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author | Aaron LI <aly@aaronly.me> | 2017-08-16 23:36:04 +0800 |
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committer | Aaron LI <aly@aaronly.me> | 2017-08-16 23:36:04 +0800 |
commit | 2ac60a1055b953e8a680c504cbd9dcd8a729fd36 (patch) | |
tree | 44046cc19b61ede9ba8373741d72021108f7254f | |
parent | 6c964cf5597332d874e264a3342855b0bc4f7327 (diff) | |
download | chandra-acis-analysis-2ac60a1055b953e8a680c504cbd9dcd8a729fd36.tar.bz2 |
Update to use "repro_acis.py"
-rw-r--r-- | doc/HOWTO_chandra_acis_analysis.txt | 5 |
1 files changed, 2 insertions, 3 deletions
diff --git a/doc/HOWTO_chandra_acis_analysis.txt b/doc/HOWTO_chandra_acis_analysis.txt index 675c146..fcca0c3 100644 --- a/doc/HOWTO_chandra_acis_analysis.txt +++ b/doc/HOWTO_chandra_acis_analysis.txt @@ -11,12 +11,11 @@ Step-by-step guide to analyze ACIS data: (1) Create new level=2 events with newest calibrations, and build "manifest.yaml" for later use: - $ chandra_repro indir=. outdir=repro verbose=2 - $ update_manifest.py -c -r repro + $ repro_acis.py (??) <TODO> build 'results.yaml' (ra_ned, dec_ned, nh, z, etc.) (2) $ mkdir -p evt bkg img spc/profile mass (3) $ cd evt - $ ln -s ../*_repro_evt2.fits . + $ ln -s ../repro/*_repro_evt2.fits . (4) $ clean_evt2.py (5) $ cd ../bkg $ ln -s ../evt/evt2*_clean.fits . |