CORRECT.LP: Difference between revisions

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== Space group determination ==
== [[Space group determination]] ==


The approach to space group determination is well explained in CORRECT.LP :
The approach to [[space group determination]] is well explained in CORRECT.LP :
  XDS adopts the following approach.
  XDS adopts the following approach.
  (1) it looks for possible symmetries of the crystal lattice
  (1) it looks for possible symmetries of the crystal lattice
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Please note the sentence: '''This approach does not test for the presence of screw axes.''' The information about those reflections that may indicate screw axes is actually given in the table '''"REFLECTIONS OF TYPE H,0,0  0,K,0  0,0,L OR EXPECTED TO BE ABSENT (*)"''' (near the end of CORRECT.LP) but there is no automatic evaluation of that table that would result in screw axis assignment.
Please note the sentence: '''This approach does not test for the presence of screw axes.''' The information about those reflections that may indicate screw axes is actually given in the table '''"REFLECTIONS OF TYPE H,0,0  0,K,0  0,0,L OR EXPECTED TO BE ABSENT (*)"''' (near the end of CORRECT.LP) but there is no automatic evaluation of that table that would result in screw axis assignment.


Therefore, the '''space group determination of XDS only results in evaluation of the possible point groups that are compatible with the lattice symmetry'''. Space group determination of XDS only suggests one representative for each point group - the other possible space groups belonging to its point group are possibilities as well, but are not listed! For example, if XDS suggest space group 89 (P422), then any other space group of point group PG422, like 90, 91, 92, 93, 94, 95 and 96 is equally possible.
Therefore, the '''space group determination of XDS only results in evaluation of the possible point groups that are compatible with the lattice symmetry'''. [[Space group determination]] of XDS only suggests one representative for each point group - the other possible space groups belonging to its point group are possibilities as well, but are not listed! For example, if XDS suggest space group 89 (P422), then any other space group of point group PG422, like 90, 91, 92, 93, 94, 95 and 96 is equally possible.


If the user wants more automatic determination, it is suggested to run
If the user wants more automatic determination, it is suggested to run
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   cI      [197,I23] [199,I2(1)3] [211,I432] [214,I4(1)32]
   cI      [197,I23] [199,I2(1)3] [211,I432] [214,I4(1)32]


== Cell parameter refinement ==


This may look like
<pre>
******************************************************************************
  REFINEMENT OF DIFFRACTION PARAMETERS USING ALL IMAGES
******************************************************************************
REFINED VALUES OF DIFFRACTION PARAMETERS DERIVED FROM    197690 INDEXED SPOTS
REFINED PARAMETERS:  POSITION BEAM AXIS ORIENTATION CELL
STANDARD DEVIATION OF SPOT    POSITION (PIXELS)    0.50
STANDARD DEVIATION OF SPINDLE POSITION (DEGREES)    0.03
SPACE GROUP NUMBER    199
UNIT CELL PARAMETERS    77.443    77.443    77.443  90.000  90.000  90.000
E.S.D. OF CELL PARAMETERS  1.8E-02 1.8E-02 1.8E-02 0.0E+00 0.0E+00 0.0E+00
REC. CELL PARAMETERS  0.012913  0.012913  0.012913  90.000  90.000  90.000
COORDINATES OF UNIT CELL A-AXIS    45.490    47.263  -41.162
COORDINATES OF UNIT CELL B-AXIS  -45.887    59.759    17.904
COORDINATES OF UNIT CELL C-AXIS    42.690    13.873    63.107
CRYSTAL MOSAICITY (DEGREES)    0.048
LAB COORDINATES OF ROTATION AXIS  0.999999  0.001525 -0.000039
DIRECT BEAM COORDINATES (REC. ANGSTROEM)  -0.003439  0.001125  0.999994
DETECTOR COORDINATES (PIXELS) OF DIRECT BEAM    2299.53  2261.76
DETECTOR ORIGIN (PIXELS) AT                    2308.69  2258.76
CRYSTAL TO DETECTOR DISTANCE (mm)      199.65
LAB COORDINATES OF DETECTOR X-AXIS  1.000000  0.000000  0.000000
LAB COORDINATES OF DETECTOR Y-AXIS  0.000000  1.000000  0.000000
THE DATA COLLECTION STATISTICS REPORTED BELOW ASSUMES:
SPACE_GROUP_NUMBER=  199
UNIT_CELL_CONSTANTS=    77.44    77.44    77.44  90.000  90.000  90.000
</pre>


== Scaling information ==
== Scaling information ==


<pre>
******************************************************************************
          CORRECTION FACTORS AS FUNCTION OF IMAGE NUMBER & RESOLUTION
******************************************************************************
RECIPROCAL CORRECTION FACTORS FOR INPUT DATA SETS MERGED TO
OUTPUT FILE: XDS_ASCII.HKL                                   
THE CALCULATIONS ASSUME        FRIEDEL'S_LAW= TRUE
TOTAL NUMBER OF CORRECTION FACTORS DEFINED      40
DEGREES OF FREEDOM OF CHI^2 FIT              2649.6
CHI^2-VALUE OF FIT OF CORRECTION FACTORS      1.557
NUMBER OF CYCLES CARRIED OUT                      3
CORRECTION FACTORS for visual inspection by XDS-Viewer DECAY.cbf         
XMIN=    0.2 XMAX=    99.7 NXBIN=    2
YMIN= 0.00100 YMAX= 0.50246 NYBIN=  20
NUMBER OF REFLECTIONS USED FOR DETERMINING CORRECTION FACTORS      4832
******************************************************************************
  CORRECTION FACTORS AS FUNCTION OF X (fast) & Y(slow) IN THE DETECTOR PLANE
******************************************************************************
RECIPROCAL CORRECTION FACTORS FOR INPUT DATA SETS MERGED TO
OUTPUT FILE: XDS_ASCII.HKL                                   
THE CALCULATIONS ASSUME        FRIEDEL'S_LAW= TRUE
TOTAL NUMBER OF CORRECTION FACTORS DEFINED      90
DEGREES OF FREEDOM OF CHI^2 FIT              2640.3
CHI^2-VALUE OF FIT OF CORRECTION FACTORS      1.456
NUMBER OF CYCLES CARRIED OUT                      4
CORRECTION FACTORS for visual inspection by XDS-Viewer MODPIX.cbf         
XMIN=  232.6 XMAX=  3623.4 NXBIN=    9
YMIN=  313.3 YMAX=  4064.2 NYBIN=  10
NUMBER OF REFLECTIONS USED FOR DETERMINING CORRECTION FACTORS      4832
******************************************************************************
  CORRECTION FACTORS AS FUNCTION OF IMAGE NUMBER & DETECTOR SURFACE POSITION
******************************************************************************
RECIPROCAL CORRECTION FACTORS FOR INPUT DATA SETS MERGED TO
OUTPUT FILE: XDS_ASCII.HKL                                   
THE CALCULATIONS ASSUME        FRIEDEL'S_LAW= TRUE
TOTAL NUMBER OF CORRECTION FACTORS DEFINED      26
DEGREES OF FREEDOM OF CHI^2 FIT              2652.0
CHI^2-VALUE OF FIT OF CORRECTION FACTORS      1.418
NUMBER OF CYCLES CARRIED OUT                      3
CORRECTION FACTORS for visual inspection by XDS-Viewer ABSORP.cbf         
XMIN=    0.2 XMAX=    99.7 NXBIN=    2
DETECTOR_SURFACE_POSITION=    1928    2189
DETECTOR_SURFACE_POSITION=    2504    2826
DETECTOR_SURFACE_POSITION=    1352    2826
DETECTOR_SURFACE_POSITION=    1352    1552
DETECTOR_SURFACE_POSITION=    2504    1552
DETECTOR_SURFACE_POSITION=    3231    2786
DETECTOR_SURFACE_POSITION=    2468    3630
DETECTOR_SURFACE_POSITION=    1388    3630
DETECTOR_SURFACE_POSITION=    625    2786
DETECTOR_SURFACE_POSITION=    625    1592
DETECTOR_SURFACE_POSITION=    1388    747
DETECTOR_SURFACE_POSITION=    2468    747
DETECTOR_SURFACE_POSITION=    3231    1592
NUMBER OF REFLECTIONS USED FOR DETERMINING CORRECTION FACTORS      4832
</pre>
=== Details about the error model ===
=== Details about the error model ===


<pre>
******************************************************************************
    CORRECTION PARAMETERS FOR THE STANDARD ERROR OF REFLECTION INTENSITIES
******************************************************************************
The variance v0(I) of the intensity I obtained from counting statistics is
replaced by v(I)=a*(v0(I)+b*I^2). The model parameters a, b are chosen to
minimize the discrepancies between v(I) and the variance estimated from
sample statistics of symmetry related reflections. This model implicates
an asymptotic limit ISa=1/SQRT(a*b) for the highest I/Sigma(I) that the
experimental setup can produce (Diederichs (2010) Acta Cryst D66, 733-740).
    a        b          ISa
1.042E+00  2.177E-04  66.41
</pre>


== Statistics of reflections ==
== Statistics of reflections ==
2,652

edits

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