators\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\nchl_ocx_std_dev (mg m^-3)\nkd_490_std_dev (m^-1)\npar_std_dev (einstein m^-2 day^-1)\npoc_std_dev (mg m^-3)\nZeu_lee_std_dev (m)\nZeu_lee_count\npoc_count\npar_count\nkd_490_count\nchl_ocx_count\n
Standard Deviations of SeaWIFS products at 500km rolling 30-day resolution
Standard Deviations of SeaWIFS products at 500km rolling 30-day resolution. Averaging performed by NetCDF Operators\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\nchl_ocx_std_dev (mg m^-3)\nkd_490_std_dev (m^-1)\npar_std_dev (einstein m^-2 day^-1)\npoc_std_dev (mg m^-3)\nZeu_lee_std_dev (m)\nZeu_lee_count\npoc_count\npar_count\nkd_490_count\nchl_ocx_count\n
Standard Deviations of SeaWIFS products at 500km rolling 365-day resolution
Standard Deviations of SeaWIFS products at 500km rolling 365-day resolution. Averaging performed by NetCDF Operators\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\nchl_ocx_std_dev (mg m^-3)\nkd_490_std_dev (m^-1)\npar_std_dev (einstein m^-2 day^-1)\npoc_std_dev (mg m^-3)\nZeu_lee_std_dev (m)\nZeu_lee_count\npoc_count\npar_count\nkd_490_count\nchl_ocx_count\n
Standard Deviations of SeaWIFS products at 500km rolling 8-day resolution
Standard Deviations of SeaWIFS products at 500km rolling 8-day resolution. Averaging performed by NetCDF Operators\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\nchl_ocx_std_dev (mg m^-3)\nkd_490_std_dev (m^-1)\npar_std_dev (einstein m^-2 day^-1)\npoc_std_dev (mg m^-3)\nZeu_lee_std_dev (m)\nZeu_lee_count\npoc_count\npar_count\nkd_490_count\nchl_ocx_count\n
Standard Deviations of SeaWIFS products at 50km rolling 30-day resolution
Standard Deviations of SeaWIFS products at 50km rolling 30-day resolution. Averaging performed by NetCDF Operators\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\nchl_ocx_std_dev (mg m^-3)\nkd_490_std_dev (m^-1)\npar_std_dev (einstein m^-2 day^-1)\npoc_std_dev (mg m^-3)\nZeu_lee_std_dev (m)\nZeu_lee_count\npoc_count\npar_count\nkd_490_count\nchl_ocx_count\n
Standard Deviations of SeaWIFS products at 50km rolling 365-day resolution
Standard Deviations of SeaWIFS products at 50km rolling 365-day resolution. Averaging performed by NetCDF Operators\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\nchl_ocx_std_dev (mg m^-3)\nkd_490_std_dev (m^-1)\npar_std_dev (einstein m^-2 day^-1)\npoc_std_dev (mg m^-3)\nZeu_lee_std_dev (m)\nZeu_lee_count\npoc_count\npar_count\nkd_490_count\nchl_ocx_count\n
Standard Deviations of SeaWIFS products at 50km rolling 8-day resolution
Standard Deviations of SeaWIFS products at 50km rolling 8-day resolution. Averaging performed by NetCDF Operators\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\nchl_ocx_std_dev (mg m^-3)\nkd_490_std_dev (m^-1)\npar_std_dev (einstein m^-2 day^-1)\npoc_std_dev (mg m^-3)\nZeu_lee_std_dev (m)\nZeu_lee_count\npoc_count\npar_count\nkd_490_count\nchl_ocx_count\n
Standard Deviations of SeaWIFS products at 9km rolling 30-day resolution
Standard Deviations of SeaWIFS products at 9km rolling 30-day resolution. Averaging performed by NetCDF Operators\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\nchl_ocx_std_dev (mg m^-3)\nkd_490_std_dev (m^-1)\npar_std_dev (einstein m^-2 day^-1)\npoc_std_dev (mg m^-3)\nZeu_lee_std_dev (m)\nZeu_lee_count\nchl_ocx_count\nkd_490_count\npar_count\npoc_count\n
Standard Deviations of SeaWIFS products at 9km rolling 365-day resolution
Standard Deviations of SeaWIFS products at 9km rolling 365-day resolution. Averaging performed by NetCDF Operators\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\nchl_ocx_std_dev (mg m^-3)\nkd_490_std_dev (m^-1)\npar_std_dev (einstein m^-2 day^-1)\npoc_std_dev (mg m^-3)\nZeu_lee_std_dev (m)\nZeu_lee_count\nchl_ocx_count\nkd_490_count\npar_count\npoc_count\n
Standard Deviations of SeaWIFS products at 9km rolling 8-day resolution
Standard Deviations of SeaWIFS products at 9km 8-day resolution. Averaging performed by NetCDF Operators\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\nchl_ocx_std_dev (mg m^-3)\nkd_490_std_dev (m^-1)\npar_std_dev (einstein m^-2 day^-1)\npoc_std_dev (mg m^-3)\nZeu_lee_std_dev (m)\nZeu_lee_count\nchl_ocx_count\nkd_490_count\npar_count\npoc_count\n