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-rw-r--r--doc/man/crystfel_geometry.56
1 files changed, 1 insertions, 5 deletions
diff --git a/doc/man/crystfel_geometry.5 b/doc/man/crystfel_geometry.5
index cf64d76e..f2888e15 100644
--- a/doc/man/crystfel_geometry.5
+++ b/doc/man/crystfel_geometry.5
@@ -28,10 +28,6 @@ through. The coordinates are specified inclusively, meaning that a minimum of 0
and a maximum of 9 results in a width of ten pixels. Counting begins from zero.
All pixels in the image must be assigned to a panel - gaps are not permitted.
.PP
-In the current version, panels are assumed to be perpendicular to the incident
-beam and to have their edges parallel. Within these limitations, any geometry
-can be constructed.
-
The job of the geometry file is to establish a relationship an array
of pixel values in the HDF5 file, defined in terms only of the "fast scan" and
"slow scan" directions, and the laboratory coordinate system defined as follows:
@@ -166,7 +162,7 @@ The camera length offset (in metres) for this panel. This number will be added
.IP \fBfs\fR
.IP \fBss\fR
.PD
-For this panel, the fast and slow scan directions correspond to the given directions in the lab coordinate system described above, measured in pixels. Example: "panel0/fs = 0.5x+0.5y-0.0001z". Including a component in the z direction means that the panel normal is not parallel to the X-ray beam.
+For this panel, the fast and slow scan directions correspond to the given directions in the lab coordinate system described above, measured in pixels. Example: "panel0/fs = 0.5x+0.5y-0.0001z". Including a component in the z direction means that the panel normal is not perpendicular to the X-ray beam.
.PD 0
.IP \fBcorner_x\fR