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DONKI: View SW Activity
Coronal Mass Ejection
Catalog: M2M_CATALOG
Start Time: 2024-12-10T07:00Z ( SOHO: LASCO/C2 )
All Detecting Spacecrafts:
SOHO: LASCO/C2
SOHO: LASCO/C3
STEREO A: SECCHI/COR2
Activity ID: 2024-12-10T07:00:00-CME-001 (version 4)
Source Location: S18E72
Active Region Number: 13922
Note Keyword:
DFL: Likely deflection of the event within the FOV
DPL: CME exhibits dimpled front
Faint: Faint event; may affect type assignment
FF: Event fails/disappears before exiting COR2
OFL: Outflowing material at the back of the CME
OVR: Event partially overlaps with another CME
Source Signature Keyword:
FLR: Flare
FIL: Filament eruption
Morphology Keyword:
FS: Flux Rope and Shock Candidate
Note: A relatively narrow CME associated withthe M6.4 flare from AR 3922 (S18E72), with a narrow southward-deflecting ejecta from this AR seen in GOES SUVI 304 starting at 2024-12-10T04:48Z. Because the sequence of flare/ejecta/CME events is very fast for this and the 2024-12-10T07:24Z CME the attribution to the linked flare is not absolutely certain.
Submitted on 2025-02-07T02:39Z by Anna
Chulaki
No Notification has been sent for this activity yet.
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The List of CME Analysis already entered: |
Event Type |
Catalog |
Measurement TypeCME measurement type: Leading Edge (LE), Shock Front (SH), Right Hand Boundary (RHB), Left Hand Boundary (LHB), Black/White Boundary (BW), Prominence Core (COR), Disconnection Front (DIS), Trailing Edge (TE). |
Prime?"primary flag" which is either True or False. If there are multiple CME analysis entries for a single CME, this flag would indicate which analysis is considered most accurate per measurement type. This is a helpful flag if you would like to download only one most accurate CME analysis per CME per Measurement Type |
Technique |
Long |
Lat |
Speed |
Type |
Half Width |
Time 21.5 |
Note |
WSA-ENLIL+Cone Result(s) |
Submitted By |
CME Analysis
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M2M_CATALOG |
LE
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true |
SWPC_CAT |
-73.0 |
-53.0 |
1005.0 |
O |
21.0 |
2024-12-10T10:17Z |
Analysis based on the best fit in two coronagraphs and confirmed by the location of the associated flare. |
Not modeled
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Anna Chulaki on 2024-12-10T14:22Z |
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