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MAVEN >> STATIC
MAVEN STATIC Calibrated Energy Flux: 32 Energy X 8 Solid Angle X 32 Mass Bins Data Collection Order Volume Toggle viewing into expanded mode
maven.static.c PDS 4      CERTIFIED
Start Time: 2014-10-13 17:00:04 - Stop Time: 2023-11-15 16:01:01
MAVEN STATIC Calibrated Data Bundle
MAVEN STATIC Calibrated Data Bundle
Citiation Information
Author McFadden, J. P.
TitleMAVEN STATIC Calibrated Energy Flux: 32 Energy X 8 Solid Angle X 32 Mass Bins Data Collection
Description  This collection contains files with time-ordered fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays. Data are derived from APID cc.
PublisherNASA Planetary Data System
Publication Year 2019
doi https://doi.org/10.17189/1517749
Top/ data/ cc_32e8d32m/ 2014/ 12 / click here to download folders and files
mvn_sta_l2_cc-32e8d32m_20141201_v02_r01
Start Time: 2014-12-01T00:19:31.932Z Stop Time: 2014-12-01T18:56:03.615Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-01.
mvn_sta_l2_cc-32e8d32m_20141202_v02_r01
Start Time: 2014-12-02T03:51:59.458Z Stop Time: 2014-12-02T08:42:27.376Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-02.
mvn_sta_l2_cc-32e8d32m_20141203_v02_r01
Start Time: 2014-12-03T11:59:18.932Z Stop Time: 2014-12-03T21:25:06.767Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-03.
mvn_sta_l2_cc-32e8d32m_20141204_v02_r01
Start Time: 2014-12-04T01:45:26.695Z Stop Time: 2014-12-04T21:53:06.372Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-04.
mvn_sta_l2_cc-32e8d32m_20141205_v02_r01
Start Time: 2014-12-05T00:42:22.326Z Stop Time: 2014-12-05T19:18:42.052Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-05.
mvn_sta_l2_cc-32e8d32m_20141206_v02_r01
Start Time: 2014-12-06T04:14:05.893Z Stop Time: 2014-12-06T18:14:09.656Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-06.
mvn_sta_l2_cc-32e8d32m_20141207_v02_r01
Start Time: 2014-12-07T03:09:17.516Z Stop Time: 2014-12-07T21:44:17.217Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-07.
mvn_sta_l2_cc-32e8d32m_20141208_v02_r01
Start Time: 2014-12-08T20:24:20.829Z Stop Time: 2014-12-08T20:39:12.825Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-08.
mvn_sta_l2_cc-32e8d32m_20141209_v02_r02
Start Time: 2014-12-09T00:59:20.752Z Stop Time: 2014-12-10T00:00:08.365Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-09.
mvn_sta_l2_cc-32e8d32m_20141210_v02_r01
Start Time: 2014-12-10T00:00:24.365Z Stop Time: 2014-12-10T23:03:43.989Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-10.
mvn_sta_l2_cc-32e8d32m_20141211_v02_r01
Start Time: 2014-12-11T07:58:47.830Z Stop Time: 2014-12-11T21:58:39.584Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-11.
mvn_sta_l2_cc-32e8d32m_20141212_v02_r01
Start Time: 2014-12-12T02:18:35.511Z Stop Time: 2014-12-12T16:18:23.296Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-12.
mvn_sta_l2_cc-32e8d32m_20141213_v02_r01
Start Time: 2014-12-13T01:12:51.156Z Stop Time: 2014-12-13T15:12:46.917Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-13.
mvn_sta_l2_cc-32e8d32m_20141214_v02_r01
Start Time: 2014-12-14T00:07:38.780Z Stop Time: 2014-12-14T23:17:02.409Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-14.
mvn_sta_l2_cc-32e8d32m_20141215_v02_r01
Start Time: 2014-12-15T08:12:02.270Z Stop Time: 2014-12-15T22:11:42.041Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-15.
mvn_sta_l2_cc-32e8d32m_20141216_v02_r01
Start Time: 2014-12-16T02:31:41.977Z Stop Time: 2014-12-16T11:56:29.839Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-16.
mvn_sta_l2_cc-32e8d32m_20141217_v02_r01
Start Time: 2014-12-17T01:29:05.613Z Stop Time: 2014-12-17T15:24:13.430Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-17.
mvn_sta_l2_cc-32e8d32m_20141218_v02_r01
Start Time: 2014-12-18T00:23:21.321Z Stop Time: 2014-12-18T18:53:33.089Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-18.
mvn_sta_l2_cc-32e8d32m_20141219_v02_r01
Start Time: 2014-12-19T13:02:12.832Z Stop Time: 2014-12-19T17:47:40.756Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-19.
mvn_sta_l2_cc-32e8d32m_20141220_v02_r01
Start Time: 2014-12-20T02:47:12.617Z Stop Time: 2014-12-20T16:42:20.426Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-20.
mvn_sta_l2_cc-32e8d32m_20141221_v02_r01
Start Time: 2014-12-21T01:41:32.309Z Stop Time: 2014-12-21T20:11:24.071Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-21.
mvn_sta_l2_cc-32e8d32m_20141222_v02_r01
Start Time: 2014-12-22T00:35:48.021Z Stop Time: 2014-12-22T19:05:47.777Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-22.
mvn_sta_l2_cc-32e8d32m_20141223_v02_r01
Start Time: 2014-12-23T04:04:55.650Z Stop Time: 2014-12-23T22:34:35.382Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-23.
mvn_sta_l2_cc-32e8d32m_20141224_v02_r01
Start Time: 2014-12-24T02:58:59.309Z Stop Time: 2014-12-24T21:28:59.073Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-24.
mvn_sta_l2_cc-32e8d32m_20141225_v02_r01
Start Time: 2014-12-25T01:53:15.020Z Stop Time: 2014-12-25T20:23:06.796Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-25.
mvn_sta_l2_cc-32e8d32m_20141226_v02_r01
Start Time: 2014-12-26T00:47:26.742Z Stop Time: 2014-12-26T19:17:14.517Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-26.
mvn_sta_l2_cc-32e8d32m_20141227_v02_r01
Start Time: 2014-12-27T04:15:54.375Z Stop Time: 2014-12-27T22:45:30.112Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-27.
mvn_sta_l2_cc-32e8d32m_20141228_v02_r01
Start Time: 2014-12-28T03:09:58.056Z Stop Time: 2014-12-28T21:39:53.828Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-28.
mvn_sta_l2_cc-32e8d32m_20141229_v02_r01
Start Time: 2014-12-29T02:03:57.774Z Stop Time: 2014-12-29T20:33:45.546Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-29.
mvn_sta_l2_cc-32e8d32m_20141230_v02_r01
Start Time: 2014-12-30T00:58:01.491Z Stop Time: 2014-12-31T00:00:01.173Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-30.
mvn_sta_l2_cc-32e8d32m_20141231_v02_r01
Start Time: 2014-12-31T00:00:17.173Z Stop Time: 2014-12-31T22:56:40.850Z
Time-ordered, fully calibrated differential energy flux in 32 energy bin x 8 solid angle bin (8 deflection angles and summed over anodes, but assumed that counts are from anode 7 in the ram direction) x 32 mass bin arrays covering 2014-12-31.
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