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MAVEN >> STATIC
MAVEN STATIC Calibrated Energy Flux: 32 Energy X 16 Solid Angle Bins Data Collection Order Volume Toggle viewing into brief mode
maven.static.c PDS 4      CERTIFIED
Start Time: 2014-10-13 17:00:04 - Stop Time: 2023-08-15 17:00:12
This collection contains files with time-ordered fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+. Data are derived from     more ...
This bundle contains fully calibrated data in physical units, consisting of Coarse and Fine resolution 3d distributions and energy spectra and moments from onboard computations.     less ...
Citiation Information
Author McFadden, J. P.
TitleMAVEN STATIC Calibrated Energy Flux: 32 Energy X 16 Solid Angle Bins Data Collection
Description  This collection contains files with time-ordered fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+. Data are derived from APID c8.
PublisherNASA Planetary Data System
Publication Year 2023
doi https://doi.org/10.17189/1517747
Top/ data/ c8_32e16d/ 2017/ 02 / click here to download folders and files
mvn_sta_l2_c8-32e16d_20170201_v02_r01
Start Time: 2017-02-01T00:00:02.826Z Stop Time: 2017-02-02T00:00:02.347Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-01.
mvn_sta_l2_c8-32e16d_20170202_v02_r01
Start Time: 2017-02-02T00:00:06.347Z Stop Time: 2017-02-03T00:00:05.908Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-02.
mvn_sta_l2_c8-32e16d_20170203_v02_r01
Start Time: 2017-02-03T00:00:09.908Z Stop Time: 2017-02-04T00:00:01.429Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-03.
mvn_sta_l2_c8-32e16d_20170204_v02_r01
Start Time: 2017-02-04T00:00:09.429Z Stop Time: 2017-02-05T00:00:04.903Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-04.
mvn_sta_l2_c8-32e16d_20170205_v02_r01
Start Time: 2017-02-05T00:00:08.903Z Stop Time: 2017-02-06T00:00:00.462Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-05.
mvn_sta_l2_c8-32e16d_20170206_v02_r01
Start Time: 2017-02-06T00:00:04.462Z Stop Time: 2017-02-07T00:00:04.022Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-06.
mvn_sta_l2_c8-32e16d_20170207_v02_r01
Start Time: 2017-02-07T00:00:08.022Z Stop Time: 2017-02-07T23:59:55.545Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-07.
mvn_sta_l2_c8-32e16d_20170208_v02_r01
Start Time: 2017-02-08T00:00:03.545Z Stop Time: 2017-02-09T00:00:03.041Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-08.
mvn_sta_l2_c8-32e16d_20170209_v02_r01
Start Time: 2017-02-09T00:00:07.041Z Stop Time: 2017-02-09T23:59:58.623Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-09.
mvn_sta_l2_c8-32e16d_20170210_v02_r01
Start Time: 2017-02-10T00:00:02.623Z Stop Time: 2017-02-11T00:00:02.179Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-10.
mvn_sta_l2_c8-32e16d_20170211_v02_r01
Start Time: 2017-02-11T00:00:06.179Z Stop Time: 2017-02-12T00:00:05.666Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-11.
mvn_sta_l2_c8-32e16d_20170212_v02_r01
Start Time: 2017-02-12T00:00:09.666Z Stop Time: 2017-02-13T00:00:01.226Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-12.
mvn_sta_l2_c8-32e16d_20170213_v02_r01
Start Time: 2017-02-13T00:00:05.226Z Stop Time: 2017-02-14T00:00:04.797Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-13.
mvn_sta_l2_c8-32e16d_20170214_v02_r01
Start Time: 2017-02-14T00:00:08.797Z Stop Time: 2017-02-15T00:00:04.316Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-14.
mvn_sta_l2_c8-32e16d_20170215_v02_r01
Start Time: 2017-02-15T00:00:08.316Z Stop Time: 2017-02-16T00:00:03.857Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-15.
mvn_sta_l2_c8-32e16d_20170216_v02_r01
Start Time: 2017-02-16T00:00:07.857Z Stop Time: 2017-02-16T23:59:59.429Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-16.
mvn_sta_l2_c8-32e16d_20170217_v02_r01
Start Time: 2017-02-17T00:00:03.429Z Stop Time: 2017-02-17T23:59:59.001Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-17.
mvn_sta_l2_c8-32e16d_20170218_v02_r01
Start Time: 2017-02-18T00:00:03.001Z Stop Time: 2017-02-19T00:00:02.502Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-18.
mvn_sta_l2_c8-32e16d_20170219_v02_r01
Start Time: 2017-02-19T00:00:06.502Z Stop Time: 2017-02-20T00:00:02.082Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-19.
mvn_sta_l2_c8-32e16d_20170220_v02_r01
Start Time: 2017-02-20T00:00:06.082Z Stop Time: 2017-02-21T00:00:05.666Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-20.
mvn_sta_l2_c8-32e16d_20170221_v02_r01
Start Time: 2017-02-21T00:00:09.666Z Stop Time: 2017-02-22T00:00:01.205Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-21.
mvn_sta_l2_c8-32e16d_20170222_v02_r01
Start Time: 2017-02-22T00:00:05.205Z Stop Time: 2017-02-23T00:00:04.822Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-22.
mvn_sta_l2_c8-32e16d_20170223_v02_r01
Start Time: 2017-02-23T00:00:08.822Z Stop Time: 2017-02-24T00:00:00.505Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-23.
mvn_sta_l2_c8-32e16d_20170224_v02_r01
Start Time: 2017-02-24T00:00:04.505Z Stop Time: 2017-02-25T00:00:04.193Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-24.
mvn_sta_l2_c8-32e16d_20170225_v02_r01
Start Time: 2017-02-25T00:00:08.193Z Stop Time: 2017-02-25T23:59:59.808Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-25.
mvn_sta_l2_c8-32e16d_20170226_v02_r01
Start Time: 2017-02-26T00:00:03.808Z Stop Time: 2017-02-27T00:00:03.492Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-26.
mvn_sta_l2_c8-32e16d_20170227_v02_r01
Start Time: 2017-02-27T00:00:07.492Z Stop Time: 2017-02-28T00:00:03.175Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-27.
mvn_sta_l2_c8-32e16d_20170228_v02_r01
Start Time: 2017-02-28T00:00:07.175Z Stop Time: 2017-03-01T00:00:02.793Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 16 solid angle bin arrays (16 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction), summed over mass assuming O2+ covering 2017-02-28.
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