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diff --git a/doc/salome/gui/SMESH/input/1d_meshing_hypo.doc b/doc/salome/gui/SMESH/input/1d_meshing_hypo.doc
index 87c20b74f..2ab53e44d 100644
--- a/doc/salome/gui/SMESH/input/1d_meshing_hypo.doc
+++ b/doc/salome/gui/SMESH/input/1d_meshing_hypo.doc
@@ -5,31 +5,31 @@
Basic 1D hypothesis specifies:
- how \ref a1d_algos_anchor "Wire Discretization" should divide the edge;
-- how \ref a1d_algos_anchor "Composite Side Discretization" should divide the group of C1-continues edges.
+- how \ref a1d_algos_anchor "Composite Side Discretization" should divide the group of C1-continuous edges.
-By type of nodes distribution the 1D hypotheses can be categorized as follows:
+1D hypotheses can be categorized by type of nodes distribution as follows:
-- Uniform distribution
+
- Uniform distribution:
- \ref average_length_anchor "Local Length"
- \ref max_length_anchor "Max Size"
- \ref number_of_segments_anchor "Number of segments" with Equidistant distribution
- \ref automatic_length_anchor "Automatic Length"
-- Constantly increasing or decreasing length of segments
+
- Constantly increasing or decreasing length of segments:
- \ref arithmetic_1d_anchor "Arithmetic 1D"
- \ref geometric_1d_anchor "Geometric Progression"
- \ref start_and_end_length_anchor "Start and end length"
- \ref number_of_segments_anchor "Number of segments" with Scale distribution
-- Distribution depending on curvature
+
- Distribution depending on curvature:
- \ref adaptive_1d_anchor "Adaptive"
- \ref deflection_1d_anchor "Deflection 1D"
-- Arbitrary distribution
+
- Arbitrary distribution:
- \ref fixed_points_1d_anchor "Fixed points 1D"
- \ref number_of_segments_anchor "Number of segments" with
@@ -316,7 +316,7 @@ possible to select the edges to be reversed either directly picking them in
the 3D viewer or selecting the edges or groups of edges in the
Object Browser.
-\ref reversed_edges_helper_anchor "Helper" group assists you in
+\ref reversed_edges_helper_anchor "Helper" group assists in
defining Reversed Edges parameter.
@@ -330,23 +330,23 @@ defining Reversed Edges parameter.
\image html rev_edges_helper_dlg.png
-\b Helper group assists you in defining Reversed Edges
+\b Helper group assists in defining Reversed Edges
parameter of the hypotheses depending on edge direction.
-Show whole geometry check-box lets you see the whole
-geometrical model in the 3D Viewer. This can help you to understand
-location within the model of a set of edges shown in the Viewer.
+Show whole geometry check-box allows seeing the whole
+geometrical model in the 3D Viewer, which can help to understand the
+location of a set of edges within the model.
-Propagation chains group helps you to define
-Reversed Edges so that opposite edges of quadrilateral faces
-will be split in the logically same direction. When this group is
+Propagation chains group allows defining Reversed Edges
+for splitting opposite edges of quadrilateral faces
+in a logically uniform direction. When this group is
activated, the list is filled with propagation chains found within the
-model. When you select a chain in the list, edges of the chain are
-shown in the Viewer with arrows so that you can chose a common
-direction for all chain edges. \b Reverse button inverses the common
-direction of chain edges. If \b Add button is active, this means that some
-edges of a chain have different direction and you can click \b Add
-button to add such edges to Reversed Edges list.
+model. When a chain is selected in the list its edges are
+shown in the Viewer with arrows, which enables choosing a common
+direction for all chain edges. \b Reverse button inverts the common
+direction of chain edges. If \b Add button is active, some
+edges of a chain have a different direction, so you can click \b Add
+button to add them to Reversed Edges list.
\image html propagation_chain.png "The whole geometry and a propagation chain"